Last data update: Aug 15, 2025. (Total: 49733 publications since 2009)
| Records 1-30 (of 80 Records) |
| Query Trace: Souza K[original query] |
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| Annual (2024) taxonomic update of RNA-directed RNA polymerase-encoding negative-sense RNA viruses (realm Riboviria: kingdom Orthornavirae: phylum Negarnaviricota)
Kuhn JH , Adkins S , Alkhovsky Альховский Сергей Владимирович SV , An 安雯霞 W , Avšič-Županc T , Ayllón MA , Bačnik K , Bahl J , Balkema-Buschmann A , Ballinger MJ , Beer M , Bejerman N , Bergeron É , Biedenkopf N , Blair CD , Blasdell KR , Bradfute SB , Briese T , Brown K , Brown PA , Buchholz UJ , Buchmeier MJ , Bukreyev A , Burt F , Calisher CH , Calvelage S , Cao 曹孟籍 M , Casas I , Chabi-Jesus C , Chandran K , Charrel RN , Crane A , Cuypers LN , Bó ED , de la Torre JC , de Souza WM , de Swart RL , Debat HJ , Dheilly NM , Di Paola N , Di Serio F , Dietzgen RG , Digiaro M , Drexler JF , Duprex WP , Dürrwald R , Easton AJ , Elbeaino T , Ergünay K , Eshak MIY , Feng 冯国忠 G , Firth AE , Fooks AR , Formenty PBH , Freitas-Astúa J , Freuling CM , Gadd T , Gago-Zachert S , García ML , García-Sastre A , Garrison AR , Goldberg TL , Gonzalez JJ , Goüy de Bellocq J , Griffiths A , Groschup MH , Gryseels S , Gutiérrez-Aguirre I , Günther S , Hammond J , Hepojoki J , Horie 堀江真行 M , Hume AJ , Hyndman TH , Höper D , Jiāng 姜道宏 D , Junglen S , Klempa B , Klingström J , Kondō 近藤秀樹 H , Koonin EV , Krupovic M , Kubota 久保田健嗣 K , Kurath G , Kutnjak D , Laenen L , Lambert AJ , Lee B , Li 李呈宇 C , Lǐ 李建荣 J , Li 李俊敏 JM , Lukashevich IS , Maes P , Marklewitz M , Marshall SH , Marzano SL , McCauley JW , Mehle N , Mirazimi A , Morikawa 守川俊幸 T , Mühlberger E , Müller T , Naidu R , Natsuaki 夏秋知英 T , Navarro B , Navarro JA , Neriya 煉谷裕太朗 Y , Netesov Нетёсов Сергей Викторович SV , Nicoloso VM , Neumann G , Nokireki T , Nowotny N , Nunes MRT , Ochoa-Corona FM , Palacios G , Pallás V , Papa Άννα Παπά A , Paraskevopoulou Σοφία Παρασκευοπούλου S , Parrish CR , Pauvolid-Corrêa A , Pecman A , Pérez DR , Pfaff F , Plemper RK , Postler TS , Radoshitzky SR , Ramos-González PL , Ravnikar M , Resende RO , Reuter G , Reyes CA , Rivarez MPS , Romanowski V , Rubbenstroth D , Rubino L , Runstadler JA , Ruiz-Padilla A , Sabanadzovic S , Salvato MS , Sasaya 笹谷孝英 IT , Schmaljohn CS , Schmidt-Posthaus H , Schwemmle M , Seljak G , Seuberlich T , Shi 施莽 M , Shimomoto 下元祥史 Y , Simmonds P , Sironi M , Smith DB , Smither S , Song 송진원 JW , Spann KM , Spengler JR , Stenglein MD , Takada 高田礼人 A , Takemura C , Tammiranta N , Tesh RB , Thornburg NJ , Tischler ND , Tomitaka 冨髙保弘 Y , Tomonaga 朝長啓造 K , Tordo N , Turina M , Tzanetakis Ιωάννης Ε Τζανετάκης IE , Vaira AM , van den Hoogen B , Vanmechelen B , Vasilakis Νίκος Βασιλάκης N , Verbeek M , von Bargen S , Vučurović A , Wada 和田治郎 J , Wahl V , Walker PJ , Wang 王飞 F , Whitfield AE , Williams JV , Wolf YI , Yanagisawa 栁澤広宣 H , Yang 杨彩霞 C , Ye 叶恭银 G , Yu 于美春 MC , Zerbini FM , Zhang S , Økland AL , Hughes HR . J Gen Virol 2025 106 (6)
In April 2024, following the annual International Committee on Taxonomy of Viruses (ICTV) ratification vote on newly proposed taxa, the phylum Negarnaviricota was expanded by 1 new order, 1 new family, 6 new subfamilies, 34 new genera and 270 new species. One class, two orders and six species were renamed. Seven families and 12 genera were moved; ten species were renamed and moved; and nine species were abolished. This article presents the updated taxonomy of Negarnaviricota as currently accepted by the ICTV, providing an essential annual update on the classification of members of this phylum that deepen understandings of their evolution, and supports critical public health measures for virus identification and tracking. |
| Plasmodium falciparum multidrug resistance 1 gene polymorphisms associated with outcomes after anti-malarial treatment
Laird VR , Plucinski MM , Venkatesan M , Rondini KA , Randrianarivelojosia M , Andriamananjara MN , Moonga H , Ishengoma DS , Chidimatembue A , Dimbu PR , Adeothy AL , Beavogui AH , Kariuki S , Nsobya SL , Uwimana A , Kahunu GM , Assefa A , Koita OA , Lucchi NW , Souza SSS , Zhou Z , Moriarty LF , Halsey ES . Malar J 2025 24 (1) 186
BACKGROUND: Plasmodium falciparum multidrug resistance transporter 1 (Pfmdr1) gene mutations are associated with altered response to artemisinin-based combination therapy (ACT), particularly the combinations containing the partner drugs lumefantrine and amodiaquine (i.e., artemether-lumefantrine [AL] and artesunate-amodiaquine [ASAQ]). Past studies of Pfmdr1 single nucleotide polymorphisms (SNPs) at codons 86, 184, and 1246 have shown different responses to AL and ASAQ. METHODS: To determine whether infection with parasites carrying specific Pfmdr1 SNPs leads to increased risk of recurrent parasitaemia (recrudescent or new infection), data from 3,915 samples from 16 therapeutic efficacy studies from 13 African countries between 2013 and 2019 were analysed. RESULTS: Patients treated with AL and infected with parasites carrying Pfmdr1 N86 were at greater risk of recurrent infection than those whose parasites carried 86Y. After treatment with ASAQ, individuals infected with parasites that carried Pfmdr1 86Y were more likely to experience a recurrent infection. CONCLUSIONS: These results support prior studies that suggested: (1) patients given AL and infected with parasites carrying N86 were more likely to experience a recurrent infection; (2) patients given ASAQ and infected with parasites carrying 86Y were more likely to experience a recurrent infection. These findings suggest that ACT and Pfmdr1 genotype may influence outcome after Plasmodium falciparum infection. |
| Establishment of epidemiological cutoff values for Fonsecaea pedrosoi, the primary etiologic agent of chromoblastomycosis, and eight antifungal medications
Smith DJ , Melhem MSC , Dirven J , de Azevedo CMPeS , Marques SG , Jacomel Favoreto de Souza Lima B , Vicente VA , Teixeira Sousa Md G , Venturini J , Wiederhold NP , Seyedmousavi A , Dufresne PJ , de Hoog S , Lockhart SR , Hagen F , Santos DWdCL . J Clin Microbiol 2025 63 (5) e0190324
Chromoblastomycosis, a fungal neglected tropical disease, is acquired through traumatic inoculation and is clinically characterized by a chronic granulomatous infection of the skin and subcutaneous tissue. Fonsecaea pedrosoi is the most commonly reported etiologic agent globally. Itraconazole is considered first-line therapy, but successful treatment with terbinafine, voriconazole, and posaconazole has been reported. F. pedrosoi minimum inhibitory concentration (MIC) data are limited, and epidemiological cutoffs (ECVs) are lacking; such data are important to help monitor antifungal resistance trends and guide initial antifungal selection. Thus, we performed antifungal susceptibility testing (AFST) on F. pedrosoi isolates and determined the MIC distributions and ECVs. AFST on Fonsecaea pedrosoi isolates was conducted at six laboratories from October 2023 to June 2024. Species identification was previously confirmed by DNA sequence analysis. AFST was performed by CLSI M38 standard broth microdilution method for itraconazole, voriconazole, posaconazole, isavuconazole, ketoconazole, terbinafine, flucytosine, and amphotericin B. The ECVs were established using the iterative statistical method with ECOFFinder (version 2.1) following CLSI M57 guidelines. We analyzed MIC results from 148 Fonsecaea pedrosoi isolates. The calculated ECVs were itraconazole, 0.5 µg/mL; voriconazole, 0.5 µg/mL; posaconazole, 