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一种综合方法探讨人类神经退行性疾病(HNDDs)和癌症的病因发病机制。在营养因子耗竭综合征(TFWS)框架内的可能治疗后果。

An integral approach to the etiopathogenesis of human neurodegenerative diseases (HNDDs) and cancer. Possible therapeutic consequences within the frame of the trophic factor withdrawal syndrome (TFWS).

机构信息

Institute of Clinical Biology and Metabolism, c/o Postas 13, 01004 Vitoria, Spain.

出版信息

Neuropsychiatr Dis Treat. 2008 Dec;4(6):1073-84. doi: 10.2147/ndt.s3800.

Abstract

A novel and integral approach to the understanding of human neurodegenerative diseases (HNDDs) and cancer based upon the disruption of the intracellular dynamics of the hydrogen ion (H(+)) and its physiopathology, is advanced. From an etiopathological perspective, the activity and/or deficiency of different growth factors (GFs) in these pathologies are studied, and their relationships to intracellular acid-base homeostasis reviewed. Growth and trophic factor withdrawal in HNDDs indicate the need to further investigate the potential utilization of certain GFs in the treatment of Alzheimer disease and other neurodegenerative diseases. Platelet abnormalities and the therapeutic potential of platelet-derived growth factors in these pathologies, either through platelet transfusions or other clinical methods, are considered. Finally, the etiopathogenic mechanisms of apoptosis and antiapoptosis in HNDDs and cancer are viewed as opposite biochemical and biological disorders of cellular acid-base balance and their secondary effects on intracellular signaling pathways and aberrant cell metabolism are considered in the light of the both the seminal and most recent data available. The "trophic factor withdrawal syndrome" is described for the first time in English-speaking medical literature, as well as a Darwinian-like interpretation of cellular behavior related to specific and nonspecific aspects of cell biology.

摘要

提出了一种新颖而完整的方法,基于氢离子(H(+))的细胞内动力学及其生理学紊乱,来理解人类神经退行性疾病(HNDDs)和癌症。从病因病理学的角度来看,研究了这些病理中不同生长因子(GFs)的活性和/或缺乏,并回顾了它们与细胞内酸碱稳态的关系。HNDDs 中的生长和营养因子耗竭表明需要进一步研究某些 GFs 在治疗阿尔茨海默病和其他神经退行性疾病中的潜在用途。考虑了血小板异常以及血小板衍生生长因子在这些病理中的治疗潜力,无论是通过血小板输注还是其他临床方法。最后,根据现有的开创性和最新数据,将 HNDDs 和癌症中细胞凋亡和抗细胞凋亡的病因发病机制视为细胞酸碱平衡的相反生化和生物学紊乱,以及它们对细胞内信号转导途径和异常细胞代谢的继发性影响。“营养因子耗竭综合征”首次在英文医学文献中被描述,以及对与细胞生物学特定和非特定方面相关的细胞行为的达尔文式解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80e8/2646641/50747e0b8df0/ndt-4-1073f1.jpg

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