Prospects of elimination of HIV with test-and-treat strategy

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Abstract

Recently, there has been much debate about the prospects of eliminating HIV from high endemic countries by a test-and-treat strategy. This strategy entails regular HIV testing in the entire population and starting antiretroviral treatment immediately in all who are found to be HIV infected. We present the concept of the elimination threshold and investigate under what conditions of treatment uptake and dropout elimination of HIV is feasible. We used a deterministic model incorporating an accurate description of disease progression and variable infectivity. We derived explicit expressions for the basic reproductionnumberandthe eliminationthreshold.Using estimates of exponential growth rates of HIV during the initial phase of epidemics, we investigated for which populations elimination is within reach. The concept of the elimination threshold allows an assessmentof the prospects of eliminationofHIVfrominformation in the early phase of the epidemic. The relative elimination threshold quantifies prospects of elimination independently of the details of the transmission dynamics. Elimination of HIV by test-and-treat is only feasible for populations with very low reproduction numbers or if the reproduction number is lowered significantly as a result of additional interventions. Allowing low infectiousness during primary infection, the likelihood of elimination becomes somewhat higher. The elimination threshold is a powerful tool for assessing prospects of elimination from available data on epidemic growth rates of HIV. Empirical estimates of the epidemic growth rate from phylogenetic studieswere used to assess the potential for elimination in specific populations.

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Kretzschmar, M. E., Schim Van Der Loeff, M. F., Birrell, P. J., De Angelis, D., & Coutinho, R. A. (2013). Prospects of elimination of HIV with test-and-treat strategy. Proceedings of the National Academy of Sciences of the United States of America, 110(39), 15538–15543. https://doi.org/10.1073/pnas.1301801110

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