Dynamics of Two Separate but Linked HIV-1 CRF01_AE Outbreaks among Injection Drug Users in Stockholm, Sweden, and Helsinki, Finland

Author:

Skar Helena123,Axelsson Maria3,Berggren Ingela4,Thalme Anders5,Gyllensten Katarina5,Liitsola Kirsi6,Brummer-Korvenkontio Henrikki6,Kivelä Pia7,Spångberg Erika5,Leitner Thomas2,Albert Jan13

Affiliation:

1. Department of Microbiology, Tumor and Cell Biology, Karolinska Institute, Stockholm, Sweden

2. Theoretical Biology and Biophysics, Group T-6, Los Alamos National Laboratory, Los Alamos, New Mexico

3. Department of Virology, Swedish Institute for Infectious Disease Control, Solna, Sweden

4. Department of Communicable Disease Control and Prevention, Stockholm County Council, Stockholm, Sweden

5. Department of Infectious Diseases, Karolinska University Hospital, Stockholm, Sweden

6. Department of Infectious Disease Surveillance and Control, National Institute for Health and Welfare, Helsinki, Finland

7. Division of Infectious Diseases, Helsinki University Central Hospital, Helsinki, Finland

Abstract

ABSTRACT Detailed phylogenetic analyses were performed to characterize an HIV-1 outbreak among injection drug users (IDUs) in Stockholm, Sweden, in 2006. This study investigated the source and dynamics of HIV-1 spread during the outbreak as well as associated demographic and clinical factors. Seventy Swedish IDUs diagnosed during 2004 to 2007 were studied. Demographic, clinical, and laboratory data were collected, and the V3 region of the HIV-1 envelope gene was sequenced to allow detailed phylogenetic analyses. The results showed that the Stockholm outbreak was caused by a CRF01_AE variant imported from Helsinki, Finland, around 2003, which was quiescent until the outbreak started in 2006. Local Swedish subtype B variants continued to spread at a lower rate. The number of new CRF01_AE cases over a rooted phylogenetic tree accurately reflected the transmission dynamics and showed a temporary increase, by a factor of 12, in HIV incidence during the outbreak. Virus levels were similar in CRF01_AE and subtype B infections, arguing against differences in contagiousness. Similarly, there were no major differences in other baseline characteristics. Instead, the outbreak in Stockholm (and Helsinki) was best explained by an introduction of HIV into a standing network of previously uninfected IDUs. The combination of phylogenetics and epidemiological data creates a powerful tool for investigating outbreaks of HIV and other infectious diseases that could improve surveillance and prevention.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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