0.5 µg/mL; isavuconazole, 1 µg/mL; ketoconazole, bimodal, no ECV determined; terbinafine, 0.25 µg/mL; flucytosine, rejected; and amphotericin, 8 µg/mL. These Fonsecaea pedrosoi ECVs, obtained through a multicenter international effort, provide a baseline to better understand the in vitro antifungal susceptibility profile of this species and monitor resistance. Clinicians and researchers can use these values to detect non-wild-type isolates with reduced susceptibility, reevaluate therapeutic options, and investigate potential clinical resistance if treatment failure occurs.IMPORTANCEChromoblastomycosis is a neglected tropical disease caused by an environmental, dematiaceous fungus. This fungal disease is acquired after a break in the skin that allows the fungus to enter, leading to a chronic infection in the skin and subcutaneous tissue. It is difficult to treat and often requires years of antifungal treatment. Fonsecaea pedrosoi is the most reported causative agent globally. Limited antifungal susceptibility data exist for F. pedrosoi making interpreting minimum inhibitory concentration (MIC) results difficult. We performed antifungal susceptibility testing on 148 F. pedrosoi isolates to establish MIC distributions and epidemiologic cutoff values (ECVs) for eight antifungals, including those commonly used to treat chromoblastomycosis. The calculated ECVs for the commonly used antifungals itraconazole and terbinafine were 0.5 and 0.25 µg/mL, respectively. ECVs can be helpful in choosing potential treatment options for F. pedrosoi and monitoring antifungal resistance epidemiology. |
| ICTV Virus Taxonomy Profile: Peribunyaviridae 2024
de Souza WM , Calisher CH , Carrera JP , Hughes HR , Nunes MRT , Russell B , Tilson-Lunel NL , Venter M , Xia H . J Gen Virol 2024 105 (11) Peribunyavirids produce enveloped virions with three negative-sense RNA segments comprising 10.7-12.5 kb in total. The family includes globally distributed viruses in multiple genera. While most peribunyavirids are maintained in geographically restricted vertebrate-arthropod transmission cycles, others are arthropod-specific or do not have a known vector. Arthropods can be persistently infected. Human and other vertebrate animal infections occur through blood feeding by an infected vector arthropod, resulting in diverse human and veterinary clinical outcomes in a strain-specific manner. Reassortment can occur between members of the same genus. This is a summary of the International Committee on Taxonomy of Viruses (ICTV) Report on the family Peribunyaviridae, which is available at ictv.global/report/peribunyaviridae. |
| Natural mycobacterium tuberculosis complex infection in a brown howler monkey (Alouatta guariba clamitans) in Brazil
de Souza EV , Réssio RA , Figueiredo KB , de Carvalho Acsr , Ferreira-Machado E , de Carvalho J , Dos Santos Cirqueira C , Navas-Suárez PE , Zwarg T , Ritter JM , de Azevedo Fernandes NCC , Guerra JM . J Med Primatol 2024 53 (3) e12716 Neotropical primates rarely exhibit active tuberculosis. A brown howler monkey was found injured in an urban area. Histopathology revealed granulomatous inflammation in the lungs, lymph nodes, and liver. Immunohistochemistry and molecular analysis confirmed the presence of Mycobacterium tuberculosis complex. The findings highlight the importance of TB surveillance in nonhuman primates. |
| Experimental inoculation of pigs with monkeypox virus results in productive infection and transmission to sentinels
Mantlo E , Trujillo JD , Gaudreault NN , Morozov I , Lewis CE , Matias-Ferreyra F , McDowell C , Bold D , Kwon T , Cool K , Balaraman V , Madden D , Artiaga B , Souza-Neto J , Doty JB , Carossino M , Balasuriya U , Wilson WC , Osterrieder N , Hensley L , Richt JA . Emerg Microbes Infect 2024 2352434 Monkeypox virus (MPXV) is a re-emerging zoonotic poxvirus responsible for producing skin lesions in humans. Endemic in sub-Saharan Africa, the 2022 outbreak with a clade IIb strain has resulted in ongoing sustained transmission of the virus worldwide. MPXV has a relatively wide host range, with infections reported in rodent and non-human primate species. However, the susceptibility of many domestic livestock species remains unknown. Here, we report on a susceptibility/transmission study in domestic pigs that were experimentally inoculated with a 2022 MPXV clade IIb isolate or served as sentinel contact control animals. Several principal-infected and sentinel contact control pigs developed minor lesions near the lips and nose starting at day 12 through 18 days post-challenge (DPC). No virus was isolated or viral DNA was detected from the lesions; however, MPXV antigen was detected by IHC in tissue from a pustule of a principal infected pig. Viral DNA and infectious virus were detected in nasal and oral swabs up to 14 DPC, with peak titers observed at 7 DPC. Viral DNA was also detected in nasal tissues or skin collected from two principal-infected animals at 7 DPC post-mortem. Furthermore, all principal-infected and sentinel control animals enrolled in the study seroconverted. In conclusion, we provide the first evidence that domestic pigs are susceptible to experimental MPXV infection and can transmit the virus to contact animals. |
| Correction: A global genotyping survey of Strongyloides stercoralis and Strongyloides fuelleborni using deep amplicon sequencing
Barratt JLN , Lane M , Talundzic E , Richins T , Robertson G , Formenti F , Pritt B , Verocai G , Nascimento de Souza J , Soares NM , Traub R , Buonfrate D , Bradbury RS . PLoS Negl Trop Dis 12/28/2021 15 (6) e0009538 All errors found in this paper are due to six samples included in the paper incorrectly assigned as being from Queensland, Australia. The report of Strongyloides fuelleborni infections from Australia made in this paper was incorrect, as those samples in fact originated in Guinea-Bissau and Senegal. | | There is an error in Table 4. Specimen Human 333_Au from Queensland (Australia) should be listed as Human 333_GuBi from Guinea-Bissau. Specimen Human 368_16_Au from Queensland (Australia) should be listed as Human 368_16_Se from Senegal. Specimen Human 378_Au from Queensland (Australia) should be listed as Human 378_Bo from Bolivia. Specimen Human 507_Au from Queensland (Australia) should be listed as Human 507_Ni from Nigeria. Specimen Human 524_Au from Queensland (Australia) should be listed as Human 524_Ni from Nigeria. Specimen Human 563_Au from Queensland (Australia) should be listed as Human 563_GuBi from Guinea-Bissau. The authors have provided a corrected Table 4 with the corrected specimens and locations in red. |
| Emergence of zoonotic sporotrichosis in Brazil: a genomic epidemiology study
Ribeiro Dos Santos A , Misas E , Min B , Le N , Bagal UR , Parnell LA , Sexton DJ , Lockhart SR , de Souza Carvalho Melhem M , Takahashi JPF , Oliboni GM , Bonfieti LX , Cappellano P , Sampaio JLM , Araujo LS , Alves Filho HL , Venturini J , Chiller TM , Litvintseva AP , Chow NA . Lancet Microbe 2024
