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1.
AIDS Behav ; 23(5): 1210-1224, 2019 May.
Article in English | MEDLINE | ID: mdl-30680540

ABSTRACT

A growing body of evidence suggests that network-based interventions to reduce HIV transmission and/or improve HIV-related health outcomes have an important place in public health efforts to move towards 90-90-90 goals. However, the social processes involved in network-based recruitment may pose a risk to participants of increasing HIV-related stigma if network recruitment causes HIV status to be assumed, inferred, or disclosed. On the other hand, the social processes involved in network-based recruitment to HIV testing may also encourage HIV-related social support. Yet despite the relevance of these processes to both network-based interventions and to other more common interventions (e.g., partner services), there is a dearth of literature that directly examines them among participants of such interventions. Furthermore, both HIV-related stigma and social support may influence participants' willingness and ability to recruit their network members to the study. This paper examines (1) the extent to which stigma and support were experienced by participants in the Transmission Reduction Intervention Project (TRIP), a risk network-tracing intervention aimed at locating recently HIV-infected and/or undiagnosed HIV-infected people and linking them to care in Athens, Greece; Odessa, Ukraine; and Chicago, Illinois; and (2) whether stigma and support predicted participant engagement in the intervention. Overall, experiences of stigma were infrequent and experiences of support frequent, with significant variation between study sites. Experiences and perceptions of HIV-related stigma did not change significantly between baseline and six-month follow-up for the full TRIP sample, and significantly decreased during the course of the study at the Chicago site. Experiences of HIV-related support significantly increased among recently-HIV-infected participants at all sites, and among all participants at the Odessa site. Both stigma and support were found to predict participants' recruitment of network members to the study at the Athens site, and to predict participants' interviewer-rated enthusiasm for naming and recruiting their network members at both the Athens and Odessa sites. These findings suggest that network-based interventions like TRIP which aim to reduce HIV transmission likely do not increase stigma-related risks to participants, and may even encourage increased social support among network members. However, the present study is limited by its associational design and by some variation in implementation by study site. Future research should directly assess contextual differences to improve understanding of the implications of site-level variation in stigma and support for the implementation of network-based interventions, given the finding that these constructs predict participants' recruitment of network members and engagement in the intervention, and thereby could limit network-based interventions' abilities to reach those most in need of HIV testing and care.


Subject(s)
HIV Infections/prevention & control , HIV Infections/transmission , Health Promotion , Public Health , Social Stigma , Social Support , Adult , Chicago , Female , Greece , HIV Infections/psychology , Health Knowledge, Attitudes, Practice , Humans , Male , Mass Screening , Ukraine , Young Adult
2.
Science ; 361(6405): 894-899, 2018 08 31.
Article in English | MEDLINE | ID: mdl-30139911

ABSTRACT

The yellow fever virus (YFV) epidemic in Brazil is the largest in decades. The recent discovery of YFV in Brazilian Aedes species mosquitos highlights a need to monitor the risk of reestablishment of urban YFV transmission in the Americas. We use a suite of epidemiological, spatial, and genomic approaches to characterize YFV transmission. We show that the age and sex distribution of human cases is characteristic of sylvatic transmission. Analysis of YFV cases combined with genomes generated locally reveals an early phase of sylvatic YFV transmission and spatial expansion toward previously YFV-free areas, followed by a rise in viral spillover to humans in late 2016. Our results establish a framework for monitoring YFV transmission in real time that will contribute to a global strategy to eliminate future YFV epidemics.


Subject(s)
Disease Outbreaks/prevention & control , Epidemiological Monitoring , Genomics/methods , Yellow Fever/prevention & control , Yellow Fever/transmission , Yellow fever virus/isolation & purification , Aedes/virology , Age Factors , Animals , Brazil/epidemiology , Disease Outbreaks/statistics & numerical data , Evolution, Molecular , Humans , Phylogeny , Polymerase Chain Reaction , Risk , Sex Factors , Spatio-Temporal Analysis , Yellow Fever/epidemiology , Yellow Fever/virology , Yellow fever virus/classification , Yellow fever virus/genetics
3.
AIDS Care ; 27(2): 223-8, 2015.
Article in English | MEDLINE | ID: mdl-25244688

ABSTRACT

Past research suggests that as many as 50% of onward human immunodeficiency virus (HIV) transmissions occur during acute and recent HIV infection. It is clearly important to develop interventions which focus on this highly infectious stage of HIV infection to prevent further transmission in the risk networks of acutely and recently infected individuals. Project Protect tries to find recently and acutely infected individuals and prevents HIV transmission in their risk networks. Participants are recruited by community health outreach workers at community-based HIV testing sites and drug users' community venues, by coupon referrals and through referrals from AIDS clinics. When a network with acute/recent infection is identified, network members are interviewed about their risky behaviors, network information is collected, and blood is drawn for HIV testing. Participants are also educated and given prevention materials (condoms, syringes, educational materials); HIV-infected participants are referred to AIDS clinics and are assisted with access to care. Community alerts about elevated risk of HIV transmission are distributed within the risk networks of recently infected. Overall, 342 people were recruited to the project and screened for acute/recent HIV infection. Only six index cases of recent infection (2.3% of all people screened) were found through primary screening at voluntary counseling and testing (VCT) sites, but six cases of recent infection were found through contact tracing of these recently infected participants (7% of network members who came to the interview). Combining screening at VCT sites and contact tracing the number of recently infected people we located as compared to VCT screening alone. No adverse events were encountered. These first results provide evidence for the theory behind the intervention, i.e., in the risk networks of recently infected people there are other people with recent HIV infection and they can be successfully located without increasing stigma for project participants.


Subject(s)
AIDS Serodiagnosis , Community Networks , Developing Countries , HIV Infections/diagnosis , HIV Infections/transmission , AIDS Serodiagnosis/statistics & numerical data , Adult , Female , HIV Infections/blood , HIV Infections/epidemiology , HIV Infections/prevention & control , Humans , Incidence , Male , Mass Screening , Patient Education as Topic , Risk Factors , Risk Reduction Behavior , Time Factors , Ukraine/epidemiology
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