Last data update: Oct 07, 2024. (Total: 47845 publications since 2009)
Records 1-19 (of 19 Records) |
Query Trace: Minhaj FS[original query] |
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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. |
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 |
Prolonged Mpox disease in people with advanced HIV: characterization of Mpox skin lesions
O'Shea J , Zucker J , Stampfer S , Cash-Goldwasser S , Minhaj FS , Dretler A , Cheeley J , Chaudhuri S , Gallitano SM , Gunaratne S , Parkinson M , Epling B , Morcock DR , Sereti I , Deleage C . J Infect Dis 2023 We report three complicated and prolonged cases of mpox in people with advanced HIV not on antiretroviral therapy (ART) at mpox diagnosis. Multiple medical countermeasures were used, including prolonged tecovirimat treatment and immune optimization with ART initiation. Immunofluorescence of skin biopsies demonstrated a dense immune infiltrate of predominantly myeloid and CD8+ T-cells, with a strong type-I interferon local response. RNAscope detected abundant replication of monkeypox virus (MPXV) in epithelial cells and dendritic cells. These data suggest that prolonged mpox in people with advanced HIV may be due to ongoing MPXV replication, warranting aggressive medical countermeasures and immune optimization. |
Prevalence of undiagnosed monkeypox virus infections during global mpox outbreak, United States, June-September 2022
Minhaj FS , Singh V , Cohen SE , Townsend M , Scott H , Szumowski J , Hare CB , Upadhyay P , Reddy J , Alexander B , Baird N , Navarra T , Priyamvada L , Wynn N , Carson WC , Odafe S , Guagliardo SAJ , Sims E , Rao AK , Satheshkumar PS , Weidle PJ , Hutson CL . Emerg Infect Dis 2023 29 (11) 2307-2314 Since May 2022, mpox has been identified in 108 countries without endemic disease; most cases have been in gay, bisexual, or other men who have sex with men. To determine number of missed cases, we conducted 2 studies during June-September 2022: a prospective serologic survey detecting orthopoxvirus antibodies among men who have sex with men in San Francisco, California, and a retrospective monkeypox virus PCR testing of swab specimens submitted for other infectious disease testing among all patients across the United States. The serosurvey of 225 participants (median age 34 years) detected 18 (8.0%) who were orthopoxvirus IgG positive and 3 (1.3%) who were also orthopoxvirus IgM positive. The retrospective PCR study of 1,196 patients (median age 30 years; 54.8% male) detected 67 (5.6%) specimens positive for monkeypox virus. There are likely few undiagnosed cases of mpox in regions where sexual healthcare is accessible and patient and clinician awareness about mpox is increased. |
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. |
Estimating the incubation period of monkeypox virus during the 2022 multi-national outbreak (preprint)
Charniga K , Masters NB , Slayton RB , Gosdin L , Minhaj FS , Philpott D , Smith D , Gearhart S , Alvarado-Ramy F , Brown C , Waltenburg MA , Hughes CM , Nakazawa Y . medRxiv 2022 23 Monkeypox is a zoonotic disease endemic in Central and West Africa. In May 2022, an outbreak of monkeypox characterized by human-to-human transmission was detected in multiple non-endemic countries. We estimated the incubation period for monkeypox using information from 22 probable (N = 1) and confirmed (N = 21) monkeypox cases in patients reported in the United States through June 6, 2022. We pooled U.S. patient data with the data from 18 confirmed cases in patients reported from the Netherlands through May 31, 2022. The mean incubation period from exposure to first symptom onset was 7.6 days (95% credible interval: 6.2 - 9.7), and the 95th percentile was 17.1 days (95% CrI: 12.7-24.3). These findings align with current CDC recommendations for monitoring close contacts of people with monkeypox for 21 days after their last exposure. 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. |
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. |
Analysis of available animal testing data to propose peer-derived quantitative thresholds for determining adequate surveillance capacity for rabies