BACKGROUND: Zoonotic sporotrichosis is a neglected fungal disease, whereby outbreaks are primarily driven by Sporothrix brasiliensis and linked to cat-to-human transmission. To understand the emergence and spread of sporotrichosis in Brazil, the epicentre of the current epidemic in South America, we aimed to conduct whole-genome sequencing (WGS) to describe the genomic epidemiology. METHODS: In this genomic epidemiology study, we included Sporothrix spp isolates from sporotrichosis cases from Brazil, Colombia, and the USA. We conducted WGS using Illumina NovaSeq on isolates collected by three laboratories in Brazil from humans and cats with sporotrichosis between 2013 and 2022. All isolates that were confirmed to be Sporothrix genus by internal transcribed spacer or beta-tubulin PCR sequencing were included in this study. We downloaded eight Sporothrix genome sequences from the National Center for Biotechnology Information (six from Brazil, two from Colombia). Three Sporothrix spp genome sequences from the USA were generated by the US Centers for Disease Control and Prevention as part of this study. We did phylogenetic analyses and correlated geographical and temporal case distribution with genotypic features of Sporothrix spp isolates. FINDINGS: 72 Sporothrix spp isolates from 55 human and 17 animal sporotrichosis cases were included: 67 (93%) were from Brazil, two (3%) from Colombia, and three (4%) from the USA. Cases spanned from 1999 to 2022. Most (61 [85%]) isolates were S brasiliensis, and all were reported from Brazil. Ten (14%) were Sporothrix schenckii and were reported from Brazil, USA, and Colombia. For S schenckii isolates, two distinct clades were observed wherein isolates clustered by geography. For S brasiliensis isolates, five clades separated by more than 100 000 single-nucleotide polymorphisms were observed. Among the five S brasiliensis clades, clades A and C contained isolates from both human and cat cases, and clade A contained isolates from six different states in Brazil. Compared with S brasiliensis isolates, larger genetic diversity was observed among S schenckii isolates from animal and human cases within a clade. INTERPRETATION: Our results suggest that the ongoing epidemic driven by S brasiliensis in Brazil represents several, independent emergence events followed by animal-to-animal and animal-to human transmission within and between Brazilian states. These results describe how S brasiliensis can emerge and spread within a country. FUNDING: Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Brazil; the São Paulo Research Foundation; Productivity in Research fellowships by the National Council for Scientific and Technological Development, and Ministry of Science and Technology of Brazil. |
| Postintervention immunological and entomological survey of lymphatic filariasis in the City of Olinda, Brazil, 2015-2016
Ramesh A , Oliveira P , Cameron M , Castanha PMS , Walker T , Lenhart A , Impoinvil L , Alexander N , Medeiros Z , Sá A , Rocha A , Souza WV , Maciel A , Braga C . Am J Trop Med Hyg 2024 Lymphatic filariasis (LF) is a leading cause of disability due to infectious disease worldwide. The Recife Metropolitan Region (RMR) is the only remaining focus of LF in Brazil, where the parasite Wuchereria bancrofti is transmitted solely by the mosquito Culex quinquefasciatus. This study reports the results of transmission assessment surveys and molecular xenomonitoring in the city of Olinda, RMR, after nearly 15 years (2015-2016) of interventions for LF elimination. Participants were screened for W. bancrofti antigen via immunochromatographic card tests (ICT) in: 1) door-to-door surveys conducted for all children aged 5-7 years from 4 out of 17 intervention areas treated with at least five annual doses of mass drug administration (MDA), and 2) a two-stage cluster sampling survey of residents aged 5 years and older in non-MDA areas. Mosquitoes were collected via handheld aspirators in four MDA areas, differentiated by species, sex, and physiological status, pooled into groups of up to 10 blood-fed, semigravid, and gravid mosquitoes, and screened for W. bancrofti infection by real-time quantitative polymerase chain reaction (RT-qPCR). All 1,170 children from MDA areas and the entire population sample of 990 residents in non-MDA areas were ICT negative. In MDA areas, a total of 3,152 female Cx. quinquefasciatus mosquitoes in 277 households (range, 0-296 mosquitoes per house) were collected via aspiration. RT-qPCR of 233 pools of mosquitos were negative for W. bancrofti RNA; an independent reference laboratory confirmed these results. These results provide evidence that LF transmission has been halted in this setting. |
| The Human Phenotype Ontology in 2024: phenotypes around the world
Gargano MA , Matentzoglu N , Coleman B , Addo-Lartey EB , Anagnostopoulos AV , Anderton J , Avillach P , Bagley AM , Bakštein E , Balhoff JP , Baynam G , Bello SM , Berk M , Bertram H , Bishop S , Blau H , Bodenstein DF , Botas P , Boztug K , Čady J , Callahan TJ , Cameron R , Carbon SJ , Castellanos F , Caufield JH , Chan LE , Chute CG , Cruz-Rojo J , Dahan-Oliel N , Davids JR , de Dieuleveult M , de Souza V , de Vries BBA , de Vries E , DePaulo JR , Derfalvi B , Dhombres F , Diaz-Byrd C , Dingemans AJM , Donadille B , Duyzend M , Elfeky R , Essaid S , Fabrizzi C , Fico G , Firth HV , Freudenberg-Hua Y , Fullerton JM , Gabriel DL , Gilmour K , Giordano J , Goes FS , Moses RG , Green I , Griese M , Groza T , Gu W , Guthrie J , Gyori B , Hamosh A , Hanauer M , Hanušová K , He YO , Hegde H , Helbig I , Holasová K , Hoyt CT , Huang S , Hurwitz E , Jacobsen JOB , Jiang X , Joseph L , Keramatian K , King B , Knoflach K , Koolen DA , Kraus ML , Kroll C , Kusters M , Ladewig MS , Lagorce D , Lai MC , Lapunzina P , Laraway B , Lewis-Smith D , Li X , Lucano C , Majd M , Marazita ML , Martinez-Glez V , McHenry TH , McInnis MG , McMurry JA , Mihulová M , Millett CE , Mitchell PB , Moslerová V , Narutomi K , Nematollahi S , Nevado J , Nierenberg AA , Čajbiková NN , Nurnberger JI Jr , Ogishima S , Olson D , Ortiz A , Pachajoa H , Perez de Nanclares G , Peters A , Putman T , Rapp CK , Rath A , Reese J , Rekerle L , Roberts AM , Roy S , Sanders SJ , Schuetz C , Schulte EC , Schulze TG , Schwarz M , Scott K , Seelow D , Seitz B , Shen Y , Similuk MN , Simon ES , Singh B , Smedley D , Smith CL , Smolinsky JT , Sperry S , Stafford E , Stefancsik R , Steinhaus R , Strawbridge R , Sundaramurthi JC , Talapova P , Tenorio Castano JA , Tesner P , Thomas RH , Thurm A , Turnovec M , van Gijn ME , Vasilevsky NA , Vlčková M , Walden A , Wang K , Wapner R , Ware JS , Wiafe AA , Wiafe SA , Wiggins LD , Williams AE , Wu C , Wyrwoll MJ , Xiong H , Yalin N , Yamamoto Y , Yatham LN , Yocum AK , Young AH , Yüksel Z , Zandi PP , Zankl A , Zarante I , Zvolský M , Toro S , Carmody LC , Harris NL , Munoz-Torres MC , Danis D , Mungall CJ , Köhler S , Haendel MA , Robinson PN . Nucleic Acids Res 2023 52 D1333-D1346
The Human Phenotype Ontology (HPO) is a widely used resource that comprehensively organizes and defines the phenotypic features of human disease, enabling computational inference and supporting genomic and phenotypic analyses through semantic similarity and machine learning algorithms. The HPO has widespread applications in clinical diagnostics and translational research, including genomic diagnostics, gene-disease discovery, and cohort analytics. In recent years, groups around the world have developed translations of the HPO from English to other languages, and the HPO browser has been internationalized, allowing users to view HPO term labels and in many cases synonyms and definitions in ten languages in addition to English. Since our last report, a total of 2239 new HPO terms and 49235 new HPO annotations were developed, many in collaboration with external groups in the fields of psychiatry, arthrogryposis, immunology and cardiology. The Medical Action Ontology (MAxO) is a new effort to model treatments and other measures taken for clinical management. Finally, the HPO consortium is contributing to efforts to integrate the HPO and the GA4GH Phenopacket Schema into electronic health records (EHRs) with the goal of more standardized and computable integration of rare disease data in EHRs. |
