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2.
MMWR Morb Mortal Wkly Rep ; 71(14): 509-516, 2022 Apr 08.
Article in English | MEDLINE | ID: mdl-35389974

ABSTRACT

Monkeypox is a rare, sometimes life-threatening zoonotic infection that occurs in west and central Africa. It is caused by Monkeypox virus, an orthopoxvirus similar to Variola virus (the causative agent of smallpox) and Vaccinia virus (the live virus component of orthopoxvirus vaccines) and can spread to humans. After 39 years without detection of human disease in Nigeria, an outbreak involving 118 confirmed cases was identified during 2017-2018 (1); sporadic cases continue to occur. During September 2018-May 2021, six unrelated persons traveling from Nigeria received diagnoses of monkeypox in non-African countries: four in the United Kingdom and one each in Israel and Singapore. In July 2021, a man who traveled from Lagos, Nigeria, to Dallas, Texas, became the seventh traveler to a non-African country with diagnosed monkeypox. Among 194 monitored contacts, 144 (74%) were flight contacts. The patient received tecovirimat, an antiviral for treatment of orthopoxvirus infections, and his home required large-scale decontamination. Whole genome sequencing showed that the virus was consistent with a strain of Monkeypox virus known to circulate in Nigeria, but the specific source of the patient's infection was not identified. No epidemiologically linked cases were reported in Nigeria; no contact received postexposure prophylaxis (PEP) with the orthopoxvirus vaccine ACAM2000.


Subject(s)
Mpox (monkeypox) , Humans , Male , Mpox (monkeypox)/diagnosis , Mpox (monkeypox)/epidemiology , Mpox (monkeypox)/prevention & control , Monkeypox virus/genetics , Nigeria/epidemiology , Texas/epidemiology
3.
J Card Fail ; 23(10): 765-767, 2017 Oct.
Article in English | MEDLINE | ID: mdl-28801074

ABSTRACT

BACKGROUND: Donors with hepatitis C (HCV) viremia are rarely used for orthotopic heart transplantation (HT) owing to post-transplantation risks. New highly effective HCV antivirals may alter the landscape. METHODS: An adult patient unsuitable for bridging mechanical support therapy accepted a heart transplant offer from a donor with HCV viremia. On daily logarithmic rise in HCV viral load and adequate titers to ensure successful genotyping, once daily sofosbuvir (400 mg)-velpatasvir (100 mg) (Epclusa; Gilead) was initiated empirically pending HCV genotype (genotype 3a confirmed after initiation of therapy). RESULTS: We report the kinetics of acute hepatitis C viremia and therapeutic response to treatment with a new pangenotypic antiviral agent after donor-derived acute HCV infection transmitted incidentally with successful cardiac transplantation to an HCV-negative recipient. Prompt resolution of viremia was noted by the 1st week of a 12 week course of antiviral therapy. Sustained virologic remission continued beyond 12 weeks after completion of HCV therapy (SVR-12). CONCLUSIONS: The availability of effective pangenotypic therapy for HCV may expand donor availability. The feasibility of early versus late treatment of HCV remains to be determined through formalized protocols. We hypothesize pharmacoeconomics to be the greatest limitation to widespread availability of this promising tool.


Subject(s)
Antiviral Agents/administration & dosage , Heart Failure/drug therapy , Heart Transplantation/methods , Hepatitis C, Chronic/drug therapy , Tissue Donors/supply & distribution , Viremia/drug therapy , Adult , Carbamates/administration & dosage , Drug Combinations , Female , Heart Failure/diagnosis , Heart Failure/surgery , Heterocyclic Compounds, 4 or More Rings/administration & dosage , Humans , Sofosbuvir/administration & dosage
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