Minhaj FS , Bonaparte SC , Boutelle C , Wallace RM . Sci Rep 2023 13 (1) 3986 Historical targets for country-level animal rabies testing volumes were abandoned due to ethical and welfare concerns, and interpretation challenges of testing healthy animals. To-date, no quantitative threshold has been established for evaluating adequate surveillance capacity specific to suspected rabid animals. The purpose here is to establish quantitative testing thresholds for rabies suspected animals to assess a country's rabies surveillance capacity. Animal rabies testing data was obtained from official and unofficial rabies surveillance platforms from 2010 to 2019 and supplemented with official country reports and published literature. Testing rates were determined for all-animal and domestic animals, and standardized per 100,000 estimated human population; the domestic animal rate was also standardized per 100,000 estimated dog population. There were 113 countries that reported surveillance data eligible for analysis. Countries reporting the most data were under WHO categories as having endemic human rabies or no dog rabies. The annual median all-animal testing rate for all countries was 1.53 animals/100,000 human population (IQR 0.27-8.78). Three proposed testing rate thresholds are an all-animal rate of 1.9 animals/100,000 humans, a domestic animal per human rate of 0.8 animals/100,000 humans, and a domestic animal per dog rate of 6.6 animals/100,000 dogs. These three peer-derived rabies testing thresholds for passive surveillance can be used to facilitate assessment of a country's rabies surveillance capacity. |
Interim clinical treatment considerations for severe manifestations of Mpox - United States, February 2023
Rao AK , Schrodt CA , Minhaj FS , Waltenburg MA , Cash-Goldwasser S , Yu Y , Petersen BW , Hutson C , Damon IK . MMWR Morb Mortal Wkly Rep 2023 72 (9) 232-243 Monkeypox (mpox) is a disease caused by infection with Monkeypox virus (MPXV), an Orthopoxvirus (OPXV) in the same genus as Variola virus, which causes smallpox. During 2022, a global outbreak involving mpox clade IIb was recognized, primarily among gay, bisexual, and other men who have sex with men.* Most affected patients have been immunocompetent and experienced ≤10 rash lesions (1). CDC has recommended supportive care including pain control.(†) However, some patients have experienced severe mpox manifestations, including ocular lesions, neurologic complications, myopericarditis, complications associated with mucosal (oral, rectal, genital, and urethral) lesions, and uncontrolled viral spread due to moderate or severe immunocompromise, particularly advanced HIV infection (2). Therapeutic medical countermeasures (MCMs) are Food and Drug Administration (FDA)-regulated drugs and biologics that are predominantly stockpiled by the U.S. government; MCMs developed for smallpox preparedness or shown to be effective against other OPXVs (i.e., tecovirimat, brincidofovir, cidofovir, trifluridine ophthalmic solution, and vaccinia immune globulin intravenous [VIGIV]) have been used to treat severe mpox. During May 2022-January 2023, CDC provided more than 250 U.S. mpox consultations. This report synthesizes data from animal models, MCM use for human cases of related OPXV, unpublished data, input from clinician experts, and experience during consultations (including follow-up) to provide interim clinical treatment considerations. Randomized controlled trials and other carefully controlled research studies are needed to evaluate the effectiveness of MCMs for treating human mpox. Until data gaps are filled, the information presented in this report represents the best available information concerning the effective use of MCMs and should be used to guide decisions about MCM use for mpox patients. |
Human rabies - Texas, 2021
