Last data update: May 16, 2025. (Total: 49299 publications since 2009)
Records 1-30 (of 107 Records) |
Query Trace: McCollum A[original query] |
---|
The rise of mpox in a post-smallpox world
McQuiston JH , McCollum A , Christie A , Torres F , Mermin J , Jernigan DB , Hutson CL . Emerg Infect Dis 2025 31 (1) 27-31 ![]() Reports of mpox are rising in Africa where the disease is endemic and in new countries where the disease has not been previously seen. The 2022 global outbreak of clade II mpox and an ongoing outbreak of the more lethal clade I mpox highlight the pandemic potential for monkeypox virus. Waning population immunity after the cessation of routine immunization for smallpox plays a key role in the changing epidemiologic patterns of mpox. Sustained human-to-human transmission of mpox is occurring widely in the context of insufficient population immunity, fueling genetic mutations that affect the accuracy of some diagnostic tests and that could lead to changing virulence. Additional research should address complex challenges for control of mpox, including improved diagnostics and medical countermeasures. The availability of vaccines should be expanded not only for outbreak response but also for broader routine use for persons in mpox-endemic countries. |
Fatal borealpox in an immunosuppressed patient treated with antivirals and vaccinia immunoglobulin - Alaska, 2023
Rogers JH , Westley B , Mego T , Newell KG , Laurance J , Smith L , Parker J , Park SY , Venkatasubrahmanyam S , Noll N , Bercovici S , Rao AK , McCollum AM , Davidson W , Carson WC , Townsend MB , Doty JB , Hutson C , Li Y , Wilkins K , Deng J , Gigante CM , Satheshkumar PS , Tuttle A , Villalba JA , Bhatnagar J , Reagan-Steiner S , Castrodale LJ , McLaughlin JB . Clin Infect Dis 2024 BACKGROUND: Borealpox virus (BRPV, formerly known as Alaskapox virus) is a zoonotic member of the Orthopoxvirus genus first identified in a person in 2015. In the six patients with infection previously observed BRPV involved mild, self-limiting illness. We report the first fatal BRPV infection in an immunosuppressed patient. METHODS: A man aged 69 years from Alaska's Kenai Peninsula was receiving anti-CD20 therapy for chronic lymphocytic leukemia. He presented to care for a tender, red papule in his right axilla with increasing induration and pain. The patient failed to respond to multiple prescribed antibiotic regimens and was hospitalized 65 days postsymptom onset for progression of presumed infectious cellulitis. BRPV was eventually detected through orthopoxvirus real-time polymerase chain reaction testing of mucosal swabs. He received combination antiviral therapy, including 21 days of intravenous tecovirimat, intravenous vaccinia immunoglobulin, and oral brincidofovir. Serial serology was conducted on specimens obtained posttreatment initiation. FINDINGS: The patient's condition initially improved with plaque recession, reduced erythema, and epithelization around the axillary lesion beginning one-week post-therapy. He later exhibited delayed wound healing, malnutrition, acute renal failure, and respiratory failure. He died 138 days postsymptom onset. Serologic testing revealed no evidence the patient generated a humoral immune response. No secondary cases were detected. CONCLUSION: This report demonstrates that BRPV can cause overwhelming disseminated infection in certain immunocompromised patients. Based on the patient's initial response, early BRPV identification and antiviral therapies might have been beneficial. These therapies, in combination with optimized immune function, should be considered for patients at risk for manifestations of BRPV. |
Risk of clade II mpox associated with intimate and nonintimate close contact among men who have sex with men and transgender adults - United States, August 2022-July 2023
Chard AN , Dalton AF , Diallo AO , Moulia DL , Deputy NP , Zecca IB , Quilter LAS , Kachur RE , McCollum AM , Rowlands JV , Britton AN , Fisher R , Chai SJ , Licherdell E , Still WL , Morris AL , Castilho JL , Markus TM , Morrow AS , Danza P , Hansen AP , Ali SI , Wegner CW , Weber R , Betancourt GS , Zipprich J , Sutton M , Pathela P , Hawkins S , Wendel KA , Feldstein LR . MMWR Morb Mortal Wkly Rep 2024 73 (40) 896-902 ![]() A global outbreak of clade II mpox associated with sexual contact, disproportionately affecting gay, bisexual, and other men who have sex with men (MSM), has been ongoing since May 2022. Information on types of contact most associated with transmission is limited. This report used data from a multijurisdictional vaccine effectiveness case-control study of sexually active persons aged 18-49 years who identified as MSM or transgender, collected during August 2022-July 2023. Odds of mpox associated with selected types of intimate and nonintimate close contact with a person with mpox were estimated. Among 457 case-patients and 1,030 control patients who met minimum data requirements, 150 (32.8%) case-patients and 57 (5.5%) control patients reported close contact with a person with mpox and were included in this analysis. Adjusted odds of mpox were 5.4 times as high among those who reported having condomless receptive anal sex with a person with mpox, compared with participants who reported close contact with a person with mpox and no condomless receptive anal sex with that person (OR = 5.4; p = 0.031). Although the mpox vaccine is highly effective, vaccination coverage remains low; a multifaceted approach to prevention remains important and should include vaccination promotion, safer sex practices, and increasing awareness that mpox continues to circulate. |
Analysis of monkeypox virus exposures and lesions by anatomic site
Guagliardo SAJ , Smith T , Hamer DH , Huits R , Kozarsky P , Libman M , McCollum AM , Angelo KM . Emerg Infect Dis 2024 30 (11) We used cross-sectional data from 226 patients with monkeypox virus to investigate the association between anatomic exposure site and lesion development. Penile, anorectal, and oral exposures predicted lesion presence at correlating anatomic sites. Exposure site also predicted the first lesion site of the penis and anus. |
Contact tracing for mpox clade II cases associated with air travel - United States, July 2021-August 2022