| Annual (2023) taxonomic update of RNA-directed RNA polymerase-encoding negative-sense RNA viruses (realm Riboviria: kingdom Orthornavirae: phylum Negarnaviricota)
Kuhn JH , Abe J , Adkins S , Alkhovsky SV , Avšič-Županc T , Ayllón MA , Bahl J , Balkema-Buschmann A , Ballinger MJ , Kumar Baranwal V , Beer M , Bejerman N , Bergeron É , Biedenkopf N , Blair CD , Blasdell KR , Blouin AG , Bradfute SB , Briese T , Brown PA , Buchholz UJ , Buchmeier MJ , Bukreyev A , Burt F , Büttner C , Calisher CH , Cao M , Casas I , Chandran K , Charrel RN , Kumar Chaturvedi K , Chooi KM , Crane A , Dal Bó E , Carlos de la Torre J , de Souza WM , de Swart RL , Debat H , Dheilly NM , Di Paola N , Di Serio F , Dietzgen RG , Digiaro M , Drexler JF , Duprex WP , Dürrwald R , Easton AJ , Elbeaino T , Ergünay K , Feng G , Firth AE , Fooks AR , Formenty PBH , Freitas-Astúa J , Gago-Zachert S , Laura García M , García-Sastre A , Garrison AR , Gaskin TR , Gong W , Gonzalez JJ , de Bellocq J , Griffiths A , Groschup MH , Günther I , Günther S , Hammond J , Hasegawa Y , Hayashi K , Hepojoki J , Higgins CM , Hongō S , Horie M , Hughes HR , Hume AJ , Hyndman TH , Ikeda K , Jiāng D , Jonson GB , Junglen S , Klempa B , Klingström J , Kondō H , Koonin EV , Krupovic M , Kubota K , Kurath G , Laenen L , Lambert AJ , Lǐ J , Li JM , Liu R , Lukashevich IS , MacDiarmid RM , Maes P , Marklewitz M , Marshall SH , Marzano SL , McCauley JW , Mirazimi A , Mühlberger E , Nabeshima T , Naidu R , Natsuaki T , Navarro B , Navarro JA , Neriya Y , Netesov SV , Neumann G , Nowotny N , Nunes MRT , Ochoa-Corona FM , Okada T , Palacios G , Pallás V , Papa A , Paraskevopoulou S , Parrish CR , Pauvolid-Corrêa A , Pawęska JT , Pérez DR , Pfaff F , Plemper RK , Postler TS , Rabbidge LO , Radoshitzky SR , Ramos-González PL , Rehanek M , Resende RO , Reyes CA , Rodrigues TCS , Romanowski V , Rubbenstroth D , Rubino L , Runstadler JA , Sabanadzovic S , Sadiq S , Salvato MS , Sasaya T , Schwemmle M , Sharpe SR , Shi M , Shimomoto Y , Kavi Sidharthan V , Sironi M , Smither S , Song JW , Spann KM , Spengler JR , Stenglein MD , Takada A , Takeyama S , Tatara A , Tesh RB , Thornburg NJ , Tian X , Tischler ND , Tomitaka Y , Tomonaga K , Tordo N , Tu C , Turina M , Tzanetakis IE , Maria Vaira A , van den Hoogen B , Vanmechelen B , Vasilakis N , Verbeek M , von Bargen S , Wada J , Wahl V , Walker PJ , Waltzek TB , Whitfield AE , Wolf YI , Xia H , Xylogianni E , Yanagisawa H , Yano K , Ye G , Yuan Z , Zerbini FM , Zhang G , Zhang S , Zhang YZ , Zhao L , Økland AL . J Gen Virol 2023 104 (8)
In April 2023, following the annual International Committee on Taxonomy of Viruses (ICTV) ratification vote on newly proposed taxa, the phylum Negarnaviricota was amended and emended. The phylum was expanded by one new family, 14 new genera, and 140 new species. Two genera and 538 species were renamed. One species was moved, and four were abolished. This article presents the updated taxonomy of Negarnaviricota as now accepted by the ICTV. |
| Reemergence of Dengue Virus Serotype 3, Brazil, 2023
Naveca FG , Santiago GA , Maito RM , Ribeiro Meneses CA , do Nascimento VA , de Souza VC , do Nascimento FO , Silva D , Mejía M , Gonçalves L , de Figueiredo RMP , Ribeiro Cruz AC , Diniz Nunes BT , Presibella MM , Quallio Marques NF , Riediger IN , de Mendonça MCL , de Bruycker-Nogueira F , Sequeira PC , de Filippis AMB , Resende P , Campos T , Wallau GL , Gräf T , Delatorre E , Kopp E , Morrison A , Muñoz-Jordán JL , Bello G . Emerg Infect Dis 2023 29 (7) 1482-1484 We characterized 3 autochthonous dengue virus serotype 3 cases and 1 imported case from 2 states in the North and South Regions of Brazil, 15 years after Brazil's last outbreak involving this serotype. We also identified a new Asian lineage recently introduced into the Americas, raising concerns about future outbreaks. |
| Reemergence of Dengue Virus Serotype 3, Brazil, 2023 (preprint)
Naveca FG , Santiago GA , Maito RM , Meneses CAR , do Nascimento VA , de Souza VC , do Nascimento FO , Silva D , Mejia M , Goncalves L , de Figueiredo RMP , Cruz ACR , Nunes BTD , Presibella MM , Marques NFQ , Riediger IN , de Mendonca MCL , de Bruycker-Nogueira F , Sequeira PC , de Filippis AMB , Resende P , Campos T , Wallau GL , Graf T , Delatorre E , Kopp E , Morrison A , Munoz-Jordan JL , Bello G . medRxiv 2023 05 (7) 1482-1484 In 2023, three autochthonous DENV-3 cases were detected in Roraima and one imported case in Parana, fifteen years after the last DENV-3 outbreak in Brazil. Phylogenetic analyses confirmed all belonging to a new Asian lineage recently introduced in the Americas, raising concerns about future large dengue outbreaks in this region. Copyright The copyright holder for this preprint is the author/funder, who has granted medRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-ND 4.0 International license. |
| Interspecies transmission from pigs to ferrets of antigenically distinct swine H1 influenza A viruses with loss in reactivity to human vaccine virus antisera as measures of relative zoonotic risk (preprint)
Brian Kimble J , Souza CK , Anderson TK , Arendsee ZW , Hufnagel DE , Young KM , Lewis NS , Todd Davis C , Vincent Baker AL . bioRxiv 2022 13 During the last decade, endemic swine H1 influenza A viruses (IAV) from six different genetic clades of the hemagglutinin gene caused zoonotic infections in humans. The majority of zoonotic events with swine IAV were restricted to a single case with no subsequent transmission. However, repeated introduction of human-seasonal H1N1, continual reassortment between endemic swine IAV, and subsequent drift in the swine host resulted in highly diverse swine IAV with human-origin genes that may become a risk to the human population. To prepare for the potential of a future swine-origin IAV pandemic in humans, public health laboratories selected candidate vaccine viruses (CVV) for use as vaccine seed strains. To assess the pandemic risk of contemporary US swine H1N1 or H1N2 strains, we quantified the genetic diversity of swine H1 HA genes, and identified representative strains from each circulating clade. We then characterized the representative swine IAV against human seasonal vaccine and CVV strains using ferret antisera in hemagglutination inhibition assays (HI). HI assays revealed that 1A.3.3.2 (pdm) and 1B.2.1 (delta-2) demonstrated strong cross reactivity to human seasonal vaccines or CVVs. However, swine IAV from three clades that represent more than 50% of the detected swine IAVs in the USA showed significant reduction in cross-reactivity compared to the closest CVV virus: 1A.1.1.3 (alpha-deletion), 1A.3.3.3-clade 3 (gamma), and 1B.2.2.1 (delta-1a). Representative viruses from these three clades were further characterized in a pig-to-ferret transmission model and shown to exhibit variable transmission efficiency. Our data prioritize specific genotypes of swine H1N1 and H1N2 to further investigate in the risk they pose to the human population. Copyright The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. This article is a US Government work. It is not subject to copyright under 17 USC 105 and is also made available for use under a CC0 license. |
| Whole-Genome Sequencing of Candida haemulonii species complex from Brazil and the United States: genetic diversity and antifungal susceptibility.
