首页> 外文期刊>American Journal of Physiology >A simple, cost-effective method for generating murine colonic 3D enteroids and 2D monolayers for studies of primary epithelial cell function
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A simple, cost-effective method for generating murine colonic 3D enteroids and 2D monolayers for studies of primary epithelial cell function

机译:一种简单,经济高效的方法,用于产生鼠结肠3D肠外和2D单层,用于研究初级上皮细胞功能

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摘要

Cancer cell lines have been the mainstay of intestinal epithelial experimentation for decades, due primarily to their immortality and ease of culture. However, because of the inherent biological abnormalities of cancer cell lines, many cellular biologists are currently transitioning away from these models and toward more representative primary cells. This has been particularly challenging, but recent advances in the generation of intestinal or-ganoids have brought the routine use of primary cells within reach of most epithelial biologists. Nevertheless, even with the proliferation of publications that use primary intestinal epithelial cells, there is still a considerable amount of trial and error required for laboratories to establish a consistent and reliable method to culture three-dimensional (3D) intestinal organoids and primary epithelial monolayers. We aim to minimize the time other laboratories spend troubleshooting the technique and present a standard method for culturing primary epithelial cells. Therefore, we have described our optimized, high-yield, cost-effective protocol to grow 3D murine colonoids for more than 20 passages and our detailed methods to culture these cells as confluent monolayers for at least 14 days, enabling a wide variety of potential future experiments. By supporting and expanding on the current literature of primary epithelial culture optimization and detailed use in experiments, we hope to help enable the widespread adoption of these innovative methods and allow consistency of results obtained across laboratories and institutions.
机译:几十年来,癌细胞系一直是肠上皮实验的主要原因,主要是由于它们的不朽和易于培养。然而,由于癌细胞系的固有生物异常,许多细胞生物学家目前正在远离这些模型和更换更代表性的原代细胞。这一切特别具有挑战性,但近期在肠道或流动的产生的进步使常规使用原代细胞在大多数上皮生物学家的范围内。然而,即使使用原发性肠上皮细胞的出版物的增殖,实验室仍然需要相当多的试验和误差,以建立一种培养三维(3D)肠有机体和初级上皮单层的一致和可靠的方法。我们的目标是最大限度地减少其他实验室花费对技术进行故障排除的时间,并提出了培养初级上皮细胞的标准方法。因此,我们已经描述了我们的优化,高产,经济效益的方案,以增加3D鼠上衣,以增加20多个通道,以及我们将这些细胞作为汇合单层培养至少14天的详细方法,从而实现了各种各样的潜在未来实验。通过对当前上皮培养优化优化和详细用途的当前文献来支持和扩展,我们希望能够帮助实现这些创新方法的广泛采用,并允许在实验室和机构获得的结果的一致性。

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