Delea KC , Chen TH , Lavilla K , Hercules Y , Gearhart S , Preston LE , Hughes CM , Minhaj FS , Waltenburg MA , Sunshine B , Rao AK , McCollum AM , Adams K , Ocaña M , Akinkugbe O , Brown C , Alvarado-Ramy F . MMWR Morb Mortal Wkly Rep 2024 73 (35) 758-762 Monkeypox virus (MPXV) can spread among humans through direct contact with lesions, scabs, or saliva; via respiratory secretions; and indirectly from fomites; via percutaneous injuries; and by crossing the placenta to the fetus during pregnancy. Since 2022, most patients with mpox in the United States have experienced painful skin lesions, and some have had severe illness. During 2021-2022, CDC initiated aircraft contact investigations after receiving reports of travelers on commercial flights with probable or confirmed mpox during their infectious period. Data were collected 1) during 2021, when two isolated clade II mpox cases not linked to an outbreak were imported into the United States by international travelers and 2) for flights arriving in or traveling within the United States during April 30-August 2, 2022, after a global clade II mpox outbreak was detected in May 2022. A total of 113 persons (100 passengers and 13 crew members) traveled on 221 flights while they were infectious with mpox. CDC developed definitions for aircraft contacts based on proximity to mpox cases and flight duration, sent information about these contacts to U.S. health departments, and received outcome information for 1,046 (68%) of 1,538 contacts. No traveler was found to have acquired mpox via a U.S. flight exposure. For persons with mpox and their contacts who had departed from the United States, CDC forwarded contact information as well as details about the exposure event to destination countries to facilitate their own public health investigations. Findings from these aircraft contact investigations suggest that traveling on a flight with a person with mpox does not appear to constitute an exposure risk or warrant routine contact tracing activities. Nonetheless, CDC recommends that persons with mpox isolate and delay travel until they are no longer infectious. |
Investigation of an mpox outbreak affecting many vaccinated persons in Chicago, IL-March 2023-June 2023
Faherty EAG , Holly T , Ogale YP , Spencer H , Becht AM , Crisler G , Wasz M , Stonehouse P , Barbian HJ , Zelinski C , Kittner A , Foulkes D , Anderson KW , Evans T , Nicolae L , Staton A , Hardnett C , Townsend MB , Carson WC , Satheshkumar PS , Hutson CL , Gigante CM , Quilter LAS , Gorman S , Borah B , Black SR , Pacilli M , Kern D , Kerins J , McCollum AM , Rao AK , Tabidze I . Clin Infect Dis 2024 79 (1) 122-129 ![]() ![]() BACKGROUND: After months of few mpox cases, an increase in cases was reported in Chicago during May 2023, predominantly among fully vaccinated (FV) patients. We investigated the outbreak scope, differences between vaccinated and unvaccinated patients, and hypotheses for monkeypox virus (MPXV) infection after vaccination. METHODS: We interviewed patients and reviewed medical records to assess demographic, behavioral, and clinical characteristics; mpox vaccine status; and vaccine administration routes. We evaluated serum antibody levels after infection and compared patient viral genomes with MPXV sequences in available databases. We discussed potential vaccine compromise with partners who manufactured, handled, and administered the vaccine associated with breakthrough infections. RESULTS: During 18 March-27 June 2023, we identified 49 mpox cases; 57% of these mpox patients were FV. FV patients received both JYNNEOS doses subcutaneously (57%), intradermally (7%), or via heterologous administration (36%). FV patients had more median sex partners (3; interquartile range [IQR] = 1-4) versus not fully vaccinated patients (1; IQR = 1-2). Thirty-six of 37 sequenced specimens belonged to lineage B.1.20 of clade IIb MPXV, which did not demonstrate any amino acid changes relative to B.1, the predominant lineage from May 2022. Vaccinated patients demonstrated expected humoral antibody responses; none were hospitalized. No vaccine storage excursions were identified. Approximately 63% of people at risk for mpox in Chicago were FV during this period. CONCLUSIONS: Our investigation indicated that cases were likely due to frequent behaviors associated with mpox transmission, even with relatively high vaccine effectiveness and vaccine coverage. Cases after vaccination might occur in similar populations. |
Notes from the field: Clade II mpox surveillance update - United States, October 2023-April 2024
Tuttle A , Hughes CM , Dvorak M , Aeschleman L , Davidson W , Wilkins K , Gigante C , Satheshkumar PS , Rao AK , Minhaj FS , Christensen BE , McQuiston JH , Hutson CL , McCollum AM . MMWR Morb Mortal Wkly Rep 2024 73 (20) 474-476 |
Monkeypox virus infections after 2 preexposure doses of JYNNEOS vaccine - United States, May 2022-May 2024
Guagliardo SAJ , Kracalik I , Carter RJ , Braden C , Free R , Hamal M , Tuttle A , McCollum AM , Rao AK . MMWR Morb Mortal Wkly Rep 2024 73 (20) 460-466 Two doses of JYNNEOS vaccine are effective in preventing many mpox cases and can reduce the severity of symptoms in infected persons. However, infections among fully vaccinated persons can occur. During May 2022-May 2024, a total of 271 mpox cases among fully vaccinated persons were reported to CDC from 27 U.S. jurisdictions. These reported infections are estimated to have occurred in <1% of fully vaccinated persons. Compared with cases among unvaccinated persons, infections among fully vaccinated persons were more likely to occur among non-Hispanic White men aged 30-39 years, were associated with increased numbers of sexual partners, and resulted in less severe disease (p<0.001). Among infections in fully vaccinated persons with complete data, infections after vaccination were reported more commonly after receipt of heterologous (subcutaneous and intradermal) (46%) or homologous subcutaneous (32%) JYNNEOS vaccination than after homologous intradermal (22%) vaccination. Disparate time intervals from vaccination to infection among fully vaccinated persons suggest that immunity is not waning. The median interval between the second vaccine dose and illness onset was longer for cases among persons who had received 2 intradermal doses (median = 363 days; IQR = 221-444 days) compared with cases in persons who had received 2 subcutaneous doses (median = 263 days; IQR = 47-334 days) (p<0.001). The implications of this finding are not known; however, these data should increase confidence in the effectiveness of vaccine doses that were administered intradermally, the preferred method of administration during the peak of the outbreak when vaccine supply was limited. Persons recommended to receive the JYNNEOS vaccine should receive 2 doses, irrespective of the route of administration, and at this time, additional doses are not recommended for the affected population. |
U.S. preparedness and response to increasing clade I mpox cases in the Democratic Republic of the Congo - United States, 2024
McQuiston JH , Luce R , Kazadi DM , Bwangandu CN , Mbala-Kingebeni P , Anderson M , Prasher JM , Williams IT , Phan A , Shelus V , Bratcher A , Soke GN , Fonjungo PN , Kabamba J , McCollum AM , Perry R , Rao AK , Doty J , Christensen B , Fuller JA , Baird N , Chaitram J , Brown CK , Kirby AE , Fitter D , Folster JM , Dualeh M , Hartman R , Bart SM , Hughes CM , Nakazawa Y , Sims E , Christie A , Hutson CL . MMWR Morb Mortal Wkly Rep 2024 73 (19) 435-440 ![]() ![]() Clade I monkeypox virus (MPXV), which can cause severe illness in more people than clade II MPXVs, is endemic in the Democratic Republic of the Congo (DRC), but the country has experienced an increase in suspected cases during 2023-2024. In light of the 2022 global outbreak of clade II mpox, the increase in suspected clade I cases in DRC raises concerns that the virus could spread to other countries and underscores the importance of coordinated, urgent global action to support DRC's efforts to contain the virus. To date, no cases of clade I mpox have been detected outside of countries in Central Africa where the virus is endemic. CDC and other partners are working to support DRC's response. In addition, CDC is enhancing U.S. preparedness by raising awareness, strengthening surveillance, expanding diagnostic testing capacity for clade I MPXV, ensuring appropriate specimen handling and waste management, emphasizing the importance of appropriate medical treatment, and communicating guidance on the recommended contact tracing, containment, behavior modification, and vaccination strategies. |
