Patel Seema
Bioinformatics and Medical Informatics Research Center, San Diego State University, 92182 San Diego, CA, USA; Bioinformatics and Medical Informatics Research Center, San Diego State University, 5500 Campanile Dr San Diego, CA 92182, USA..
Gene. 2017 Aug 30;626:209-214. doi: 10.1016/j.gene.2017.05.043. Epub 2017 May 22.
When the extracellular pH of human body vacillates in either direction, tissue homeostasis is compromised. Fluctuations in acidity have been linked to a wide variety of pathological conditions, including bone loss, cancer, allergies, and auto-immune diseases. Stress conditions affect oxygen tension, and the resultant hypoxia modulates the expression and/or activity of membrane-tethered transporters/pumps, transcription factors, enzymes and intercellular junctions. These modifications provoke erratic gene expression, aberrant tissue remodeling and oncogenesis. While the physiological optimization of pH in tissues is practically challenging, it is at least theoretically achievable and can be considered as a possible therapy to resolve a broad array of diseases.
当人体细胞外pH值向任何一个方向波动时,组织稳态就会受到影响。酸度的波动与多种病理状况有关,包括骨质流失、癌症、过敏和自身免疫性疾病。应激状况会影响氧张力,由此产生的缺氧会调节膜结合转运蛋白/泵、转录因子、酶和细胞间连接的表达和/或活性。这些改变会引发不稳定的基因表达、异常的组织重塑和肿瘤发生。虽然在组织中对pH值进行生理优化在实际操作上具有挑战性,但至少在理论上是可以实现的,并且可以被视为一种可能用于解决多种疾病的疗法。