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iPS cell–derived model to study the interaction between tissue macrophage and HIV-1

生物 巨噬细胞 诱导多能干细胞 永生化细胞系 细胞生物学 单核细胞 干细胞 胚胎干细胞 细胞培养 巨噬细胞集落刺激因子 免疫学 体外 遗传学 基因
作者
Youssef M. Eltalkhawy,Naofumi Takahashi,Yasuo Ariumi,Jun Shimizu,Kazuo Miyazaki,Satoru Senju,Shinya Suzu
出处
期刊:Journal of Leukocyte Biology [Oxford University Press]
卷期号:114 (1): 53-67 被引量:8
标识
DOI:10.1093/jleuko/qiad024
摘要

Abstract Despite effective antiretroviral therapy, HIV-1 persists in cells, including macrophages, which is an obstacle to cure. However, the precise role of macrophages in HIV-1 infection remains unclear because they reside in tissues that are not easily accessible. Monocyte-derived macrophages are widely used as a model in which peripheral blood monocytes are cultured and differentiated into macrophages. However, another model is needed because recent studies revealed that most macrophages in adult tissues originate from the yolk sac and fetal liver precursors rather than monocytes, and the embryonic macrophages possess a self-renewal (proliferating) capacity that monocyte-derived macrophages lack. Here, we show that human induced pluripotent stem cell–derived immortalized macrophage-like cells are a useful self-renewing macrophage model. They proliferate in a cytokine-dependent manner, retain macrophage functions, support HIV-1 replication, and exhibit infected monocyte-derived macrophage–like phenotypes, such as enhanced tunneling nanotube formation and cell motility, as well as resistance to a viral cytopathic effect. However, several differences are also observed between monocyte-derived macrophages and induced pluripotent stem cell–derived immortalized macrophage-like cells, most of which can be explained by the proliferation of induced pluripotent stem cell–derived immortalized macrophage-like cells. For instance, proviruses with large internal deletions, which increased over time in individuals receiving antiretroviral therapy, are enriched more rapidly in induced pluripotent stem cell–derived immortalized macrophage-like cells. Interestingly, inhibition of viral transcription by HIV-1–suppressing agents is more obvious in induced pluripotent stem cell–derived immortalized macrophage-like cells. Collectively, our present study proposes that the model of induced pluripotent stem cell–derived immortalized macrophage-like cells is suitable for mimicking the interplay between HIV-1 and self-renewing tissue macrophages, the newly recognized major population in most tissues that cannot be fully modeled by monocyte-derived macrophages alone.
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