de Barros Rodrigues DK , Lockhart SR , Berkow EL , Gade L , Bonfietti LX , Gimenes VMF , Ruiz LS , Macioni MB , de Souza Carvalho Melhem M . Med Mycol 2023 61 (4)
Candida haemulonii complex species can be multidrug-resistant (MDR) and cause infections such as candidemia. This study determined the genetic relationship between isolates from Brazil and the United States through whole-genome sequencing and performed antifungal susceptibility testing to investigate drug resistance. Contrary to what is widely described, most isolates were susceptible to azoles. However, an atypical susceptibility profile was found in 50% of C. pseudohaemulonii strains including resistance to the three echinocandins. Isolates from both countries formed distinct clusters with wide genetic diversity. Isolates from three hospitals in Brazil were clonal and involved in candidemia cases, pointing to the importance of improving hospital infection control measures and molecular identification. | Candida haemulonii complex species is worldwide distributed and this study aimed to evaluate the resistance to antifungal drugs in cases from Brazil and the United States, and also compare their genetic relationship. Fifty strains were studied, most of them from Brazil were from cases of bloodstream infections while the strains from the United States came from cases of wounds and may be associated with diabetic patients. The vast majority of strains were resistant to amphotericin B, one of the most effective drugs, and susceptible to fluconazole. In addition, 50% of C. pseudohaemulonii strains were resistant to echinocandins. The strains from Brazil and the United States had no genetic relationship and formed two distinct groups. In 3 Brazilian hospitals, strains were clonal indicating an intrahospital transmission. Our findings contribute to guiding therapy in bloodstream fungal infections caused by Candida haemulonii species and alert for nosocomial transmission of this yeast complex species. | eng |
| Swine-to-Ferret Transmission of Antigenically Drifted Contemporary Swine H3N2 Influenza A Virus Is an Indicator of Zoonotic Risk to Humans.
Souza CK , Kimble JB , Anderson TK , Arendsee ZW , Hufnagel DE , Young KM , Gauger PC , Lewis NS , Davis CT , Thor S , Vincent Baker AL . Viruses 2023 15 (2)
Human-to-swine transmission of influenza A (H3N2) virus occurs repeatedly and plays a critical role in swine influenza A virus (IAV) evolution and diversity. Human seasonal H3 IAVs were introduced from human-to-swine in the 1990s in the United States and classified as 1990.1 and 1990.4 lineages; the 1990.4 lineage diversified into 1990.4.A-F clades. Additional introductions occurred in the 2010s, establishing the 2010.1 and 2010.2 lineages. Human zoonotic cases with swine IAV, known as variant viruses, have occurred from the 1990.4 and 2010.1 lineages, highlighting a public health concern. If a variant virus is antigenically drifted from current human seasonal vaccine (HuVac) strains, it may be chosen as a candidate virus vaccine (CVV) for pandemic preparedness purposes. We assessed the zoonotic risk of US swine H3N2 strains by performing phylogenetic analyses of recent swine H3 strains to identify the major contemporary circulating genetic clades. Representatives were tested in hemagglutination inhibition assays with ferret post-infection antisera raised against existing CVVs or HuVac viruses. The 1990.1, 1990.4.A, and 1990.4.B.2 clade viruses displayed significant loss in cross-reactivity to CVV and HuVac antisera, and interspecies transmission potential was subsequently investigated in a pig-to-ferret transmission study. Strains from the three lineages were transmitted from pigs to ferrets via respiratory droplets, but there were differential shedding profiles. These data suggest that existing CVVs may offer limited protection against swine H3N2 infection, and that contemporary 1990.4.A viruses represent a specific concern given their widespread circulation among swine in the United States and association with multiple zoonotic cases. |
| RABIES DIAGNOSIS AND RESPONSE TO VACCINATION IN SOUTHERN TAMANDUA (TAMANDUA TETRADACTYLA).
Cushing AC , Sheldon J , Martinelli L , Grome H , Souza M , Dunn J , Craig LE , Carlson A , Niezgoda M , Satheshkumar PS , Wallace R . J Zoo Wildl Med 2023 53 (4) 797-800
Rabies has rarely been described in Xenarthra, and rabies vaccine response has not been documented. A southern tamandua (Tamandua tetradactyla) presented with nonspecific clinical signs and was euthanatized. Subsequently, immunohistochemistry and RT-PCR confirmed a rabies diagnosis. Following these tests, a group of eight captive tamanduas were vaccinated with a killed rabies vaccine, and titers were measured at the time of vaccination and 23 d later. One animal had day 0 titers suggestive of previous vaccination or exposure. All animals had detectable neutralizing rabies virus antibody titers after vaccination, but one animal failed to meet the World Organization for Animal Health's definition for adequate vaccination (≥0.5 IU/ml), and two other animals had low antibody titers (0.56 and 0.6 IU/ml). Rabies should be considered as a possible cause of illness in tamanduas, and rabies vaccination may be a useful preventative measure when anthropic interaction through medical care or ambassador roles is occurring. |
| Retrospective molecular investigation of Mayaro and Oropouche viruses at the human-animal interface in West-central Brazil, 2016-2018.
Dias HG , de Lima RC , Barbosa LS , Souza TMA , Badolato-Correa J , Maia LMS , Ferreira RDS , Neves Nads , Costa MCS , Martins LR , Souza EM , Carvalho MDS , Araujo-Oliveira A , Marques WA , Sabino-Santos G , Marques MS , Macedo GC , Nantes WAG , Santos FM , Netto CC , Morgado TO , Bianchini MA , Correa SHR , Almeida JR , Campos LP , Souza IM , Barreto WTG , Porfírio G , Alencar JAF , Herrera HM , Shlessarenko RD , Cunha RVD , Azeredo EL , Salyer SJ , Komar N , Pauvolid-Corrêa A , Dos Santos FB . PLoS One 2022 17 (11) e0277612
Mayaro virus (MAYV, Togaviridae) and Oropouche orthobunyavirus (OROV, Peribunyaviridae) are emerging enzootic arboviruses in Latin America. Outbreaks of febrile illness associated with MAYV and OROV have been reported among humans mainly in the northern region of Brazil since the 1980s, and recent data suggest these viruses have circulated also in more populated areas of western Brazil. MAYV shares mosquito vectors with yellow fever virus and it has been historically detected during yellow fever epidemics. Aiming to investigate the transmission of OROV and MAYV at the human-animal interface during a yellow fever, chikungunya and Zika outbreaks in Brazil, we conducted a retrospective molecular investigation in 810 wild and domestic animals, 106 febrile patients, and 22.931 vectors collected from 2016 to 2018 in Cuiaba and Campo Grande metropolitan regions, western Brazil. All samples tested negative for OROV and MAYV RNA by RT-qPCR. Findings presented here suggest no active circulation of MAYV and OROV in the sampled hosts. Active surveillance and retrospective investigations are instrumental approaches for the detection of cryptic and subclinical activity of enzootic arboviruses and together serve as a warning system to implement appropriate actions to prevent outbreaks. |
| Interspecies Transmission from Pigs to Ferrets of Antigenically Distinct Swine H1 Influenza A Viruses with Reduced Reactivity to Candidate Vaccine Virus Antisera as Measures of Relative Zoonotic Risk.
Kimble JB , Souza CK , Anderson TK , Arendsee ZW , Hufnagel DE , Young KM , Lewis NS , Davis CT , Thor S , Vincent Baker AL . Viruses 2022 14 (11)
During the last decade, endemic swine H1 influenza A viruses (IAV) from six different genetic clades of the hemagglutinin gene caused zoonotic infections in humans. The majority of zoonotic events with swine IAV were restricted to a single case with no subsequent transmission. However, repeated introduction of human-seasonal H1N1, continual reassortment between endemic swine IAV, and subsequent drift in the swine host resulted in highly diverse swine IAV with human-origin genes that may become a risk to the human population. To prepare for the potential of a future swine-origin IAV pandemic in humans, public health laboratories selected candidate vaccine viruses (CVV) for use as vaccine seed strains. To assess the pandemic risk of contemporary US swine H1N1 or H1N2 strains, we quantified the genetic diversity of swine H1 HA genes, and identified representative strains from each circulating clade. We then characterized the representative swine IAV against human seasonal vaccine and CVV strains using ferret antisera in hemagglutination inhibition assays (HI). HI assays revealed that 1A.3.3.2 (pdm09) and 1B.2.1 (delta-2) demonstrated strong cross reactivity to human seasonal vaccines or CVVs. However, swine IAV from three clades that represent more than 50% of the detected swine IAVs in the USA showed significant reduction in cross-reactivity compared to the closest CVV virus: 1A.1.1.3 (alpha-deletion), 1A.3.3.3-clade 3 (gamma), and 1B.2.2.1 (delta-1a). Representative viruses from these three clades were further characterized in a pig-to-ferret transmission model and shown to exhibit variable transmission efficiency. Our data prioritize specific genotypes of swine H1N1 and H1N2 to further investigate in the risk they pose to the human population. |
| ICTV Virus Taxonomy Profile: Hepeviridae 2022.