Blackburn D , Minhaj FS , Al Hammoud R , Orciari L , Miller J , Maness T , Stewart J , Singletary B , Ledezma E , Ellsworth M , Carlo-Angleró A , Niezgoda M , Gigante CM , Rao AK , Satheshkumar PS , Heresi GP , Kieffer A , Wallace RM . MMWR Morb Mortal Wkly Rep 2022 71 (49) 1547-1549 In late August 2021, a boy aged 7 years was bitten by a bat while he was playing outside his apartment home in Medina County, Texas. He informed his parents; however, no rabies postexposure prophylaxis (PEP) was sought because there were no visible bite marks, and the family was unaware that contact with a bat, including in the absence of visible bite marks, might cause rabies. Approximately 2 months later, the child was hospitalized for altered mental status, seizures, and hypersalivation and ultimately received a diagnosis of rabies. Experimental therapies were attempted; however, the child died 22 days after symptom onset. Fifty-seven persons who met criteria for suspected or known exposure to infectious secretions in this case were advised to consult with a medical provider about the need for rabies PEP in accordance with Advisory Committee on Immunization Practices (ACIP) guidelines (1). Rabies, an acute, progressive neuroencephalitis, is nearly always fatal. Although dogs are the most common source of human rabies deaths worldwide and account for an estimated 59,000 annual cases of human rabies globally (2), bats are the most common source of domestically acquired rabies in the United States and have been implicated in 31 (81.6%) of 38 human infections since 2000 (3). Attempts to prevent death or poor neurologic outcomes once rabies symptoms develop have been largely unsuccessful (4). Administration of rabies PEP, comprising rabies immunoglobulin and a series of doses of rabies vaccine, is critical to preventing rabies after an exposure; enhanced public education about the risk posed by bats, and the availability of PEP to prevent rabies, is needed. |
Epidemiologic and clinical features of children and adolescents aged <18 years with monkeypox - United States, May 17-September 24, 2022
Hennessee I , Shelus V , McArdle CE , Wolf M , Schatzman S , Carpenter A , Minhaj FS , Petras JK , Cash-Goldwasser S , Maloney M , Sosa L , Jones SA , Mangla AT , Harold RE , Beverley J , Saunders KE , Adams JN , Stanek DR , Feldpausch A , Pavlick J , Cahill M , O'Dell V , Kim M , Alarcón J , Finn LE , Goss M , Duwell M , Crum DA , Williams TW , Hansen K , Heddy M , Mallory K , McDermott D , Cuadera MKQ , Adler E , Lee EH , Shinall A , Thomas C , Ricketts EK , Koonce T , Rynk DB , Cogswell K , McLafferty M , Perella D , Stockdale C , Dell B , Roskosky M , White SL , Davis KR , Milleron RS , Mackey S , Barringer LA , Bruce H , Barrett D , D'Angeli M , Kocharian A , Klos R , Dawson P , Ellington SR , Mayer O , Godfred-Cato S , Labuda SM , McCormick DW , McCollum AM , Rao AK , Salzer JS , Kimball A , Gold JAW . MMWR Morb Mortal Wkly Rep 2022 71 (44) 1407-1411 Data on monkeypox in children and adolescents aged <18 years are limited (1,2). During May 17-September 24, 2022, a total of 25,038 monkeypox cases were reported in the United States,(dagger) primarily among adult gay, bisexual, and other men who have sex with men (3). During this period, CDC and U.S. jurisdictional health departments identified Monkeypox virus (MPXV) infections in 83 persons aged <18 years, accounting for 0.3% of reported cases. Among 28 children aged 0-12 years with monkeypox, 64% were boys, and most had direct skin-to-skin contact with an adult with monkeypox who was caring for the child in a household setting. Among 55 adolescents aged 13-17 years, most were male (89%), and male-to-male sexual contact was the most common presumed exposure route (66%). Most children and adolescents with monkeypox were non-Hispanic Black or African American (Black) (47%) or Hispanic or Latino (Hispanic) (35%). Most (89%) were not hospitalized, none received intensive care unit (ICU)-level care, and none died. Monkeypox in children and adolescents remains rare in the United States. Ensuring equitable access to monkeypox vaccination, testing, and treatment is a critical public health priority. Vaccination for adolescents with risk factors and provision of prevention information for persons with monkeypox caring for children might prevent additional infections. |
Severe monkeypox in hospitalized patients - United States, August 10-October 10, 2022