Co-circulating monkeypox and swinepox viruses, democratic republic of the congo, 2022
Kalonji T , Malembi E , Matela JP , Likafi T , Kinganda-Lusamaki E , Vakaniaki EH , Hoff NA , Aziza A , Muyembe F , Kabamba J , Cooreman T , Nguete B , Witte D , Ayouba A , Fernandez-Nuñez N , Roge S , Peeters M , Merritt S , Ahuka-Mundeke S , Delaporte E , Pukuta E , Mariën J , Bangwen E , Lakin S , Lewis C , Doty JB , Liesenborghs L , Hensley LE , McCollum A , Rimoin AW , Muyembe-Tamfum JJ , Shongo R , Kaba D , Mbala-Kingebeni P . Emerg Infect Dis 2024 30 (4) 761-765 ![]() ![]() In September 2022, deaths of pigs manifesting pox-like lesions caused by swinepox virus were reported in Tshuapa Province, Democratic Republic of the Congo. Two human mpox cases were found concurrently in the surrounding community. Specific diagnostics and robust sequencing are needed to characterize multiple poxviruses and prevent potential poxvirus transmission. |
Updating reproduction number estimates for Mpox in the Democratic Republic of Congo using surveillance data
Charniga K , McCollum AM , Hughes CM , Monroe B , Kabamba J , Lushima RS , Likafi T , Nguete B , Pukuta E , Muyamuna E , Tamfum JM , Karhemere S , Kaba D , Nakazawa Y . Am J Trop Med Hyg 2024 Incidence of human monkeypox (mpox) has been increasing in West and Central Africa, including in the Democratic Republic of Congo (DRC), where monkeypox virus (MPXV) is endemic. Most estimates of the pathogen's transmissibility in the DRC are based on data from the 1980s. Amid the global 2022 mpox outbreak, new estimates are needed to characterize the virus' epidemic potential and inform outbreak control strategies. We used the R package vimes to identify clusters of laboratory-confirmed mpox cases in Tshuapa Province, DRC. Cases with both temporal and spatial data were assigned to clusters based on the disease's serial interval and spatial kernel. We used the size of the clusters to infer the effective reproduction number, Rt, and the rate of zoonotic spillover of MPXV into the human population. Out of 1,463 confirmed mpox cases reported in Tshuapa Province between 2013 and 2017, 878 had both date of symptom onset and a location with geographic coordinates. Results include an estimated Rt of 0.82 (95% CI: 0.79-0.85) and a rate of 132 (95% CI: 122-143) spillovers per year assuming a reporting rate of 25%. This estimate of Rt is larger than most previous estimates. One potential explanation for this result is that Rt could have increased in the DRC over time owing to declining population-level immunity conferred by smallpox vaccination, which was discontinued around 1982. Rt could be overestimated if our assumption of one spillover event per cluster does not hold. Our results are consistent with increased transmissibility of MPXV in Tshuapa Province. |
Clinical manifestations of an outbreak of monkeypox virus in captive chimpanzees in Cameroon, 2016
Brien SC , LeBreton M , Doty JB , Mauldin MR , Morgan CN , Pieracci EG , Ritter JM , Matheny A , Tafon BG , Tamoufe U , Missoup AD , Nwobegahay J , Takuo JM , Nkom F , Mouiche MMM , Feussom JMK , Wilkins K , Wade A , McCollum AM . J Infect Dis 2024 ![]() Monkeypox virus (MPXV) is a re-emerging virus of global concern. An outbreak of Clade I MPXV affected 20 captive chimpanzees in Cameroon in 2016. We describe the epidemiology, virology, phylogenetics, and clinical progression of this outbreak. Clinical signs included exanthema, facial swelling, peri-laryngeal swelling, and eschar. Mpox can be lethal in captive chimpanzees with death likely resulting from respiratory complications. We advise avoiding anesthesia in animals with respiratory signs to reduce the likelihood of death. This outbreak presented a risk to animal care staff. There is a need for increased awareness and a One Health approach to preparation for outbreaks in wildlife rescue centers in primate range states where MPXV occurs. Control measures should include quarantining affected animals, limiting human contacts, surveillance of humans and animals, use of personal protective equipment, and regular decontamination of enclosures. |
How the orthodox features of orthopoxviruses led to an unorthodox Mpox outbreak: What we've learned, and what we still need to understand
Brooks JT , Reynolds MG , Torrone E , McCollum A , Spicknall IH , Gigante CM , Li Y , Satheshkumar PS , Quilter LAS , Rao AK , O'Shea J , Guagliardo SAJ , Townsend M , Hutson CL . J Infect Dis 2023 ![]() ![]() Orthopoxviruses are complex, large-genome DNA viruses that have repeatedly confounded expectations in terms of the clinical illness they cause and their patterns of spread. Monkeypox virus (MPXV) was originally characterized during outbreaks among captive primates in the late 1950's. Human disease (mpox) has been observed since the 1970's and inter-human spread has largely been associated with non-sexual, close physical contact in endemic areas of west and central Africa. In May 2022, a focus of Clade IIb MPXV transmission was detected, spreading largely by sexual contact through international networks of gay, bisexual, and other men who have sex with men. Despite decades of preparedness for the potential biothreat risk posed by smallpox, the outbreak grew in both size and geographic scope, testing the strength of smallpox preparedness tools and public health science alike. In this article we consider what was known about mpox prior to the 2022 outbreak, what we have learned about mpox and Clade IIb virus during the outbreak, and what outbreak response actions and continued research are needed to ensure the global public health community is equipped to detect and halt the further spread of this disease threat. We focus on how epidemiologic characterization and investigation together with laboratory studies have advanced our understanding of the transmission and pathogenesis of mpox, and describe what work remains to be done to optimize diagnostics, therapeutics, and vaccines. Persistent health inequities challenge our capacity to fully eliminate circulation of the 2022 outbreak strain of MPXV currently in the United States. |
Possible exposures among mpox patients without reported male-to-male sexual contact - six U.S. Jurisdictions, November 1-December 14, 2022
Sharpe JD , Charniga K , Byrd KM , Stefanos R , Lewis L , Watson J , Feldpausch A , Pavlick J , Hand J , Sokol T , Ortega E , Pathela P , Hennessy RR , Dulcey M , McHugh L , Pietrowski M , Perella D , Shah S , Maroufi A , Taylor M , Cope A , Belay ED , Ellington S , McCollum AM , Zilversmit Pao L , Guagliardo SAJ , Dawson P . MMWR Morb Mortal Wkly Rep 2023 72 (35) 944-948 The extent to which the 2022 mpox outbreak has affected persons without a recent history of male-to-male sexual contact (MMSC) is not well understood. During November 1-December 14, 2022, CDC partnered with six jurisdictional health departments to characterize possible exposures among mpox patients aged ≥18 years who did not report MMSC during the 3 weeks preceding symptom onset. Among 52 patients included in the analysis, 14 (27%) had a known exposure to a person with mpox, including sexual activity and other close intimate contact (eight) and household contact (six). Among 38 (73%) patients with no known exposure to a person with mpox, self-reported activities before illness onset included sexual activity and other close intimate contact (17; 45%), close face-to-face contact (14; 37%), attending large social gatherings (11; 29%), and being in occupational settings involving close skin-to-skin contact (10; 26%). These findings suggest that sexual activity remains an important route of mpox exposure among patients who do not report MMSC. |