Purdy MA , Drexler JF , Meng XJ , Norder H , Okamoto H , Van der Poel WHM , Reuter G , de Souza WM , Ulrich RG , Smith DB . J Gen Virol 2022 103 (9)
The family Hepeviridae includes enterically transmitted small quasi-enveloped or non-enveloped positive-sense single-stranded RNA viruses infecting mammals and birds (subfamily Orthohepevirinae) or fish (Parahepevirinae). Hepatitis E virus (genus Paslahepevirus) is responsible for self-limiting acute hepatitis in humans; the infection may become chronic in immunocompromised individuals and extrahepatic manifestations have been described. Avian hepatitis E virus (genus Avihepevirus) causes hepatitis-splenomegaly syndrome in chickens. This is a summary of the International Committee on Taxonomy of Viruses (ICTV) Report on the family Hepeviridae, which is available at www.ictv.global/report/hepeviridae. |
| HLA-B∗46 associates with rapid HIV disease progression in Asian cohorts and prominent differences in NK cell phenotype.
Li SS , Hickey A , Shangguan S , Ehrenberg PK , Geretz A , Butler L , Kundu G , Apps R , Creegan M , Clifford RJ , Pinyakorn S , Eller LA , Luechai P , Gilbert PB , Holtz TH , Chitwarakorn A , Sacdalan C , Kroon E , Phanuphak N , de Souza M , Ananworanich J , O'Connell RJ , Robb ML , Michael NL , Vasan S , Thomas R . Cell Host Microbe 2022 30 (8) 1173-1185 e8
Human leukocyte antigen (HLA) alleles have been linked to HIV disease progression and attributed to differences in cytotoxic T lymphocyte (CTL) epitope representation. These findings are largely based on treatment-naive individuals of European and African ancestry. We assessed HLA associations with HIV-1 outcomes in 1,318 individuals from Thailand and found HLA-B∗46:01 (B∗46) associated with accelerated disease in three independent cohorts. B∗46 had no detectable effect on HIV-specific T cell responses, but this allele is unusual in containing an HLA-C epitope that binds inhibitory receptors on natural killer (NK) cells. Unbiased transcriptomic screens showed increased NK cell activation in people with HIV, without B∗46, and simultaneous single-cell profiling of surface proteins and transcriptomes revealed a NK cell subset primed for increased responses in the absence of B∗46. These findings support a role for NK cells in HIV pathogenesis, revealed by the unique properties of the B∗46 allele common only in Asia. |
| Translocation of an anteater (tamandua tetradactyla) infected with rabies from Virginia to Tennessee resulting in multiple human exposures, 2021
Grome HN , Yackley J , Goonewardene D , Cushing A , Souza M , Carlson A , Craig L , Cranmore B , Wallace R , Orciari L , Niezgoda M , Panayampalli S , Gigante C , Fill MM , Jones T , Schaffner W , Dunn J . MMWR Morb Mortal Wkly Rep 2022 71 (15) 533-537 On August 16, 2021, the Tennessee Department of Health (TDH) was notified of a positive rabies test result from a South American collared anteater (Tamandua tetradactyla) in Washington County, Tennessee. Tamanduas, or lesser anteaters, are a species of anteater in which rabies has not previously been reported. The animal was living at a Tennessee zoo and had been recently translocated from a zoo in Virginia. TDH conducted an investigation to confirm the rabies result, characterize the rabies variant, and ascertain an exposure risk assessment among persons who came into contact with the tamandua. Risk assessments for 22 persons were completed to determine the need for rabies postexposure prophylaxis (rPEP); rPEP was recommended for 13 persons, all of whom agreed to receive it. Using phylogenetic results of the virus isolated from the tamandua and knowledge of rabies epidemiology, public health officials determined that the animal was likely exposed to wild raccoons present at the Virginia zoo. This report describes expansion of the wide mammalian species diversity susceptible to rabies virus infection and summarizes the investigation, highlighting coordination among veterinary and human public health partners and the importance of preexposure rabies vaccination for animal handlers and exotic zoo animals. |
| Destruction of Schistosoma mansoni sporocysts in Biomphalaria glabrata after phytochemical exposure
Friani G , Costa VA , Mota E , Faro MJ , Souza S , Figueiredo M , Glo PS , Mello-Silva CC . An Acad Bras Cienc 2022 94 (2) e20190676 Schistosomiasis is a neglected tropical disease and affects over 200 million people worldwide. The snail Biomphalaria glabrata is one of the intermediate hosts of S. mansoni. The aim of this work was to verify the action of Euphorbia milii var. hislopii latex in the hemocytes profile and histopathology of B. glabrata infected by S. mansoni. Uninfected and infected snails were exposed to sublethal concentration of E. milii latex for 24 hours (1.0 mg/L). The survival rate was 88.5% for the uninfected snails and 66.6% for the infected and exposed snails. In the snails infected by S. mansoni, the exposure to E. milii latex promoted proliferation of hemocytes in the tentacles, mantle, digestive gland and kidney. In the digestive gland and the kidney, granulomatous reactions occurred around the sporocysts and caused their destruction. The number of circulating hemocytes from the group infected and exposed to E. milii latex was significantly higher than in the other groups. Three types of hemocytes were found: hyalinocytes, granulocytes and blast-like cells. We conclude that the E. milii latex influenced the cellular immune response of the susceptible B. glabrata strain to infection by S. mansoni, promoting the destruction of parasites. |
| Efficacy and safety of artemether-lumefantrine and dihydroartemisinin-piperaquine for the treatment of uncomplicated Plasmodium falciparum malaria and prevalence of molecular markers associated with artemisinin and partner drug resistance in Uganda.