Miller MJ , Cash-Goldwasser S , Marx GE , Schrodt CA , Kimball A , Padgett K , Noe RS , McCormick DW , Wong JM , Labuda SM , Borah BF , Zulu I , Asif A , Kaur G , McNicholl JM , Kourtis A , Tadros A , Reagan-Steiner S , Ritter JM , Yu Y , Yu P , Clinton R , Parker C , Click ES , Salzer JS , McCollum AM , Petersen B , Minhaj FS , Brown E , Fischer MP , Atmar RL , DiNardo AR , Xu Y , Brown C , Goodman JC , Holloman A , Gallardo J , Siatecka H , Huffman G , Powell J , Alapat P , Sarkar P , Hanania NA , Bruck O , Brass SD , Mehta A , Dretler AW , Feldpausch A , Pavlick J , Spencer H , Ghinai I , Black SR , Hernandez-Guarin LN , Won SY , Shankaran S , Simms AT , Alarcón J , O'Shea JG , Brooks JT , McQuiston J , Honein MA , O'Connor SM , Chatham-Stephens K , O'Laughlin K , Rao AK , Raizes E , Gold JAW , Morris SB . MMWR Morb Mortal Wkly Rep 2022 71 (44) 1412-1417 As of October 21, 2022, a total of 27,884 monkeypox cases (confirmed and probable) have been reported in the United States.(§) Gay, bisexual, and other men who have sex with men have constituted a majority of cases, and persons with HIV infection and those from racial and ethnic minority groups have been disproportionately affected (1,2). During previous monkeypox outbreaks, severe manifestations of disease and poor outcomes have been reported among persons with HIV infection, particularly those with AIDS (3-5). This report summarizes findings from CDC clinical consultations provided for 57 patients aged ≥18 years who were hospitalized with severe manifestations of monkeypox(¶) during August 10-October 10, 2022, and highlights three clinically representative cases. Overall, 47 (82%) patients had HIV infection, four (9%) of whom were receiving antiretroviral therapy (ART) before monkeypox diagnosis. Most patients were male (95%) and 68% were non-Hispanic Black (Black). Overall, 17 (30%) patients received intensive care unit (ICU)-level care, and 12 (21%) have died. As of this report, monkeypox was a cause of death or contributing factor in five of these deaths; six deaths remain under investigation to determine whether monkeypox was a causal or contributing factor; and in one death, monkeypox was not a cause or contributing factor.** Health care providers and public health professionals should be aware that severe morbidity and mortality associated with monkeypox have been observed during the current outbreak in the United States (6,7), particularly among highly immunocompromised persons. Providers should test all sexually active patients with suspected monkeypox for HIV at the time of monkeypox testing unless a patient is already known to have HIV infection. Providers should consider early commencement and extended duration of monkeypox-directed therapy(††) in highly immunocompromised patients with suspected or laboratory-diagnosed monkeypox.(§§) Engaging all persons with HIV in sustained care remains a critical public health priority. |
Orthopoxvirus Testing Challenges for Persons in Populations at Low Risk or Without Known Epidemiologic Link to Monkeypox - United States, 2022.
Minhaj FS , Petras JK , Brown JA , Mangla AT , Russo K , Willut C , Lee M , Beverley J , Harold R , Milroy L , Pope B , Gould E , Beeler C , Schneider J , Mostafa HH , Godfred-Cato S , Click ES , Borah BF , Galang RR , Cash-Goldwasser S , Wong JM , McCormick DW , Yu PA , Shelus V , Carpenter A , Schatzman S , Lowe D , Townsend MB , Davidson W , Wynn NT , Satheshkumar PS , O'Connor SM , O'Laughlin K , Rao AK , McCollum AM , Negrón ME , Hutson CL , Salzer JS . MMWR Morb Mortal Wkly Rep 2022 71 (36) 1155-1158 Since May 2022, approximately 20,000 cases of monkeypox have been identified in the United States, part of a global outbreak occurring in approximately 90 countries and currently affecting primarily gay, bisexual, and other men who have sex with men (MSM) (1). Monkeypox virus (MPXV) spreads from person to person through close, prolonged contact; a small number of cases have occurred in populations who are not MSM (e.g., women and children), and testing is recommended for persons who meet the suspected case definition* (1). CDC previously developed five real-time polymerase chain reaction (PCR) assays for detection of orthopoxviruses from lesion specimens (2,3). CDC was granted 510(k) clearance for the nonvariola-orthopoxvirus (NVO)-specific PCR assay by the Food and Drug Administration. This assay was implemented within the Laboratory Response