How did the 2022 global mpox outbreak happen? A travel-associated case 6 months earlier may provide important clues
Kreuze MA , Minhaj FS , Duwell M , Gigante CM , Kim AM , Crum D , Perlmutter R , Rubin JH , Myers R , Lukula SL , Ravi-Caldwell N , Sockwell D , Chen TH , de Perio MA , Hughes CM , Davidson WB , Wilkins K , Baird N , Lowe D , Li Y , McCollum AM , Blythe D , Rao AK . Travel Med Infect Dis 2023 55 102618 ![]() ![]() Approximately 6 months before an unprecedented global mpox outbreak was first identified in the United Kingdom, an adult man was diagnosed with mpox in Maryland, USA [1]. At the time of the investigation, the case was only the eighth monkeypox virus (MPXV) infection diagnosed in a non-African country during the preceding 3 years, all of which were associated with recent travel to Nigeria [2]. One of these 8 imported cases occurred in Texas, USA four months earlier; that case exhibited features clinically consistent with those classically reported in Africa (i.e., large and diffuse lesions, high fever and prodromal symptoms, umbilicated lesions in the same stage of development on specific anatomic surfaces) [3]. In contrast, the Maryland case was milder in severity and had signs that, at the time, were considered unusual for mpox. Several aspects of the Maryland case are noteworthy and in retrospect may offer clues to the origins of the 2022 global mpox outbreak, as well as explain how mpox might have spread undetected before emerging as a global outbreak. |
Updating reproduction number estimates for mpox in the Democratic Republic of Congo using surveillance data (preprint)
Charniga K , McCollum AM , Hughes CM , Monroe B , Kabamba J , Lushima RS , Likafi T , Nguete B , Pukuta E , Muyamuna E , Tamfum JJM , Karhemere S , Kaba D , Nakazawa Y . medRxiv 2023 17 Incidence of human mpox has been increasing in West and Central Africa, including in the Democratic Republic of Congo (DRC), where monkeypox virus (MPXV) is endemic. Most estimates of the pathogen's transmissibility in DRC are based on data from the 1980s. Amid the global 2022 mpox outbreak, new estimates are needed to characterize the virus' epidemic potential and inform outbreak control strategies. We used the R package vimes to identify clusters of laboratory-confirmed mpox cases in Tshuapa Province, DRC. Cases with both temporal and spatial data were assigned to clusters based on the disease's serial interval and spatial kernel. We used the size of the clusters to infer the effective reproduction number, R<inf>t</inf>, and the rate of zoonotic spillover of MPXV into the human population. Out of 1,463 confirmed mpox cases reported in Tshuapa Province between 2013 and 2017, 878 had both date of symptom onset and a location with geographic coordinates. Results include an estimated R<inf>t</inf> of 0.82 (95% CI: 0.79 - 0.85) and a rate of 132 (95% CI: 122 - 143) spillovers per year assuming a reporting rate of 0.25. This estimate of R<inf>t</inf> is larger compared to most previous estimates. One potential explanation for this result is that R<inf>t</inf> could have increased in DRC over time due to declining population-level immunity conferred by smallpox vaccination, which was discontinued around 1982. R<inf>t</inf> could be overestimated if our assumption of one spillover event per cluster does not hold. Our results are consistent with increased transmissibility of MPXV in Tshuapa Province. Copyright The copyright holder for this preprint is the author/funder, who has granted medRxiv 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. |
Multiple lineages of Monkeypox virus detected in the United States, 2021-2022 (preprint)
Gigante CM , Korber B , Seabolt MH , Wilkins K , Davidson W , Rao AK , Zhao H , Hughes CM , Minhaj F , Waltenburg MA , Theiler J , Smole S , Gallagher GR , Blythe D , Myers R , Schulte J , Stringer J , Lee P , Mendoza RM , Griffin-Thomas LA , Crain J , Murray J , Atkinson A , Gonzalez AH , Nash J , Batra D , Damon I , McQuiston J , Hutson CL , McCollum AM , Li Y . bioRxiv 2022 11 (6619) 560-565 Monkeypox is a viral zoonotic disease endemic in Central and West Africa. In May 2022, dozens of non-endemic countries reported hundreds of monkeypox cases, most with no epidemiological link to Africa. We identified two lineages of Monkeypox virus (MPXV) among nine 2021 and 2022 U.S. monkeypox cases. A 2021 case was highly similar to the 2022 MPXV outbreak variant, suggesting a common ancestor. Analysis of mutations among these two lineages revealed an extreme preference for GA-to-AA mutations indicative of APOBEC3 cytosine deaminase activity that was shared among West African MPXV since 2017 but absent from Congo Basin lineages. Poxviruses are not thought to be subject to APOBEC3 editing; however, these findings suggest APOBEC3 activity has been recurrent and dominant in recent West African MPXV evolution. 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. |
Genomic deletions and rearrangements in monkeypox virus from the 2022 outbreak, USA (preprint)
Gigante CM , Plumb M , Ruprecht A , Zhao H , Wicker V , Wilkins K , Matheny A , Khan T , Davidson W , Sheth M , Burgin A , Burroughs M , Padilla J , Lee JS , Batra D , Hetrick EE , Howard DT , Garfin J , Tate L , Hubsmith SJ , Mendoza RM , Stanek D , Gillani S , Lee M , Mangla A , Blythe D , SierraPatev S , Carpenter-Azevedo K , Huard RC , Gallagher G , Hall J , Ash S , Kovar L , Seabolt MH , Weigand MR , Damon I , Satheshkumar PS , McCollum AM , Hutson CL , Wang X , Li Y . bioRxiv 2022 17 Genomic surveillance of monkeypox virus (MPXV) during the 2022 outbreak has been mainly focused on single nucleotide polymorphism (SNP) changes. DNA viruses, including MPXV, have a lower SNP mutation rate than RNA viruses due to higher fidelity replication machinery. We identified a large genomic rearrangement in a MPXV sequence from a 2022 case in the state of Minnesota (MN), USA, from an abnormal, uneven MPXV read mapping coverage profile in whole-genome sequencing (WGS) data. We further screened WGS data of 206 U.S. MPXV samples and found seven (3.4 percent) sequenced genomes contained similar abnormal read coverage profiles that suggested putative large deletions or genomic rearrangements. Here, we present three MPXV genomes containing deletions ranging from 2.3 to 15 kb and four genomes containing more complex rearrangements. Five genomic changes were each only seen in one sample, but two sequences from linked cases shared an identical 2.3 kb deletion in the 3' terminal region. All samples were positive using VAC1 and Clade II (formerly West African)-specific MPXV diagnostic tests; however, large deletions and genomic rearrangements like the ones reported here have the potential to result in viruses in which the target of a PCR diagnostic test is deleted. The emergence of genomic rearrangements during the outbreak may have public health implications and highlight the importance of continued genomic surveillance. 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. |