Ebong C , Sserwanga A , Namuganga JF , Kapisi J , Mpimbaza A , Gonahasa S , Asua V , Gudoi S , Kigozi R , Tibenderana J , Bwanika JB , Bosco A , Rubahika D , Kyabayinze D , Opigo J , Rutazana D , Sebikaari G , Belay K , Niang M , Halsey ES , Moriarty LF , Lucchi NW , Souza SSS , Nsobya SL , Kamya MR , Yeka A . Malar J 2021 20 (1) 484
BACKGROUND: In Uganda, artemether-lumefantrine (AL) is first-line therapy and dihydroartemisinin-piperaquine (DP) second-line therapy for the treatment of uncomplicated malaria. This study evaluated the efficacy and safety of AL and DP in the management of uncomplicated falciparum malaria and measured the prevalence of molecular markers of resistance in three sentinel sites in Uganda from 2018 to 2019. METHODS: This was a randomized, open-label, phase IV clinical trial. Children aged 6 months to 10 years with uncomplicated falciparum malaria were randomly assigned to treatment with AL or DP and followed for 28 and 42 days, respectively. Genotyping was used to distinguish recrudescence from new infection, and a Bayesian algorithm was used to assign each treatment failure a posterior probability of recrudescence. For monitoring resistance, Pfk13 and Pfmdr1 genes were Sanger sequenced and plasmepsin-2 copy number was assessed by qPCR. RESULTS: There were no early treatment failures. The uncorrected 28-day cumulative efficacy of AL ranged from 41.2 to 71.2% and the PCR-corrected cumulative 28-day efficacy of AL ranged from 87.2 to 94.4%. The uncorrected 28-day cumulative efficacy of DP ranged from 95.8 to 97.9% and the PCR-corrected cumulative 28-day efficacy of DP ranged from 98.9 to 100%. The uncorrected 42-day efficacy of DP ranged from 73.5 to 87.4% and the PCR-corrected 42-day efficacy of DP ranged from 92.1 to 97.5%. There were no reported serious adverse events associated with any of the regimens. No resistance-associated mutations in the Pfk13 gene were found in the successfully sequenced samples. In the AL arm, the NFD haplotype (N86Y, Y184F, D1246Y) was the predominant Pfmdr1 haplotype, present in 78 of 127 (61%) and 76 of 110 (69%) of the day 0 and day of failure samples, respectively. All the day 0 samples in the DP arm had one copy of the plasmepsin-2 gene. CONCLUSIONS: DP remains highly effective and safe for the treatment of uncomplicated malaria in Uganda. Recurrent infections with AL were common. In Busia and Arua, the 95% confidence interval for PCR-corrected AL efficacy fell below 90%. Further efficacy monitoring for AL, including pharmacokinetic studies, is recommended. Trial registration The trail was also registered with the ISRCTN registry with study Trial No. PACTR201811640750761. |
| Diagnostics to support elimination of lymphatic filariasis-Development of two target product profiles
Won KY , Gass K , Biamonte M , Dagne DA , Ducker C , Hanna C , Hoerauf A , Lammie PJ , Njenga SM , Noordin R , Ramaiah KD , Ramzy R , Scholte RGC , Solomon AW , Souza AA , Tappero J , Toubali E , Weil GJ , Williams SA , King JD . PLoS Negl Trop Dis 2021 15 (11) e0009968 As lymphatic filariasis (LF) programs move closer to established targets for validation elimination of LF as a public health problem, diagnostic tools capable of supporting the needs of the programs are critical for success. Known limitations of existing diagnostic tools make it challenging to have confidence that program endpoints have been achieved. In 2019, the World Health Organization (WHO) established a Diagnostic Technical Advisory Group (DTAG) for Neglected Tropical Diseases tasked with prioritizing diagnostic needs including defining use-cases and target product profiles (TPPs) for needed tools. Subsequently, disease-specific DTAG subgroups, including one focused on LF, were established to develop TPPs and use-case analyses to be used by product developers. Here, we describe the development of two priority TPPs for LF diagnostics needed for making decisions for stopping mass drug administration (MDA) of a triple drug regimen and surveillance. Utilizing the WHO core TPP development process as the framework, the LF subgroup convened to discuss and determine attributes required for each use case. TPPs considered the following parameters: product use, design, performance, product configuration and cost, and access and equity. Version 1.0 TPPs for two use cases were published by WHO on 12 March 2021 within the WHO Global Observatory on Health Research and Development. A common TPP characteristic that emerged in both use cases was the need to identify new biomarkers that would allow for greater precision in program delivery. As LF diagnostic tests are rarely used for individual clinical diagnosis, it became apparent that reliance on population-based surveys for decision making requires consideration of test performance in the context of such surveys. In low prevalence settings, the number of false positive test results may lead to unnecessary continuation or resumption of MDA, thus wasting valuable resources and time. Therefore, highly specific diagnostic tools are paramount when used to measure low thresholds. The TPP process brought to the forefront the importance of linking use case, program platform and diagnostic performance characteristics when defining required criteria for diagnostic tools. |
| 2021 Taxonomic update of phylum Negarnaviricota (Riboviria: Orthornavirae), including the large orders Bunyavirales and Mononegavirales.
Kuhn JH , Adkins S , Agwanda BR , Al Kubrusli R , Alkhovsky Aльxoвcкий Cepгeй Bлaдимиpoвич SV , Amarasinghe GK , Avšič-Županc T , Ayllón MA , Bahl J , Balkema-Buschmann A , Ballinger MJ , Basler CF , Bavari S , Beer M , Bejerman N , Bennett AJ , Bente DA , Bergeron É , Bird BH , Blair CD , Blasdell KR , Blystad DR , Bojko J , Borth WB , Bradfute S , Breyta R , Briese T , Brown PA , Brown JK , Buchholz UJ , Buchmeier MJ , Bukreyev A , Burt F , Büttner C , Calisher CH , Cao 曹孟籍 M , Casas I , Chandran K , Charrel RN , Cheng Q , Chiaki 千秋祐也 Y , Chiapello M , Choi IR , Ciuffo M , Clegg JCS , Crozier I , Dal Bó E , de la Torre JC , de Lamballerie X , de Swart RL , Debat H , Dheilly NM , Di Cicco E , Di Paola N , Di Serio F , Dietzgen RG , Digiaro M , Dolnik O , Drebot MA , Drexler JF , Dundon WG , Duprex WP , Dürrwald R , Dye JM , Easton AJ , Ebihara 海老原秀喜 H , Elbeaino T , Ergünay K , Ferguson HW , Fooks AR , Forgia M , Formenty PBH , Fránová J , Freitas-Astúa J , Fu 付晶晶 J , Fürl S , Gago-Zachert S , Gāo 高福 GF , García ML , García-Sastre A , Garrison AR , Gaskin T , Gonzalez JJ , Griffiths A , Goldberg TL , Groschup MH , Günther S , Hall RA , Hammond J , Han 韩彤 T , Hepojoki J , Hewson R , Hong 洪健 J , Hong 洪霓 N , Hongo 本郷誠治 S , Horie 堀江真行 M , Hu JS , Hu T , Hughes HR , Hüttner F , Hyndman TH , Ilyas M , Jalkanen R , Jiāng 姜道宏 D , Jonson GB , Junglen S , Kadono 上遠野冨士夫 F , Kaukinen KH , Kawate M , Klempa B , Klingström J , Kobinger G , Koloniuk I , Kondō 近藤秀樹 H , Koonin EV , Krupovic M , Kubota 久保田健嗣 K , Kurath G , Laenen L , Lambert AJ , Langevin SL , Lee B , Lefkowitz EJ , Leroy EM , Li 李邵蓉 S , Li 李龙辉 L , Lǐ 李建荣 J , Liu 刘华珍 H , Lukashevich IS , Maes P , de Souza WM , Marklewitz M , Marshall SH , Marzano SL , Massart S , McCauley JW , Melzer M , Mielke-Ehret N , Miller KM , Ming TJ , Mirazimi A , Mordecai GJ , Mühlbach HP , Mühlberger E , Naidu R , Natsuaki 夏秋知英 T , Navarro JA , Netesov Heтёcoв Cepгeй Bиктopoвич SV , Neumann G , Nowotny N , Nunes MRT , Olmedo-Velarde A , Palacios G , Pallás V , Pályi B , Papa Άννα Παπά A , Paraskevopoulou Σοφία Παρασκευοπούλου S , Park AC , Parrish CR , Patterson DA , Pauvolid-Corrêa A , Pawęska JT , Payne S , Peracchio C , Pérez DR , Postler TS , Qi 亓立莹 L , Radoshitzky SR , Resende RO , Reyes CA , Rima BK , Luna GR , Romanowski V , Rota P , Rubbenstroth D , Rubino L , Runstadler JA , Sabanadzovic S , Sall AA , Salvato MS , Sang R , Sasaya 笹谷孝英 T , Schulze AD , Schwemmle M , Shi 施莽 M , Shí 石晓宏 X , Shí 石正丽 Z , Shimomoto 下元祥史 Y , Shirako Y , Siddell SG , Simmonds P , Sironi M , Smagghe G , Smither S , Song 송진원 JW , Spann K , Spengler JR , Stenglein MD , Stone DM , Sugano J , Suttle CA , Tabata A , Takada 高田礼人 A , Takeuchi 竹内繁治 S , Tchouassi DP , Teffer A , Tesh RB , Thornburg NJ , Tomitaka 冨高保弘 Y , Tomonaga 朝長啓造 K , Tordo N , Torto B , Towner JS , Tsuda 津田新哉 S , Tu 涂长春 C , Turina M , Tzanetakis IE , Uchida J , Usugi 宇杉富雄 T , Vaira AM , Vallino M , van den Hoogen B , Varsani A , Vasilakis Νίκος Βασιλάκης N , Verbeek M , von Bargen S , Wada 和田治郎 J , Wahl V , Walker PJ , Wang 王林发 LF , Wang 王国平 G , Wang 王雁翔 Y , Wang 王亚琴 Y , Waqas M , Wèi 魏太云 T , Wen 温少华 S , Whitfield AE , Williams JV , Wolf YI , Wu 吴建祥 J , Xu 徐雷 L , Yanagisawa 栁澤広宣 H , Yang 杨彩霞 C , Yang 杨作坤 Z , Zerbini FM , Zhai 翟立峰 L , Zhang 张永振 YZ , Zhang 张松 S , Zhang 张靖国 J , Zhang 张哲 Z , Zhou 周雪平 X . Arch Virol 2021 166 (12) 3513-3566
