Kim Narae
Nucleic Acid Chemistry and Engineering Okinawa Institute of Science and Technology Graduate University Okinawa Japan.
Reprod Med Biol. 2020 Sep 13;20(1):20-26. doi: 10.1002/rmb2.12346. eCollection 2021 Jan.
The study of somatic cell reprogramming and cell differentiation is essential for the application of recent techniques in regenerative medicine. It is, specifically, necessary to determine the appropriate conditions required for the induction of reprogramming and cell differentiation.
Based on a comprehensive literature review, the effects of pH fluctuation on alternative splicing, mitochondria, plasma membrane, and phase separation, in several cell types are discussed. Additionally, the associated molecular pathways important for the induction of differentiation and reprogramming are reviewed.
While cells change their state, several factors such as cytokines and physical parameters affect cellular reprogramming and differentiation. As the extracellular and intracellular pH affects biophysical phenomena in a cell, the effects of pH fluctuation can ultimately decide the cell fate through molecular pathways. Though few studies have reported on the direct effects of culture pH on cell state, there is substantial information on the pathways related to stem cell differentiation and somatic cell reprogramming that can be stimulated by environmental pH.
Environmental pH fluctuations may decide cell fate through the molecular pathways associated with somatic cell reprogramming and cell differentiation.
体细胞重编程和细胞分化的研究对于再生医学中近期技术的应用至关重要。具体而言,确定诱导重编程和细胞分化所需的适当条件是必要的。
基于全面的文献综述,讨论了pH波动对几种细胞类型中的可变剪接、线粒体、质膜和相分离的影响。此外,还综述了对诱导分化和重编程重要的相关分子途径。
当细胞改变其状态时,细胞因子和物理参数等多种因素会影响细胞重编程和分化。由于细胞外和细胞内的pH会影响细胞中的生物物理现象,pH波动的影响最终可通过分子途径决定细胞命运。尽管很少有研究报道培养pH对细胞状态的直接影响,但有大量关于与干细胞分化和体细胞重编程相关途径的信息,这些途径可受到环境pH的刺激。
环境pH波动可能通过与体细胞重编程和细胞分化相关的分子途径决定细胞命运。