Notes from the field: Emergence of an mpox cluster primarily affecting persons previously vaccinated against mpox - Chicago, Illinois, March 18-June 12, 2023
Faherty EAG , Holly T , Ogale YP , Crisler G , Becht A , Kern D , Nicolae L , Spencer H , Wasz M , Kerins JL , Kittner A , Staton A , Hardnett C , Hutson C , Gigante CM , Quilter L , Kracalik I , Black S , McCollum AM , Rao AK , Tabidze I . MMWR Morb Mortal Wkly Rep 2023 72 (25) 696-698 ![]() During April 17–May 5, 2023, 13 monkeypox (mpox) cases were reported to the Chicago Department of Public Health (CDPH) after 2 months during which only a single case had been reported. The cluster was remarkable because it comprised more than 10 cases at a time when sporadic cases or small clusters (i.e., involving fewer than three cases) were being reported in the United States, and >69% of the persons in this cluster had received 2 doses of JYNNEOS or 1 dose of ACAM2000 vaccine.* Some cases among persons who received doses of JYNNEOS vaccine are expected to occur based on vaccine effectiveness data (1,2); however, the observed proportion of cases among persons who had received 2 doses of JYNNEOS or 1 dose of ACAM2000 in this cluster was unusual. This increase in cases before large summer events scheduled nationwide and in Chicago raised concerns about possible future case increases. | | On May 9, 2023, CDPH issued a health alert,† urging clinicians to remain vigilant for mpox cases and encouraging vaccination for persons at risk for mpox.§ CDPH and CDC launched an investigation to 1) determine the cluster’s scope and etiology by evaluating patients’ commonalities, JYNNEOS¶ vaccine cold-chain management, whole genome sequencing of clinical samples, and serologic immune response after infections, and to 2) identify important risk factors for mpox exposure to guide prevention efforts. This activity was reviewed by CDC and was conducted consistent with applicable federal law and CDC policy.** |
Notes from the field: Exposures to mpox among cases in children aged 12 years - United States, September 25-December 31, 2022
Nemechek K , Stefanos R , Miller EL , Riser A , Kebede B , Galang RR , Hufstetler K , Descamps D , Balenger A , Hennessee I , Neelam V , Hutchins HJ , Labuda SM , Davis KM , McCormick DW , Marx GE , Kimball A , Ruberto I , Williamson T , Rzucidlo P , Willut C , Harold RE , Mangla AT , English A , Brikshavana D , Blanding J , Kim M , Finn LE , Marutani A , Lockwood M , Johnson S , Ditto N , Wilton S , Edmond T , Stokich D , Shinall A , Alravez B , Crawley A , Nambiar A , Gateley EL , Schuman J , White SL , Davis K , Milleron R , Mendez M , Kawakami V , Segaloff HE , Bower WA , Ellington SR , McCollum AM , Pao LZ . MMWR Morb Mortal Wkly Rep 2023 72 (23) 633-635 During May 17–December 31, 2022, 125 probable or confirmed U.S. monkeypox (mpox)† cases were reported among patients aged <18 years, including 45 (36%) in children aged ≤12 years. Eighty-three cases in persons aged <18 years diagnosed during May 17–September 24, 2022 were previously described (1); 28 (34%) of these were in children aged ≤12 years, 29% of whom did not have reported information on exposure. Among 20 (71%) of 28 patients with documented information on exposure, most were exposed by a household contact. This report updates the previous report using data collected during September 25–December 31, 2022, proposes possible mpox exposure routes in children aged ≤12 years, and describes three U.S. mpox cases in neonates. Household members or caregivers with mpox, including pregnant women and their health care providers, should be informed of the risk of transmission to persons aged <18 years, and strategies to protect persons aged <18 years at risk for exposure, including isolating household contacts with mpox, should be implemented immediately. | | During September 25–December 31, 2022, 17 children aged ≤12 years with probable or confirmed mpox were identified through national surveillance. CDC provided a questionnaire to state and local health departments for collection of the child’s history of exposure to any person with mpox§ during the previous 3 weeks, exposure settings, types of contact (e.g., skin-to-skin, being held or cuddled, diaper change, or toilet use), and precautions taken by the person with mpox (e.g., practiced isolation or covered lesions). This activity was reviewed by CDC and was conducted consistent with applicable federal law and CDC policy.¶ |
The CDC domestic mpox response - United States, 2022-2023
McQuiston JH , Braden CR , Bowen MD , McCollum AM , McDonald R , Carnes N , Carter RJ , Christie A , Doty JB , Ellington S , Fehrenbach SN , Gundlapalli AV , Hutson CL , Kachur RE , Maitland A , Pearson CM , Prejean J , Quilter LAS , Rao AK , Yu Y , Mermin J . MMWR Morb Mortal Wkly Rep 2023 72 (20) 547-552 Monkeypox (mpox) is a serious viral zoonosis endemic in west and central Africa. An unprecedented global outbreak was first detected in May 2022. CDC activated its emergency outbreak response on May 23, 2022, and the outbreak was declared a Public Health Emergency of International Concern on July 23, 2022, by the World Health Organization (WHO),* and a U.S. Public Health Emergency on August 4, 2022, by the U.S. Department of Health and Human Services.(†) A U.S. government response was initiated, and CDC coordinated activities with the White House, the U.S. Department of Health and Human Services, and many other federal, state, and local partners. CDC quickly adapted surveillance systems, diagnostic tests, vaccines, therapeutics, grants, and communication systems originally developed for U.S. smallpox preparedness and other infectious diseases to fit the unique needs of the outbreak. In 1 year, more than 30,000 U.S. mpox cases were reported, more than 140,000 specimens were tested, >1.2 million doses of vaccine were administered, and more than 6,900 patients were treated with tecovirimat, an antiviral medication with activity against orthopoxviruses such as Variola virus and Monkeypox virus. Non-Hispanic Black (Black) and Hispanic or Latino (Hispanic) persons represented 33% and 31% of mpox cases, respectively; 87% of 42 fatal cases occurred in Black persons. Sexual contact among gay, bisexual, and other men who have sex with men (MSM) was rapidly identified as the primary risk for infection, resulting in profound changes in our scientific understanding of mpox clinical presentation, pathogenesis, and transmission dynamics. This report provides an overview of the first year of the response to the U.S. mpox outbreak by CDC, reviews lessons learned to improve response and future readiness, and previews continued mpox response and prevention activities as local viral transmission continues in multiple U.S. jurisdictions (Figure). |
Ebola Virus Disease Outbreak - Democratic Republic of the Congo, August 2018-November 2019.
