免疫系统
免疫学
免疫疗法
自然杀伤细胞
过继性细胞移植
生物
癌症免疫疗法
病毒
医学
病毒学
癌症研究
T细胞
细胞毒性T细胞
生物化学
体外
作者
José M. Ayuso,Mehtab Farooqui,Marı́a Virumbrales-Muñoz,Katheryn Denecke,Shujah Rehman,Rebecca Schmitz,Jorge F. Guerrero,Cristina Sánchez‐de‐Diego,Sara Abizanda Campo,Elizabeth M. Maly,Matthew H. Forsberg,Sheena C. Kerr,Rob Striker,Nathan M. Sherer,Paul M. Harari,Christian M. Capitini,Melissa C. Skala,David J. Beebe
标识
DOI:10.1038/s41467-023-41625-8
摘要
Abstract Numerous studies are exploring the use of cell adoptive therapies to treat hematological malignancies as well as solid tumors. However, there are numerous factors that dampen the immune response, including viruses like human immunodeficiency virus. In this study, we leverage human-derived microphysiological models to reverse-engineer the HIV-immune system interaction and evaluate the potential of memory-like natural killer cells for HIV + head and neck cancer, one of the most common tumors in patients living with human immunodeficiency virus. Here, we evaluate multiple aspects of the memory-like natural killer cell response in human-derived bioengineered environments, including immune cell extravasation, tumor penetration, tumor killing, T cell dependence, virus suppression, and compatibility with retroviral medication. Overall, these results suggest that memory-like natural killer cells are capable of operating without T cell assistance and could simultaneously destroy head and neck cancer cells as well as reduce viral latency.
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