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肾小管类器官的培养和分析及在芯片上灌流的小管类器官细胞

Culture and analysis of kidney tubuloids and perfused tubuloid cells-on-a-chip.

机构信息

Mimetas BV, Leiden, the Netherlands.

Hubrecht Institute-Royal Netherlands Academy of Arts and Sciences and University Medical Center Utrecht, Utrecht, the Netherlands.

出版信息

Nat Protoc. 2021 Apr;16(4):2023-2050. doi: 10.1038/s41596-020-00479-w. Epub 2021 Mar 5.

Abstract

Advanced in vitro kidney models are of great importance to the study of renal physiology and disease. Kidney tubuloids can be established from primary cells derived from adult kidney tissue or urine. Tubuloids are three-dimensional multicellular structures that recapitulate tubular function and have been used to study infectious, malignant, metabolic, and genetic diseases. For tubuloids to more closely represent the in vivo kidney, they can be integrated into an organ-on-a-chip system that has a more physiological tubular architecture and allows flow and interaction with vasculature or epithelial and mesenchymal cells from other organs. Here, we describe a detailed protocol for establishing tubuloid cultures from tissue and urine (1-3 weeks), as well as for generating and characterizing tubuloid cell-derived three-dimensional tubular structures in a perfused microfluidic multi-chip platform (7 d). The combination of the two systems yields a powerful in vitro tool that better recapitulates the complexity of the kidney tubule with donor-specific properties.

摘要

先进的体外肾脏模型对于研究肾脏生理学和疾病非常重要。肾小管类器官可以从成人肾脏组织或尿液中提取的原代细胞中建立。小管类器官是三维多细胞结构,可再现管状功能,并已用于研究感染性、恶性、代谢和遗传性疾病。为了使小管类器官更接近体内肾脏,它们可以整合到器官芯片系统中,该系统具有更生理的管状结构,并允许与血管或来自其他器官的上皮和间充质细胞进行流动和相互作用。在这里,我们描述了一种从组织和尿液中建立小管类器官培养物的详细方案(1-3 周),以及在灌注微流控多芯片平台中生成和表征小管类器官细胞衍生的三维管状结构的方案(7 天)。这两个系统的结合产生了一种强大的体外工具,更好地再现了具有供体特异性的肾脏小管的复杂性。

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