Network (LRN) in the early 2000s and became critical for early detection of MPXV and implementation of public health action in previous travel-associated cases as well as during the current outbreak (4-7). PCR assays (NVO and other Orthopoxvirus laboratory developed tests [LDT]) represent the primary tool for monkeypox diagnosis. These tests are highly sensitive, and cross-contamination from other MPXV specimens being processed, tested, or both alongside negative specimens can occasionally lead to false-positive results. This report describes three patients who had atypical rashes and no epidemiologic link to a monkeypox case or known risk factors; these persons received diagnoses of monkeypox based on late cycle threshold (Ct) values ≥34, which were false-positive test results. The initial diagnoses were followed by administration of antiviral treatment (i.e., tecovirimat) and JYNNEOS vaccine postexposure prophylaxis (PEP) to patients' close contacts. After receiving subsequent testing, none of the three patients was confirmed to have monkeypox. Knowledge gained from these and other cases resulted in changes to CDC guidance. When testing for monkeypox in specimens from patients without an epidemiologic link or risk factors or who do not meet clinical criteria (or where these are unknown), laboratory scientists should reextract and retest specimens with late Ct values (based on this report, Ct ≥34 is recommended) (8). CDC can be consulted for complex cases including those that appear atypical or questionable cases and can perform additional viral species- and clade-specific PCR testing and antiorthopoxvirus serologic testing. |
High-contact object and surface contamination in a household of persons with Monkeypox Virus Infection - Utah, June 2022
Pfeiffer JA , Collingwood A , Rider LE , Minhaj FS , Matheny AM , Kling C , McCollum AM , Nolen LD , Morgan CN . MMWR Morb Mortal Wkly Rep 2022 71 (34) 1092-1094 In May 2022, the Salt Lake County Health Department reported two real-time polymerase chain reaction (PCR)-confirmed travel-associated cases of monkeypox to the Utah Department of Health and Human Services (UDHHS). The two persons with monkeypox (patients A and B) lived together without other housemates. Both persons experienced prodromal symptoms (e.g., fatigue and body aches). Eight days after symptom onset, patient A experienced penile lesions; lesions spread to the lips, hands, legs, chest, and scalp by day 10. Patient B experienced prodromal symptoms 8 days after illness onset of patient A; patient B experienced a lesion on the foot which spread to the leg and finger by day 11. Although both patients had lesions in multiple anatomic areas, the overall number of lesions was small, and lesions varied in presentation from "pimple-like" or ulcerated, to characteristically well-circumscribed and centrally umbilicated. Both patients had mild illness. The time from symptom onset to resolution was approximately 30 days for patient A and approximately 22 days for patient B. |
Imported Monkeypox from international traveler, Maryland, USA, 2021
Minhaj FS , Rao AK , McCollum AM . Emerg Infect Dis 2022 28 (8) 1738 Costello et al. described a patient in Maryland, USA, with a diffuse vesicular rash initially diagnosed as disseminated varicella zoster virus (VZV) infection. Only after a biopsy revealed unexpected findings was monkeypox suspected (1). Monkeypox is commonly confused with VZV in countries where both infections are endemic. High fever, lymphadenopathy, and a deep-seated, well-circumscribed, umbilicated rash in the same stage of development (i.e., macule, papule, vesicle, or scab) in distinct anatomic locations are characteristic of monkeypox (2). Although the patient in Maryland experienced lymphadenopathy and rash with umbilicated lesions suggestive of monkeypox, he was afebrile, denied other prodromal signs and symptoms (e.g., headache and chills) that typically precede monkeypox rash, and improved while receiving intravenous acyclovir, features more consistent with VZV. However, the unusual clinical signs and symptoms experienced by this patient were similar to those observed in other patients in the evolving 2022 multinational monkeypox response. |
