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在Plasmax中培养的癌细胞会使营养物质迅速消耗至生理范围以下。

Rapid nutrient depletion to below the physiological range by cancer cells cultured in Plasmax.

作者信息

Gardner Georgina L, Moradi Fereshteh, Moffatt Chris, Cliche Meagan, Garlisi Bianca, Gratton John, Mehmood Fatima, Stuart Jeffrey A

机构信息

Department of Biological Sciences, Brock University, St. Catharines, Ontario, Canada.

出版信息

Am J Physiol Cell Physiol. 2022 Sep 1;323(3):C823-C834. doi: 10.1152/ajpcell.00403.2021. Epub 2022 Jul 25.

Abstract

Mammalian cell culture is a fundamental tool used to study living cells. Presently, the standard protocol for performing cell culture involves the use of commercial media that contain an excess of nutrients. Although this reduces the likelihood of cell starvation, it creates nonphysiologic culture conditions that have been shown to "re-wire" cellular metabolism. Recently, researchers have developed new media like Plasmax, formulated to approximate the nutrient composition of human blood plasma. Although this represents an improvement in cell culture practice, physiologic media may be vulnerable to nutrient depletion. In this study, we directly addressed this concern by measuring the rates of glucose and amino acid depletion from Plasmax in several cancer cell lines (PC-3, LNCaP, MCF-7, and SH-SY5Y) over 48 h. In all cell lines, depletion of glucose from Plasmax was rapid such that, by 48 h, cells were hypoglycemic (<2 mM glucose). Most amino acids were similarly rapidly depleted to subphysiological levels by 48 h. In contrast, glucose and most amino acids remained within the physiological range at 24 h. When the experiment was done at physiological oxygen (5%) versus standard (18%) with LNCaP cells, no effect on glucose or amino acid consumption was observed. Using RNA sequencing, we show that this nutrient depletion is associated with enrichment of starvation responses, apoptotic signaling, and endoplasmic reticulum stress. A shift from glycolytic metabolism to mitochondrial respiration at 5% O was also measured using Seahorse analysis. Taken together, these results exemplify the metabolic considerations for Plasmax, highlighting that cell culture in Plasmax requires daily media exchange.

摘要

哺乳动物细胞培养是用于研究活细胞的一项基本工具。目前,进行细胞培养的标准方案涉及使用含有过量营养成分的商业培养基。尽管这降低了细胞饥饿的可能性,但却创造了已被证明会“重塑”细胞代谢的非生理培养条件。最近,研究人员开发了像Plasmax这样的新型培养基,其配方旨在近似人类血浆的营养成分。尽管这代表了细胞培养实践中的一项改进,但生理性培养基可能容易出现营养物质耗竭的情况。在本研究中,我们通过测量几种癌细胞系(PC - 3、LNCaP、MCF - 7和SH - SY5Y)在48小时内从Plasmax中消耗葡萄糖和氨基酸的速率,直接解决了这一问题。在所有细胞系中,Plasmax中葡萄糖的消耗都很快,以至于到48小时时,细胞处于低血糖状态(葡萄糖<2 mM)。大多数氨基酸在48小时时也同样迅速消耗至亚生理水平。相比之下,葡萄糖和大多数氨基酸在24小时时仍处于生理范围内。当用LNCaP细胞在生理氧浓度(5%)与标准氧浓度(18%)下进行实验时,未观察到对葡萄糖或氨基酸消耗有影响。通过RNA测序,我们表明这种营养物质耗竭与饥饿反应、凋亡信号传导和内质网应激的富集有关。使用海马分析还测量了在5%氧气条件下从糖酵解代谢向线粒体呼吸的转变。综上所述,这些结果例证了对Plasmax的代谢考量,突出表明在Plasmax中进行细胞培养需要每天更换培养基。

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