The recent expansion of mpox in Africa is characterized by a dramatic increase in zoonotic transmission (clade Ia) and the emergence of a new clade Ib that is transmitted from human to human by close contact. Clade Ia does not pose a threat in areas without zoonotic reservoirs. But clade Ib may spread widely, as did clade IIb which has spread globally since 2022 among men who have sex with men. It is not clear whether controlling clade Ib will be more difficult than clade IIb. The population at risk potentially counts 100 million but only a million vaccine doses are expected in the next year. Surveillance is needed with exhaustive case detection, polymerase chain reaction confirmation, clade determination, and about severe illness. Such data is needed to identify routes of transmission and core transmitters, such as sex workers. Health care workers are vaccinated to ensure their protection, but this will not curb mpox transmission. With the recent inequitable distribution of COVID-19 vaccines in mind, it is a global responsibility to ensure that low-income nations in the mpox epicenter have meaningful access to vaccines. Vaccination serves not only to reduce mortality in children but limit the risk of future mpox variants emerging that may spread in human populations globally.
Journal Article > ReviewFull Text
Int J Infect Dis. 1 April 2025; Volume 153; 107373.; DOI:10.1016/j.ijid.2024.107373
Petersen E, Hvid U, Tomori O, Pedersen AG, Wallinga J, et al.
Int J Infect Dis. 1 April 2025; Volume 153; 107373.; DOI:10.1016/j.ijid.2024.107373
Journal Article > ResearchFull Text
Nat Genet. 31 October 2016; Volume 48 (Issue 12); 1535-1543.; DOI: 10.1038/ng.3704
Stucki D, Brites D, Jeljeli L, Coscolla M, Liu Q, et al.
Nat Genet. 31 October 2016; Volume 48 (Issue 12); 1535-1543.; DOI: 10.1038/ng.3704
Generalist and specialist species differ in the breadth of their ecological niches. Little is known about the niche width of obligate human pathogens. Here we analyzed a global collection of Mycobacterium tuberculosis lineage 4 clinical isolates, the most geographically widespread cause of human tuberculosis. We show that lineage 4 comprises globally distributed and geographically restricted sublineages, suggesting a distinction between generalists and specialists. Population genomic analyses showed that, whereas the majority of human T cell epitopes were conserved in all sublineages, the proportion of variable epitopes was higher in generalists. Our data further support a European origin for the most common generalist sublineage. Hence, the global success of lineage 4 reflects distinct strategies adopted by different sublineages and the influence of human migration.