Monkeypox outbreak - nine states, May 2022
Minhaj FS , Ogale YP , Whitehill F , Schultz J , Foote M , Davidson W , Hughes CM , Wilkins K , Bachmann L , Chatelain R , Donnelly MAP , Mendoza R , Downes BL , Roskosky M , Barnes M , Gallagher GR , Basgoz N , Ruiz V , Kyaw NTT , Feldpausch A , Valderrama A , Alvarado-Ramy F , Dowell CH , Chow CC , Li Y , Quilter L , Brooks J , Daskalakis DC , McClung RP , Petersen BW , Damon I , Hutson C , McQuiston J , Rao AK , Belay E , McCollum AM . MMWR Morb Mortal Wkly Rep 2022 71 (23) 764-769 On May 17, 2022, the Massachusetts Department of Public Health (MDPH) Laboratory Response Network (LRN) laboratory confirmed the presence of orthopoxvirus DNA via real-time polymerase chain reaction (PCR) from lesion swabs obtained from a Massachusetts resident. Orthopoxviruses include Monkeypox virus, the causative agent of monkeypox. Subsequent real-time PCR testing at CDC on May 18 confirmed that the patient was infected with the West African clade of Monkeypox virus. Since then, confirmed cases* have been reported by nine states. In addition, 28 countries and territories,(†) none of which has endemic monkeypox, have reported laboratory-confirmed cases. On May 17, CDC, in coordination with state and local jurisdictions, initiated an emergency response to identify, monitor, and investigate additional monkeypox cases in the United States. This response has included releasing a Health Alert Network (HAN) Health Advisory, developing interim public health and clinical recommendations, releasing guidance for LRN testing, hosting clinician and public health partner outreach calls, disseminating health communication messages to the public, developing protocols for use and release of medical countermeasures, and facilitating delivery of vaccine postexposure prophylaxis (PEP) and antivirals that have been stockpiled by the U.S. government for preparedness and response purposes. On May 19, a call center was established to provide guidance to states for the evaluation of possible cases of monkeypox, including recommendations for clinical diagnosis and orthopoxvirus testing. The call center also gathers information about possible cases to identify interjurisdictional linkages. As of May 31, this investigation has identified 17(§) cases in the United States; most cases (16) were diagnosed in persons who identify as gay, bisexual, or men who have sex with men (MSM). Ongoing investigation suggests person-to-person community transmission, and CDC urges health departments, clinicians, and the public to remain vigilant, institute appropriate infection prevention and control measures, and notify public health authorities of suspected cases to reduce disease spread. Public health authorities are identifying cases and conducting investigations to determine possible sources and prevent further spread. This activity was reviewed by CDC and conducted consistent with applicable federal law and CDC policy.(¶). |
The Epidemic Intelligence Service: An exciting opportunity for pharmacists to improve population health.
Minhaj FS , Carranza D , Adeyemo A , Smith DJ . J Am Pharm Assoc (2003) 2022 62 (4) 913-914 The pharmacy profession plays a vital role in sustaining and advancing population health. Pharmacists’ unique knowledge of the medication use system is crucial in the development and implementation of public health prevention strategies and interventions. These include dispensing medications and administering vaccines, developing clinical treatment guidelines for both infectious and chronic diseases, and educating the public on pharmaceuticals and health-related topics.1 Many pharmacists may not be aware of opportunities to become involved with public health initiatives or are sometimes overlooked as potential collaborators. One distinguished avenue for pharmacists to enter public health is through the Epidemic Intelligence Service (EIS) at the U.S. Centers for Disease Control and Prevention (CDC). |
The Advisory Committee on Immunization Practices' Recommendation for Use of Moderna COVID-19 Vaccine in Adults Aged ≥18 Years and Considerations for Extended Intervals for Administration of Primary Series Doses of mRNA COVID-19 Vaccines - United States, February 2022.