In March 2021, following the annual International Committee on Taxonomy of Viruses (ICTV) ratification vote on newly proposed taxa, the phylum Negarnaviricota was amended and emended. The phylum was expanded by four families (Aliusviridae, Crepuscuviridae, Myriaviridae, and Natareviridae), three subfamilies (Alpharhabdovirinae, Betarhabdovirinae, and Gammarhabdovirinae), 42 genera, and 200 species. Thirty-nine species were renamed and/or moved and seven species were abolished. This article presents the updated taxonomy of Negarnaviricota as now accepted by the ICTV. |
| Educational Approach to Prevent the Burden of Vaccinia Virus Infections in a Bovine Vaccinia Endemic Area in Brazil
Barbosa Costa G , Silva de Oliveira J , Townsend MB , Carson WC , Borges IA , McCollum AM , Kroon EG , Satheshkumar PS , Reynolds MG , Nakazawa YJ , de Souza Trindade G . Pathogens 2021 10 (5) Bovine vaccinia (BV), caused by Vaccinia virus (VACV), is a zoonotic disease characterized by exanthematous lesions on the teats of dairy cows and the hands of milkers, and is an important public health issue in Brazil and South America. BV also results in economic losses to the dairy industry, being a burden to the regions involved in milk production. In the past 20 years, much effort has been made to increase the knowledge regarding BV epidemiology, etiologic agents, and interactions with the hosts and the environment. In the present study, we evaluated milking practices that could be associated with VACV infections in an endemic area in Brazil and proposed an educational tool to help prevent VACV infections. In our survey, 124 individuals (51.7%) from a total of 240 had previously heard of BV, 94 of which knew about it through BV outbreaks. Although most individuals involved in dairy activities (n = 85/91) reported having good hygiene practices, only 29.7% used adequate disinfecting products to clean their hands and 39.5% disinfected cows' teats before and after milking. Furthermore, 46.7% of individuals reported having contact with other farm and domestic animals besides dairy cattle. We also evaluated the presence of IgG and IgM antibodies in the surveyed population. Overall, 6.1% of likely unvaccinated individuals were positive for anti-Orthopoxvirus IgG antibodies, and 1.7% of all individuals were positive for IgM antibodies. Based on our findings, we proposed educational materials which target individuals with permanent residence in rural areas (mainly farmers and milkers), providing an overview and basic information about preventive measures against VACV infections that could enhance BV control and prevention efforts, especially for vulnerable populations located in endemic areas. |
| Development of rSs-NIE-1 and rSs-IR Recombinant Antigen-Based Immunoblot for Detection of Antibody to Strongyloides stercoralis
de Souza JN , Langford I , Wang Y , Soares NM , Handali S . Am J Trop Med Hyg 2021 104 (6) 2038-2041 Strongyloides stercoralis is a soil-transmitted nematode that can cause life-threatening conditions in immunocompromised persons. In the United States, strongyloidiasis should be considered mainly in immigrants, refugees, or travelers. The confirmatory laboratory diagnosis is usually performed by detecting larvae from the stool, duodenal material, and sputum. In persons who are immunocompromised with severe strongyloidiasis, adult worms and eggs can be detected from duodenal material. For serological diagnosis, most assays use crude antigens to detect anti-S. stercoralis IgG. Recently, recombinant proteins such as rSs-NIE-1 and rSs-IR have been used to detect IgG antibodies. We used rSs-NIE-1 and rSs-IR recombinant antigens to develop a biplex Western blot assay to detect the IgG4 antibody in individuals with strongyloidiasis. The sensitivities of rSs-NIE-1 and rSs-IR were 97.4% and 90.8%, respectively, whereas the specificities were 97.6% and 98%, respectively. In conclusion, the biplex rSs-NIE-1 and rSs-IR immunoblot performs well in detecting IgG4 antibody in S. stercoralis-infected persons. |
| Low prevalence of highly sulfadoxine-resistant dihydropteroate synthase alleles in Plasmodium falciparum isolates in Benin.
Svigel SS , Adeothy A , Kpemasse A , Houngbo E , Sianou A , Saliou R , Patton ME , Dagnon F , Halsey ES , Tchevoede A , Udhayakumar V , Lucchi NW . Malar J 2021 20 (1) 72
BACKGROUND: In 2004, in response to high levels of treatment failure associated with sulfadoxine-pyrimethamine (SP) resistance, Benin changed its first-line malaria treatment from SP to artemisinin-based combination therapy for treatment of uncomplicated Plasmodium falciparum malaria. Resistance to SP is conferred by accumulation of single nucleotide polymorphisms (SNPs) in P. falciparum genes involved in folate metabolism, dihydrofolate reductase (Pfdhfr) and dihydropteroate synthase (Pfdhps), targeted by pyrimethamine and sulfadoxine, respectively. Because SP is still used for intermittent preventive treatment in pregnant women (IPTp) and seasonal malaria chemoprevention (SMCP) in Benin, the prevalence of Pfdhfr and Pfdhps SNPs in P. falciparum isolates collected in 2017 were investigated. METHODS: This study was carried out in two sites where the transmission of P. falciparum malaria is hyper-endemic: Klouékanmey and Djougou. Blood samples were collected from 178 febrile children 6-59 months old with confirmed uncomplicated P. falciparum malaria and were genotyped for SNPs associated with SP resistance. RESULTS: The Pfdhfr triple mutant IRN (N51I, C59R, and S108N) was the most prevalent (84.6%) haplotype and was commonly found with the Pfdhps single mutant A437G (50.5%) or with the Pfdhps double mutant S436A and A437G (33.7%). The quintuple mutant, Pfdhfr IRN/Pfdhps GE (A437G and K540E), was rarely observed (0.8%). The A581G and A613S mutant alleles were found in 2.6 and 3.9% of isolates, respectively. Six isolates (3.9%) were shown to harbour a mutation at codon I431V, recently identified in West African parasites. CONCLUSIONS: This study showed that Pfdhfr triple IRN mutants are near fixation in this population and that the highly sulfadoxine-resistant Pfdhps alleles are not widespread in Benin. These data support the continued use of SP for chemoprevention in these study sites, which should be complemented by periodic nationwide molecular surveillance to detect emergence of resistant genotypes. |
| Use of a tablet-based system to perform abdominal ultrasounds in a field investigation of schistosomiasis-related morbidity in western Kenya
Straily A , Malit AO , Wanja D , Kavere EA , Kiplimo R , Aera R , Momanyi C , Mwangi S , Mukire S , Souza AA , Wiegand RE , Montgomery SP , Secor WE , Odiere M . Am J Trop Med Hyg 2021 104 (3) 898-901 Chronic intestinal schistosomiasis can cause severe hepatosplenic disease and is a neglected tropical disease of public health importance in sub-Saharan Africa, including Kenya. Although the goal of control programs is to reduce morbidity, milestones for program performance focus on reductions in prevalence and intensity of infection, rather than actual measures of morbidity. Using ultrasound to measure hepatosplenic disease severity is an accepted method of determining schistosomiasis-related morbidity; however, ultrasound has not historically been considered a field-deployable tool because of equipment limitations and unavailability of expertise. A point-of-care tablet-based ultrasound system was used to perform abdominal ultrasounds in a field investigation of schistosomiasis-related morbidity in western Kenya; during the study, other pathologies and pregnancies were also identified via ultrasound, and participants referred to care. Recent technological advances may make it more feasible to implement ultrasound as part of a control program and can also offer important benefits to the community. |
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