Aruna A , Mbala P , Minikulu L , Mukadi D , Bulemfu D , Edidi F , Bulabula J , Tshapenda G , Nsio J , Kitenge R , Mbuyi G , Mwanzembe C , Kombe J , Lubula L , Shako JC , Mossoko M , Mulangu F , Mutombo A , Sana E , Tutu Y , Kabange L , Makengo J , Tshibinkufua F , Ahuka-Mundeke S , Muyembe JJ , Ebola Response CDC , Alarcon Walter , Bonwitt Jesse , Bugli Dante , Bustamante Nirma D , Choi Mary , Dahl Benjamin A , DeCock Kevin , Dismer Amber , Doshi Reena , Dubray Christine , Fitter David , Ghiselli Margherita , Hall Noemi , Hamida Amen Ben , McCollum Andrea M , Neatherlin John , Raghunathan Pratima L , Ravat Fatima , Reynolds Mary G , Rico Adriana , Smith Nailah , Soke Gnakub Norbert , Trudeau Aimee T , Victory Kerton R , Worrell Mary Claire . MMWR Morb Mortal Wkly Rep 2019 68 (50) 1162-1165 ![]() ![]() On August 1, 2018, the Democratic Republic of the Congo Ministry of Health (DRC MoH) declared the tenth outbreak of Ebola virus disease (Ebola) in DRC, in the North Kivu province in eastern DRC on the border with Uganda, 8 days after another Ebola outbreak was declared over in northwest Équateur province. During mid- to late-July 2018, a cluster of 26 cases of acute hemorrhagic fever, including 20 deaths, was reported in North Kivu province.* Blood specimens from six patients hospitalized in the Mabalako health zone and sent to the Institut National de Recherche Biomédicale (National Biomedical Research Institute) in Kinshasa tested positive for Ebola virus. Genetic sequencing confirmed that the outbreaks in North Kivu and Équateur provinces were unrelated. From North Kivu province, the outbreak spread north to Ituri province, and south to South Kivu province (1). On July 17, 2019, the World Health Organization designated the North Kivu and Ituri outbreak a public health emergency of international concern, based on the geographic spread of the disease to Goma, the capital of North Kivu province, and to Uganda and the challenges to implementing prevention and control measures specific to this region (2). This report describes the outbreak in the North Kivu and Ituri provinces. As of November 17, 2019, a total of 3,296 Ebola cases and 2,196 (67%) deaths were reported, making this the second largest documented outbreak after the 2014-2016 epidemic in West Africa, which resulted in 28,600 cases and 11,325 deaths.(†) Since August 2018, DRC MoH has been collaborating with partners, including the World Health Organization, the United Nations Children's Fund, the United Nations Office for the Coordination of Humanitarian Affairs, the International Organization of Migration, The Alliance for International Medical Action (ALIMA), Médecins Sans Frontières, DRC Red Cross National Society, and CDC, to control the outbreak. Enhanced communication and effective community engagement, timing of interventions during periods of relative stability, and intensive training of local residents to manage response activities with periodic supervision by national and international personnel are needed to end the outbreak. |
Epidemiologic and clinical features of Mpox-associated deaths - United States, May 10, 2022-March 7, 2023
Riser AP , Hanley A , Cima M , Lewis L , Saadeh K , Alarcón J , Finn L , Kim M , Adams J , Holt D , Feldpausch A , Pavlick J , English A , Smith M , Rehman T , Lubelchek R , Black S , Collins M , Mounsey L , Blythe D , Avalos MH , Lee EH , Samson O , Wong M , Stokich BD , Salehi E , Denny L , Waller K , Talley P , Schuman J , Fischer M , White S , Davis K , Caeser Cuyler A , Sabzwari R , Anderson RN , Byrd K , Gold JAW , Kindilien S , Lee JT , O'Connor S , O'Shea J , Salmon-Trejo LAT , Velazquez-Kronen R , Zelaya C , Bower W , Ellington S , Gundlapalli AV , McCollum AM , Zilversmit Pao L , Rao AK , Wong KK , Guagliardo SAJ . MMWR Morb Mortal Wkly Rep 2023 72 (15) 404-410 As of March 7, 2023, a total of 30,235 confirmed and probable monkeypox (mpox) cases were reported in the United States,(†) predominantly among cisgender men(§) who reported recent sexual contact with another man (1). Although most mpox cases during the current outbreak have been self-limited, cases of severe illness and death have been reported (2-4). During May 10, 2022-March 7, 2023, 38 deaths among persons with probable or confirmed mpox(¶) (1.3 per 1,000 mpox cases) were reported to CDC and classified as mpox-associated (i.e., mpox was listed as a contributing or causal factor). Among the 38 mpox-associated deaths, 94.7% occurred in cisgender men (median age = 34 years); 86.8% occurred in non-Hispanic Black or African American (Black) persons. The median interval from symptom onset to death was 68 days (IQR = 50-86 days). Among 33 decedents with available information, 93.9% were immunocompromised because of HIV. Public health actions to prevent mpox deaths include integrated testing, diagnosis, and early treatment for mpox and HIV, and ensuring equitable access to both mpox and HIV prevention and treatment, such as antiretroviral therapy (ART) (5). |
Mpox respiratory transmission: the state of the evidence.