Wallace M , Moulia D , Blain AE , Ricketts EK , Minhaj FS , Link-Gelles R , Curran KG , Hadler SC , Asif A , Godfrey M , Hall E , Fiore A , Meyer S , Su JR , Weintraub E , Oster ME , Shimabukuro TT , Campos-Outcalt D , Morgan RL , Bell BP , Brooks O , Talbot HK , Lee GM , Daley MF , Oliver SE . MMWR Morb Mortal Wkly Rep 2022 71 (11) 416-421 The mRNA-1273 (Moderna) COVID-19 vaccine is a lipid nanoparticle-encapsulated, nucleoside-modified mRNA vaccine encoding the stabilized prefusion spike glycoprotein of SARS-CoV-2, the virus that causes COVID-19. During December 2020, the vaccine was granted Emergency Use Authorization (EUA) by the Food and Drug Administration (FDA), and the Advisory Committee on Immunization Practices (ACIP) issued an interim recommendation for use among persons aged 18 years (1), which was adopted by CDC. During December 19, 2020-January 30, 2022, approximately 204 million doses of Moderna COVID-19 vaccine were administered in the United States (2) as a primary series of 2 intramuscular doses (100 g [0.5 mL] each) 4 weeks apart. On January 31, 2022, FDA approved a Biologics License Application (BLA) for use of the Moderna COVID-19 vaccine (Spikevax, ModernaTX, Inc.) in persons aged 18 years (3). On February 4, 2022, the ACIP COVID-19 Vaccines Work Group conclusions regarding recommendations for the use of the Moderna COVID-19 vaccine were presented to ACIP at a public meeting. The Work Group's deliberations were based on the Evidence to Recommendation (EtR) Framework,* which incorporates the Grading of Recommendations, Assessment, Development and Evaluation (GRADE) approach() to rank evidence quality. In addition to initial clinical trial data, ACIP considered new information gathered in the 12 months since issuance of the interim recommendations, including additional follow-up time in the clinical trial, real-world vaccine effectiveness studies, and postauthorization vaccine safety monitoring. ACIP also considered comparisons of mRNA vaccine effectiveness and safety in real-world settings when first doses were administered 8 weeks apart instead of the original intervals used in clinical trials (3 weeks for BNT162b2 [Pfizer-BioNTech] COVID-19 vaccine and 4 weeks for Moderna COVID-19 vaccine). Based on this evidence, CDC has provided guidance that an 8-week interval might be optimal for some adolescents and adults. The additional information gathered since the issuance of the interim recommendations increased certainty that the benefits of preventing symptomatic and asymptomatic SARS-CoV-2 infection, hospitalization, and death outweigh vaccine-associated risks of the Moderna COVID-19 vaccine. On February 4, 2022, ACIP modified its interim recommendation to a standard recommendation() for use of the fully licensed Moderna COVID-19 vaccine in persons aged 18 years. |
Notes from the Field: Three Human Rabies Deaths Attributed to Bat Exposures - United States, August 2021
Kunkel A , Minhaj FS , Whitehill F , Austin C , Hahn C , Kieffer AJ , Mendez L , Miller J , Tengelsen LA , Gigante CM , Orciari LA , Rao AK , Wallace RM . MMWR Morb Mortal Wkly Rep 2022 71 (1) 31-32 During September 28–November 10, 2021, CDC confirmed three human rabies deaths in the United States, all in persons who did not seek postexposure prophylaxis (PEP) after bat exposures that occurred during August 2021. This increase in bat-associated human rabies deaths in the United States followed only three deaths during the previous 48 months. The cases during fall 2021 occurred in two adults and one child, all male, from Idaho, Illinois, and Texas. Initial symptoms included pain and paresthesia near the site of exposure progressing to dysphagia, altered mental status, paralysis, seizure-like activity, and autonomic instability. All three patients had recognized direct contact (e.g., bite or collision) with a bat approximately 3–7 weeks before symptom onset and died approximately 2–3 weeks after symptom onset. The deaths were associated with three bat species: Lasionycteris noctivagans (silver-haired bat), Tadarida brasiliensis (Mexican free-tailed bat), and Eptesicus fuscus (big brown bat) (Figure). All three species are common in the United States and have been implicated in previous rabies cases. One patient submitted the bat responsible for exposure for testing but refused PEP, despite the bat testing positive for rabies virus, due to a long-standing fear of vaccines. The other two patients did not realize the risk for rabies from their exposures, either because they did not notice a bite or scratch or did not recognize bats as a potential source of rabies. Case and contact investigations were led by the appropriate state and local health departments, and all human laboratory testing occurred at CDC. This activity was reviewed by CDC and conducted consistent with applicable federal law and CDC policy.* |
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