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超越细胞体积的细胞体积研究。

Studying cell volume beyond cell volume.

机构信息

Kent State University, Kent, Ohio, United States.

出版信息

Curr Top Membr. 2021;88:165-188. doi: 10.1016/bs.ctm.2021.08.001. Epub 2021 Oct 2.

Abstract

The first part of the paper describes two simple microscopic techniques that we use in our laboratory. One measures cell volumes in adherent cultures and the other measures cell dry mass; both measurements are done on the same instrument (a standard bright-field transmission microscope with only one or two narrow-band color filters added) and on the same cells. The reason for combining cell volume with dry mass is that the ratio of the two-dry mass concentration (MC)-is an important and insufficiently utilized biological parameter. We then describe a few applications of MC. The available experimental data strongly suggest its critical role in biological processes, including cell volume regulation. For example, most eukaryotic cells have surprisingly similar values of MC. Moreover, MC (and not cell volume) is tightly controlled in growing cell cultures at highly variable external osmolarities. We review the results showing that elevation of MC is a direct cause of shrinkage-induced apoptosis. Also, by focusing on MC, one can study heterogenous processes, such as necrotic swelling, or discriminate between apoptotic dehydration and the loss of cell fragments.

摘要

本文的第一部分描述了我们实验室使用的两种简单的显微镜技术。一种方法用于测量贴壁培养细胞的体积,另一种方法用于测量细胞干重;这两种测量都在同一台仪器(一台标准的明场透射显微镜,只添加了一个或两个窄带滤光片)上和相同的细胞上进行。将细胞体积与干重结合起来的原因是,两者的比值(干重浓度比,MC)是一个重要但未充分利用的生物学参数。然后,我们描述了 MC 的一些应用。现有的实验数据强烈表明它在包括细胞体积调节在内的生物过程中起着关键作用。例如,大多数真核细胞的 MC 值惊人地相似。此外,在高度变化的外部渗透压下,MC(而不是细胞体积)在生长中的细胞培养物中受到严格控制。我们回顾了一些结果,这些结果表明 MC 的升高是收缩诱导凋亡的直接原因。此外,通过关注 MC,人们可以研究异质过程,如坏死性肿胀,或区分凋亡性脱水和细胞碎片的丧失。

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