Optimizing the in vitro colony-forming assay for more efficient delineation of the interaction between lung epithelial stem cells and their niche.

IF 1.1 Q4 CELL & TISSUE ENGINEERING Journal of Stem Cells & Regenerative Medicine Pub Date : 2020-12-11 eCollection Date: 2020-01-01 DOI:10.46582/jsrm.1602009
Mari Ozaki, Shizuko Kagawa, Makoto Ishii, Ahmed E Hegab
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引用次数: 1

Abstract

The use of in vitro 3D organoid/colony forming assay (CFA); which mimics the in vivo environment have provided insight into the mechanisms by which lung stem cells maintain and repair the lung. In recent years, the use of CFA has markedly expanded. However, variations among laboratories in lung cell isolation methods, media used, type, origin, and processing methods of mesenchymal cells used as feeders for the epithelial colonies, and terms utilized to describe and quantify the growing colonies, have caused difficulty in reproducing results among different labs. In this study, we compared several previously described methods for lung cell isolation and culture media, to identify their influence on retrieved cells and growing colonies. We also characterized the effect of freeze/thaw, and propagation of fibroblasts on their ability to support epithelial colonies. Importantly, we suggested markers to identify fibroblast subtypes that offer the best support to alveolar stem cell proliferation. Then, we used our optimized assay to confirm the in vitro identity of recently described epithelial progenitors. We also tested the effect of hyperoxia on lung stem cells, and examined the expression of the receptors for the SARS-COV-2 virus's entry into epithelial cells, on our organoids. In summary, our findings facilitate CFA standardization, help understand how niche cell variations influence growing colonies, and confirm some of the recently described lung stem cells.

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优化体外集落形成试验,以更有效地描述肺上皮干细胞与其生态位之间的相互作用。
体外3D类器官/集落形成试验(CFA)的使用;它模拟了体内环境,为研究肺干细胞维持和修复肺的机制提供了新的思路。近年来,CFA的使用已显著扩大。然而,不同实验室在肺细胞分离方法、使用的培养基、类型、来源和作为上皮菌落饲料的间充质细胞的处理方法,以及用于描述和量化生长菌落的术语方面的差异,导致了不同实验室在复制结果方面的困难。在这项研究中,我们比较了几种先前描述的肺细胞分离和培养基方法,以确定它们对回收细胞和生长菌落的影响。我们还描述了冷冻/解冻和成纤维细胞增殖对其支持上皮菌落能力的影响。重要的是,我们提出了标记物来识别对肺泡干细胞增殖提供最佳支持的成纤维细胞亚型。然后,我们使用我们优化的实验来确认最近描述的上皮祖细胞的体外身份。我们还测试了高氧对肺干细胞的影响,并检查了SARS-COV-2病毒进入上皮细胞的受体在类器官上的表达。总之,我们的研究结果促进了CFA标准化,有助于理解生态位细胞变异如何影响生长菌落,并证实了最近描述的一些肺干细胞。
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来源期刊
CiteScore
3.40
自引率
0.00%
发文量
5
审稿时长
14 weeks
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