Beeson A , Styczynski A , Hutson CL , Whitehill F , Angelo KM , Minhaj FS , Morgan C , Ciampaglio K , Reynolds MG , McCollum AM , Guagliardo SAJ . Lancet Microbe 2023 4 (4) e277-e283 ![]() ![]() The relative contribution of the respiratory route to transmission of mpox (formerly known as monkeypox) is unclear. We review the evidence for respiratory transmission of monkeypox virus (MPXV), examining key works from animal models, human outbreaks and case reports, and environmental studies. Laboratory experiments have initiated MPXV infection in animals via respiratory routes. Some animal-to-animal respiratory transmission has been shown in controlled studies, and environmental sampling studies have detected airborne MPXV. Reports from real-life outbreaks demonstrate that transmission is associated with close contact, and although it is difficult to infer the route of MPXV acquisition in individual case reports, so far respiratory transmission has not been specifically implicated. Based on the available evidence, the likelihood of human-to-human MPXV respiratory transmission appears to be low; however, studies should continue to assess this possibility. |
In-hospital mortality risk stratification in children under 5 years old with pneumonia with or without pulse oximetry: A secondary analysis of the Pneumonia REsearch Partnership To Assess WHO REcommendations (PREPARE) dataset
Hooli S , King C , McCollum ED , Colbourn T , Lufesi N , Mwansambo C , Gregory CJ , Thamthitiwat S , Cutland C , Madhi SA , Nunes MC , Gessner BD , Hazir T , Mathew JL , Addo-Yobo E , Chisaka N , Hassan M , Hibberd PL , Jeena P , Lozano JM , MacLeod WB , Patel A , Thea DM , Nguyen NTV , Zaman SM , Ruvinsky RO , Lucero M , Kartasasmita CB , Turner C , Asghar R , Banajeh S , Iqbal I , Maulen-Radovan I , Mino-Leon G , Saha SK , Santosham M , Singhi S , Awasthi S , Bavdekar A , Chou M , Nymadawa P , Pape JW , Paranhos-Baccala G , Picot VS , Rakoto-Andrianarivelo M , Rouzier V , Russomando G , Sylla M , Vanhems P , Wang J , Basnet S , Strand TA , Neuman MI , Arroyo LM , Echavarria M , Bhatnagar S , Wadhwa N , Lodha R , Aneja S , Gentile A , Chadha M , Hirve S , O'Grady KF , Clara AW , Rees CA , Campbell H , Nair H , Falconer J , Williams LJ , Horne M , Qazi SA , Nisar YB . Int J Infect Dis 2023 129 240-250 OBJECTIVES: We determined pulse oximetry benefit in pediatric pneumonia mortality-risk stratification and chest indrawing pneumonia in-hospital mortality risk factors. METHODS: We report characteristics and in-hospital pneumonia-related mortality of children 2-59-months-old included in the Pneumonia Research Partnership to Assess WHO Recommendations dataset. We developed multivariable logistic regression models of chest indrawing pneumonia to identify mortality risk factors. RESULTS: Among 285,839 children, 164,244 (57·5%) from hospital-based studies were included. Pneumonia case fatality risk (CFR) without pulse oximetry measurement was higher than with measurement (5·8%, 95% CI 5·6-5·9% vs 2·1%, 95% CI 1·9-2·4%). One in five children with chest indrawing pneumonia was hypoxemic (19·7%, 95% CI 19·0-20·4%) and the hypoxemic CFR was 10·3% (95% CI 9·1%-11·5%). Other mortality risk factors were younger age (either 2-5 months (aOR 9·94, 95% CI 6·67-14·84) or 6-11 months (aOR 2·67, 95% CI 1·71-4·16)), moderate malnutrition (aOR 2·41, 95% CI 1·87-3·09), and female sex (aOR 1·82, 95% CI 1·43-2·32). CONCLUSIONS: Children with a pulse oximetry measurement had a lower CFR. Many children hospitalized with chest indrawing pneumonia were hypoxemic and one in ten died. Young age and moderate malnutrition were risk factors for in-hospital chest indrawing pneumonia-related mortality. Pulse oximetry should be integrated in under-five pneumonia hospital care. |
Orthopoxvirus infections in rodents, Nigeria, 2018-2019
Meseko C , Adedeji A , Shittu I , Obishakin E , Nanven M , Suleiman L , Okomah D , Tyakaray V , Kolade D , Yinka-Ogunleye A , Muhammad S , Morgan CN , Matheny A , Nakazawa Y , McCollum A , Doty JB . Emerg Infect Dis 2023 29 (2) 433-434 To investigate animal reservoirs of monkeypox virus in Nigeria, we sampled 240 rodents during 2018-2019. Molecular (real-time PCR) and serologic (IgM) evidence indicated orthopoxvirus infections, but presence of monkeypox virus was not confirmed. These results can be used to develop public health interventions to reduce human infection with orthopoxviruses. |
Epidemiology of human mpox - worldwide, 2018-2021
McCollum AM , Shelus V , Hill A , Traore T , Onoja B , Nakazawa Y , Doty JB , Yinka-Ogunleye A , Petersen BW , Hutson CL , Lewis R . MMWR Morb Mortal Wkly Rep 2023 72 (3) 68-72 Monkeypox (mpox) is a zoonotic disease caused by Monkeypox virus (MPXV), an Orthopoxvirus; the wild mammalian reservoir species is not known. There are two genetic clades of MPXV: clade I and clade II (historically found in central and west Africa, respectively), with only Cameroon reporting both clades (1). Human cases have historically been reported from 1) mostly rural, forested areas in some central and west African countries; 2) countries reporting cases related to population migration or travel of infected persons; and 3) exposure to imported infected mammals (2). The annual number of cases in Africa has risen since 2014 and cumulatively surpassed reports from the previous 40 years for most countries. This reemergence of mpox might be due to a combination of environmental and ecological changes, animal or human movement, the cessation of routine smallpox vaccination since its eradication in 1980, improvements in disease detection and diagnosis, and genetic changes in the virus (2). This report describes the epidemiology of mpox since 1970 and during 2018-2021, using data from national surveillance programs, World Health Organization (WHO) bulletins, and case reports, and addresses current diagnostic and treatment challenges in countries with endemic disease. During 2018-2021, human cases were recognized and confirmed in six African countries, with most detected in the Democratic Republic of the Congo (DRC) and Nigeria. The reemergence and increase in cases resulted in its being listed in 2019 as a priority disease for immediate and routine reporting through the Integrated Disease Surveillance and Response strategy in the WHO African region.* In eight instances, patients with mpox were identified in four countries outside of Africa after travel from Nigeria. Since 2018, introductory and intermediate training courses on prevention and control of mpox for public health and health care providers have been available online at OpenWHO.(†)(,)(§) The global outbreak that began in May 2022(¶) has further highlighted the need for improvements in laboratory-based surveillance and access to treatments and vaccines to prevent and contain the infection, including in areas of Africa with endemic mpox. |
