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Volodina, O.

Publications and source records attributed to Volodina, O..

2 recordsLinked to original sources

Humanized Bone Marrow-Liver-Thymus Mice for Studying HIV-1 Persistence in Liver and Lung CD4+ T and Myeloid Cell Subsets during Antiretroviral Therapy

BackgroundWhile the role of CD4+ T-cells in HIV-1 reservoir persistence during antiretroviral therapy (ART) is well-established, studies on tissue-resident macrophages (M{Phi}) in people with HIV-1 (PWH) are restricted by difficulties in accessing deep tissue samples. Investigations in myeloid-only humanized mouse models demonstrated the contribution of M{Phi} to viral rebound upon ART interruption. Two distinct M{Phi} subsets exist in mice and humans: one of embryonic origin and self-renewal capacity generating long-lived tissue-resident M{Phi} (LL-TRM), and another one of short-lived M{Phi} (SL-M{Phi}), constantly replenished by bone marrow monocytes. The relative contribution of LL-TRM versus SL-M{Phi} to tissue HIV-1 reservoir persistence during ART remains understudied. Here, we used a humanized BM-liver-thymus (hu-BLT) mouse model to quantify integrative HIV-1 infection in liver/lung M{Phi} versus CD4+ T-cells before/after ART and document their expression of LL-TRM/SL-M{Phi} markers. ResultsLung/liver immune cells were extracted from ART-naive (ART-) and ART-treated (ART+) HIV-infected (HIV+) hu-BLT mice, as well as HIV-uninfected mice (HIV-). M{Phi} were identified as cells expressing the myeloid markers CD33/HLA-DR and/or CD68 and flow-cytometry sorted based on their differential expression of CD14 and/or CCR2. Matched CD3+CD4+ T-cells were sorted in parallel and used as controls. HIV-DNA integration was measured by nested real-time PCR. In contrast to CD4+ T-cells that carried the highest levels of proviral HIV-DNA before and after ART, integrative infection in liver/lung M{Phi} was detected before ART, but was drastically reduced in HIV+ART+ hu-BLT mice, regardless of CD14 or CCR2 expression on M{Phi}. Markers of LL-TRM (CD163/CX3CR1/Ki67/c-Kit) were expressed on a small fraction of liver but not lung M{Phi}, indicative of a deficient LL-TRM development in this hu-BLT model. ConclusionsTogether our results demonstrate that lung/liver M{Phi} in hu-BLT mice support integrative HIV-1 infection in vivo, but their contribution to viral reservoir persistence during ART is minor when compared to CD4+ T-cells. This is consistent with the deficient development of LL-TRM we observed in hu-BLT mice. However, HIV-1 permissive M{Phi} present in this model likely contribute to viral rebound upon ART interruption. Therefore, HIV-1 cure interventions that are tested in such preclinical models should consider targeting HIV-1 replication in both M{Phi} and CD4+ T-cells.

immunology↗

Generation of Functional Human T Cell Development in NOD/SCID/IL2rγnull Humanized Mice Without Using Fetal Tissue: Application as a Model of HIV Infection and Persistence

Generating humanized mice with fully functional T cells currently relies on co-implantation of hematopoietic stem cells from fetal liver and autologous fetal thymic tissue (BLT mouse). However, access to such tissues has ethical and logistical challenges. Herein, we show that NOD/SCID/IL2r{gamma}null mice humanized with cord blood-derived CD34+ cells and implanted in quadriceps with pediatric thymic tissues excised during cardiac surgeries (CCST mice) are an alternative to BLT mice. Our data revealed a strong immune reconstitution in CCST mice, with T cells originating from CD34+ progenitor cells, proliferating efficiently in response to mitogenic stimulation ex vivo and capable of rejecting allogeneic human leukemic cells in vivo. Despite having less T cells than BLT mice, CCST mice were equally susceptible to mucosal or intraperitoneal HIV infection. Importantly, HIV-specific T cell responses were significantly higher in CCST-mice (median: 10.4% vs. 0.7%; p<0.0001 for CD8+cells and 3.9% vs. 0.7%; p<0.01 for CD4+ cells). As well, antiretroviral therapy (ART) robustly suppressed viremia and reduced the frequencies of cells carrying integrated HIV DNA by up to 2 logs in various CCST mouse tissues. As in BLT mice, we observed a complete viral rebound in 67% of the animals by 2-4 weeks following ART interruption, suggesting the presence of HIV reservoirs. In conclusion, CCST mice represent an ethical and practical alternative to BLT mice, broadening the feasibility of utilizing humanized mice for research on HIV and other human diseases. One Sentence SummaryWe herein report a new humanized mouse model implanted with human cord blood hematopoietic stem cells and allogenic pediatric thymic tissue that develops a functional T cell compartment and supports efficient HIV infection and persistence during antiretroviral therapy.

immunology↗