Inferences of Carbon Dioxide in Present-Day Cell Culture Systems: An Unacknowledged Problem and Perspectives

Dubey Ak, Lavanya L, Sadananda D, Gouthami K, Elfansu K, Singh A, Singhai Ak
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引用次数: 4

Abstract

The impact of cell culture technology has been immense in the field of research and pharmaceutical sciences. Suitable environmental conditions are paramount need in order to maintain the cell line in an in-vitro condition. Since the biological processes are highly susceptible to acid-base chemistry, variations among the factors will have a severe effect on cellular integrity that often leads to hypercapnia and senescence of the cells. pH regulation in the cell culture environment is a fundamental biological phenomenon of great significance for the growth and metabolism of cells. This review focuses on the implications of the two critical factors carbon dioxide (CO2), pH, and their correlated effects in the mammalian culture system. Bicarbonate buffer plays a vital role in maintaining homeostasis as dissolved CO2 hydration occurs in bicarbonate (HCO3-) and H+ equilibriums. If pH is not controlled, inhibition of CO2 causes acidification in the medium. In contrast, if pH is not regulated by integrating essential requirements, the equilibrium reaction shifts to the right towards the hydrogen ions that maintains the balance. Despite a few literatures exhibiting the role of carbon dioxide in cell culture, the present review distinguishes from them by showing the effects of CO2 in the in-vitro environment in maintaining the pH balance and cellular integrity. Thus, ensuring the proper mechanism of the utilization of CO2 and pH in the cell culture system will undoubtedly lead to the exploration of enormous concepts in the present crucial study.
二氧化碳在当今细胞培养系统中的推论:一个未被承认的问题和观点
细胞培养技术在研究和制药科学领域的影响是巨大的。为了在体外条件下维持细胞系,合适的环境条件是至关重要的。由于生物过程非常容易受到酸碱化学的影响,这些因素之间的变化将对细胞完整性产生严重影响,经常导致高碳酸血症和细胞衰老。细胞培养环境中的pH调节是一种基本的生物学现象,对细胞的生长和代谢具有重要意义。本文综述了哺乳动物培养系统中两个关键因子二氧化碳(CO2)、pH及其相关效应的意义。碳酸氢盐缓冲液在维持体内平衡中起着至关重要的作用,因为溶解的二氧化碳水化发生在碳酸氢盐(HCO3-)和H+平衡中。如果pH值不受控制,抑制CO2会导致介质酸化。相反,如果pH值不是通过整合基本需求来调节的,平衡反应就会向右移动,偏向维持平衡的氢离子。尽管有一些文献展示了二氧化碳在细胞培养中的作用,但本文的不同之处在于,本文展示了二氧化碳在体外环境中维持pH平衡和细胞完整性的作用。因此,确保细胞培养系统中CO2和pH的合理利用机制无疑将导致当前关键研究中巨大概念的探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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