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In Vitro HIV-1 Entry and Replication in Langerhans Cells May Clarify the HIV-1 Genome Detection by PCR in Epidermis of Seropositive Patients

Abstract

Being dendritic antigen-presenting cells in skin and mucous membrane, Langerhans cells (LC) occur in areas at risk for inoculation by human immunodeficiency virus (HIV), and the question whether LC act as a target, reservoir, or vector for transmission of HIV has given rise to much controversy. o address this question, we first analyzed the epidermal compartment of skin from patients seropositive for HIV DNA. Second, we tested the Susceptibility of each cell type normally found in this compartment to in vitro infection by HIV-1, A non-denatured DNA was obtained from epidermal sheets after a thermochemical treatment of biopsies (0.5M ethylenediaminetetraacetic acid (EDTA), pH 7.5 at 60°C for 90 seconds). Optimization of amplification of viral genome Was performed With three primer pairs derived from gag, env, and pol sequences. Polymerase chain reaction (PCR) products were analyzed by Southern blot. Viral genome was found in five of 11 HIV-seropositive patients. To control the permissivity of epidermal cell population for HIV, cells isolated from the epidermal sheet of normal skin by trypsinization were co-cultured with HIV-1 -carrying promonocytic cells (U937) and observed by electron microscopy. After 3–6h of co-culture, numerous virions were either tightly bound or apparently engaed in the process of internalization through receptor-mediated endocytosis. At day 4 of co-culture, some infected LC appeared to release mature viral particles through bud formation. The in vitro HIV-1 entry and replication in LC may confirm the presence of the HIV-1 genome by PCR in epidermis of seropositive patients. The consequences of the permissivity of LC for HIV on the antigenpresenting function remain to be determined

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This paper was published in Elsevier - Publisher Connector .

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