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Biology subjects

Yang, H.-H.

Publications and source records attributed to Yang, H.-H..

2 recordsLinked to original sources

Optimizing CRISPR/Cas9 genome editing in primary human hematopoietic cells to advance studies into HIV biology

Defining how human host factors shape HIV-1 infection in vivo remains essential for the development of genetically engineered cell therapies. Here, we established a non-viral CRISPR/Cas9 ribonucleoprotein-based platform for efficient single and multiplex gene editing in primary human CD34+ hematopoietic stem and progenitor cells (HSPCs). Edited HSPCs retained viability, proliferative capacity, primitive immunophenotypes, and multilineage differentiation potential and supported targeted reporter knock-in independently of the cell source, cord blood (CB), bone marrow (BM), and mobilized from peripheral blood (MPB). Following differentiation, SAMHD1 knockout increased HIV-1 susceptibility of HSPC-derived macrophages, MX2 knockout also increased HIV infection in cells pre-stimulated with IFN-2a, and CXCR4 knockout blocked X4-tropic HIV-1 infection of HSPC-derived megakaryocytes. We then transplanted CCR5-, SAMHD1-, or non-targeting control-edited HSPCs into immunodeficient mice and challenged reconstituted animals with R5-tropic HIV-1. CCR5 knockout prevented detectable viral spread, validating the model using a clinically relevant dependency factor. In contrast, SAMHD1 knockout accelerated viral dissemination, with earlier plasma viremia and 3.6-fold higher cumulative viremia, although endpoint viral burden was not significantly different from controls. These findings establish transplantation of CRISPR/Cas9-edited human HSPCs as a modular platform for dissecting HIV-1 host-factor function across hematopoietic lineages ex vivo and in vivo and for evaluating engineered cell-based strategies.

bioengineering↗

Synergistic Cytotoxicity of Permethrin and N,N-Diethyl-Meta-Toluamide on Sinonasal Epithelial Cells

BackgroundN,N-Diethyl-Meta-Toluamide (DEET) and permethrin are pesticides commonly used in combination due to their synergistic insecticidal and repellent properties. This study investigates whether simultaneous exposure to these compounds elicits synergistic cytotoxicity in sinonasal epithelial cells (SNECs). Material and MethodsEthmoid sinus mucosal specimens were procured from eight patients during endoscopic sinus surgery. SNECs were expanded on culture plates and exposed to various concentrations of DEET and permethrin (0-5m), individually and concurrently, for up to 156 hours. Experiments were replicated in triplicates and cell viability was recorded every 2 hours using IncuCyte real-time cell imaging system. Synergy score was calculated on the basis of Loewe additivity synergy finder model. ResultsDEET and permethrin exhibited synergistic cytotoxicity across all eight tissues, albeit with variations in onset and magnitude. Peak synergy was observed at 144h for tissue 1 (SLoewe 4.2, 95% CI 1.8-7.3; [permethrin concentration, DEET concentration] [2.5M, 1.25M]), 48h for tissue 2 (19.9, 16.5-23.6; [1.25, 0.625]), 144h for tissue 3 (15.2, 3.9-30.4; [0.625, 1.25]), 144h for tissue 4 (6.4, -3.6 to 18.0; [0.625, 0.625]), 48h for tissue 5 (10.1, 8.9-12.5; [0.625, 1.25]), 96h for tissue 6 (24.7, 12.2-36.3; [0.625, 0.625]), 48h for tissue 7 (47.7, 29.6-62.2; [0.625, 1.25]), and 96h for 8 (47.4, 26.8-67.0; [0.625, 0.625]). ConclusionThe concurrent exposure of DEET and permethrin can lead to synergistic cytotoxicity in sinonasal epithelia. Further research is warranted in preclinical animal models to explore whether this synergy accelerates the pathogenesis of chronic rhinosinusitis.

pharmacology and toxicology↗