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Pumtang-on, P.

Publications and source records attributed to Pumtang-on, P..

2 recordsLinked to original sources

NK cell immunotherapy administered at the time of HIV recrudescence is associated with viral control.

One barrier to developing an HIV-1 cure is viral reservoirs persisting within B cell follicles of lymphatic tissues, partly due to failure of HIV-specific cytotoxic cells to express the follicular-homing receptor CXCR5. We evaluated HIV-specific CAR/CXCR5 NK cells armored with IL-15 and a PD-1 knockout for in vitro functionality. The safety and efficacy of these NK cells were assessed in vivo by treating ART-suppressed, HIV-infected-humanized-DRAGA mice following ART interruption. In vitro, CAR and control NK cells proliferated and killed HIV-Envelope-expressing cells. In vivo, there were no adverse health outcomes associated with cell infusions. CAR NK-treated animals had, on average, 1.88 times higher NK cell levels, and cells persisted up to 2 weeks longer than control NK-treated animals. At 56 days post-treatment, 62.5% of CAR NK-treated and 50% of control NK-treated groups had viral loads below the detection limit compared to 0% of the saline control group. Importantly, animals that had undetectable viral loads at 56 days post-treatment had earlier viral rebound post-ART interruption that coincided with high levels of NK cells, suggesting that timing of treatment with viral recrudescence was key to efficacy. This study demonstrates the promise of NK therapies for treating HIV infections.

bioengineering↗

Human-immune-system humanized-DRAGA mice are a valuable model to study novel immunotherapies for HIV-1

Humanized (h)DRAGA mice are a promising in vivo model for investigating immunotherapies for treating HIV infections. These mice are not only susceptible to HIV infection, but they also develop functional human immune cells, including T cells and B cells as well as follicular-like structures that mimic lymphoid B cell follicles, where HIV-producing cells concentrate during infection in a manner similar to that found in humans. This study evaluated the safety, tissue targeting, and efficacy of follicular-targeting HIV-specific chimeric antigen receptor (CAR)-T cells (CAR/CXCR5-T cells) in HIV-infected hDRAGA mice. Intravenously-infused CAR/CXCR5-T cells persisted in hDRAGA mice for the duration of the study, peaking six days post-infusion. This study indicated that CAR/CXCR5-T cell treatment is safe, with 100% survival rate of treated mice and no noticeable changes in pathology. Six days after infusion, CAR/CXCR5-T cells had accumulated in the follicle-like structures, with many appearing in direct contact with HIV-producing cells. However, CAR/CXCR5-T cell treatment did not appear to reduce viral loads compared to controls, perhaps because many of the engineered CAR/CXCR5-T cells were themselves infected with HIV, with some CAR/CXCR5-T cells showing evidence of HIV virion release. Future studies will investigate whether CAR/CXCR5-T cells engineered for resistance against HIV infection are effective in reducing viral loads. This study supports the approach of using the HIV-infected hDRAGA mouse model to test cellular immunotherapies for HIV, as the model recapitulates many aspects of HIV infection in human lymphoid follicles.

immunology↗