An efficient method to generate kidney organoids at the air-liquid interface.

Journal of biological methods Pub Date : 2021-06-30 eCollection Date: 2021-01-01 DOI:10.14440/jbm.2021.357
Ashwani Kumar Gupta, David Z Ivancic, Bilal A Naved, Jason A Wertheim, Leif Oxburgh
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Abstract

The prevalence of kidney dysfunction continues to increase worldwide, driving the need to develop transplantable renal tissues. The kidney develops from four major renal progenitor populations: nephron epithelial, ureteric epithelial, interstitial and endothelial progenitors. Methods have been developed to generate kidney organoids but few or dispersed tubular clusters within the organoids hamper its use in regenerative applications. Here, we describe a detailed protocol of asynchronous mixing of kidney progenitors using organotypic culture conditions to generate kidney organoids tightly packed with tubular clusters and major renal structures including endothelial network and functional proximal tubules. This protocol provides guidance in the culture of human embryonic stem cells from a National Institute of Health-approved line and their directed differentiation into kidney organoids. Our 18-day protocol provides a rapid method to generate kidney organoids that facilitate the study of different nephrological events including in vitro tissue development, disease modeling and chemical screening. However, further studies are required to optimize the protocol to generate additional renal-specific cell types, interconnected nephron segments and physiologically functional renal tissues.

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在空气-液体界面生成肾脏有机体的有效方法。
全球肾功能不全的发病率持续上升,促使人们需要开发可移植的肾组织。肾脏由肾小球上皮细胞、输尿管上皮细胞、间质细胞和内皮细胞等四大肾脏祖细胞群发育而成。目前已开发出生成肾脏器官组织的方法,但器官组织内肾小管集群较少或分散,妨碍了其在再生应用中的使用。在此,我们介绍了利用器官型培养条件异步混合肾脏祖细胞的详细方案,该方案可生成具有紧密肾小管集群和主要肾脏结构(包括内皮网络和功能性近端肾小管)的肾脏器官组织。本方案指导如何从美国国家卫生研究院批准的品系中培养人类胚胎干细胞,并将其定向分化成肾脏器官组织。我们的18天方案提供了一种快速生成肾脏器官组织的方法,有助于研究不同的肾脏事件,包括体外组织发育、疾病建模和化学筛选。不过,还需要进一步研究优化该方案,以生成更多肾脏特异性细胞类型、相互连接的肾小管节段和具有生理功能的肾脏组织。
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