Environmental persistence of monkeypox virus on surfaces in household of person with travel-associated infection, Dallas, Texas, USA, 2021
Morgan CN , Whitehill F , Doty JB , Schulte J , Matheny A , Stringer J , Delaney LJ , Esparza R , Rao AK , McCollum AM . Emerg Infect Dis 2022 28 (10) 1982-1989 In July 2021, we conducted environmental sampling at the residence of a person in Dallas, Texas, USA, who had travel-associated human West African monkeypox virus (MPXV-WA). Targeted environmental swab sampling was conducted 15 days after the person who had monkeypox left the household. Results indicate extensive MPXV-WA DNA contamination, and viable virus from 7 samples was successfully isolated in cell culture. There was no statistical difference (p = 0.94) between MPXV-WA PCR positivity of porous (9/10, 90%) vs. nonporous (19/21, 90.5%) surfaces, but there was a significant difference (p<0.01) between viable virus detected in cultures of porous (6/10, 60%) vs. nonporous (1/21, 5%) surfaces. These findings indicate that porous surfaces (e.g., bedding, clothing) may pose more of a MPXV exposure risk than nonporous surfaces (e.g., metal, plastic). Viable MPXV was detected on household surfaces after at least 15 days. However, low titers (<10(2) PFU) indicate a limited potential for indirect transmission. |
Assembling a global database of child pneumonia studies to inform WHO pneumonia management algorithm: Methodology and applications
Martin H , Falconer J , Addo-Yobo E , Aneja S , Arroyo LM , Asghar R , Awasthi S , Banajeh S , Bari A , Basnet S , Bavdekar A , Bhandari N , Bhatnagar S , Bhutta ZA , Brooks A , Chadha M , Chisaka N , Chou M , Clara AW , Colbourn T , Cutland C , D'Acremont V , Echavarria M , Gentile A , Gessner B , Gregory CJ , Hazir T , Hibberd PL , Hirve S , Hooli S , Iqbal I , Jeena P , Kartasasmita CB , King C , Libster R , Lodha R , Lozano JM , Lucero M , Lufesi N , MacLeod WB , Madhi SA , Mathew JL , Maulen-Radovan I , McCollum ED , Mino G , Mwansambo C , Neuman MI , Nguyen NTV , Nunes MC , Nymadawa P , O'Grady KF , Pape JW , Paranhos-Baccala G , Patel A , Picot VS , Rakoto-Andrianarivelo M , Rasmussen Z , Rouzier V , Russomando G , Ruvinsky RO , Sadruddin S , Saha SK , Santosham M , Singhi S , Soofi S , Strand TA , Sylla M , Thamthitiwat S , Thea DM , Turner C , Vanhems P , Wadhwa N , Wang J , Zaman SM , Campbell H , Nair H , Qazi SA , Nisar YB . J Glob Health 2022 12 04075 BACKGROUND: The existing World Health Organization (WHO) pneumonia case management guidelines rely on clinical symptoms and signs for identifying, classifying, and treating pneumonia in children up to 5 years old. We aimed to collate an individual patient-level data set from large, high-quality pre-existing studies on pneumonia in children to identify a set of signs and symptoms with greater validity in the diagnosis, prognosis, and possible treatment of childhood pneumonia for the improvement of current pneumonia case management guidelines. METHODS: Using data from a published systematic review and expert knowledge, we identified studies meeting our eligibility criteria and invited investigators to share individual-level patient data. We collected data on demographic information, general medical history, and current illness episode, including history, clinical presentation, chest radiograph findings when available, treatment, and outcome. Data were gathered separately from hospital-based and community-based cases. We performed a narrative synthesis to describe the final data set. RESULTS: Forty-one separate data sets were included in the Pneumonia Research Partnership to Assess WHO Recommendations (PREPARE) database, 26 of which were hospital-based and 15 were community-based. The PREPARE database includes 285839 children with pneumonia (244323 in the hospital and 41516 in the community), with detailed descriptions of clinical presentation, clinical progression, and outcome. Of 9185 pneumonia-related deaths, 6836 (74%) occurred in children <1 year of age and 1317 (14%) in children aged 1-2 years. Of the 285839 episodes, 280998 occurred in children 0-59 months old, of which 129584 (46%) were 2-11 months of age and 152730 (54%) were males. CONCLUSIONS: This data set could identify an improved specific, sensitive set of criteria for diagnosing clinical pneumonia and help identify sick children in need of referral to a higher level of care or a change of therapy. Field studies could be designed based on insights from PREPARE analyses to validate a potential revised pneumonia algorithm. The PREPARE methodology can also act as a model for disease database assembly. |
Mpox in children and adolescents: Epidemiology, clinical features, diagnosis, and management
Beeson AM , Haston J , McCormick DW , Reynolds M , Chatham-Stephens K , McCollum AM , Godfred-Cato S . Pediatrics 2022 151 (2) While mpox is rare among children in the United States, pediatric cases are being reported during the 2022 multinational mpox outbreak. Vaccines and antiviral medications developed for other orthopoxviruses have recently become widely used to prevent and treat mpox in both children and adults in the United States. Although scientific literature regarding mpox in children and adolescents is scant, prior case reports can provide valuable information about the clinical features and potential complications of untreated clade II mpox in these age groups. In this review, we summarize the epidemiology and clinical features of mpox in children and adolescents and provide recommendations for clinicians regarding its diagnosis, management, and prevention. Robust, dedicated surveillance of pediatric exposures and cases in the current outbreak, including the use of vaccines and therapeutics, are needed to guide clinical management and public health strategies. |
- Page last reviewed:Feb 1, 2024
- Page last updated:May 16, 2025
- Content source:
- Powered by CDC PHGKB Infrastructure