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一种用于无偏表征培养中上皮单层发育的新工具。

A novel tool for the unbiased characterization of epithelial monolayer development in culture.

机构信息

Department of Biology, University of Rochester, Rochester, NY 14627.

Department of Physics & Astronomy, University of Rochester, Rochester, NY 14627.

出版信息

Mol Biol Cell. 2023 Apr 1;34(4):ar25. doi: 10.1091/mbc.E22-04-0121. Epub 2023 Jan 25.

Abstract

The function of an epithelial tissue is intertwined with its architecture. Epithelial tissues are often described as pseudo-two-dimensional, but this view may be partly attributed to experimental bias: many model epithelia, including cultured cell lines, are easiest to image from the "top-down." We measured the three-dimensional architecture of epithelial cells in culture and found that it varies dramatically across cultured regions, presenting a challenge for reproducibility and cross-study comparisons. We therefore developed a novel tool (Automated Layer Analysis, "ALAn") to characterize architecture in an unbiased manner. Using ALAn, we find that cultured epithelial cells can organize into four distinct architectures and that architecture correlates with cell density. Cells exhibit distinct biological properties in each architecture. Organization in the apical-basal axis is determined early in monolayer development by substrate availability, while disorganization in the apical-basal axis arises from an inability to form substrate connections. Our work highlights the need to carefully control for three-dimensional architecture when using cell culture as a model system for epithelial cell biology and introduces a novel tool, built on a set of rules that can be widely applied to epithelial cell culture.

摘要

上皮组织的功能与其结构交织在一起。上皮组织通常被描述为伪二维的,但这种观点可能部分归因于实验偏差:许多模型上皮组织,包括培养的细胞系,从“自上而下”的角度最容易成像。我们测量了培养中的上皮细胞的三维结构,发现它在不同的培养区域差异很大,这对可重复性和跨研究比较构成了挑战。因此,我们开发了一种新的工具(自动层分析,“ALAn”)来以无偏倚的方式描述结构。使用 ALAn,我们发现培养的上皮细胞可以组织成四种不同的结构,并且结构与细胞密度相关。在每种结构中,细胞表现出不同的生物学特性。单层发育早期,细胞在顶端-基底轴上的组织由基质的可用性决定,而顶端-基底轴的紊乱则是由于无法形成基质连接所致。我们的工作强调了在将细胞培养作为上皮细胞生物学的模型系统使用时,需要仔细控制三维结构,并介绍了一种新的工具,该工具基于一组规则,可以广泛应用于上皮细胞培养。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e645/10092640/22b26f601fc1/mbc-34-ar25-g001.jpg

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