A Macroergic Compound Adenosine Triphosphoric Acid in Biomedical Research (A Review)

IF 4.033 Q4 Biochemistry, Genetics and Molecular Biology
E. A. Saratovskikh, B. L. Psikha, N. A. Sanina
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引用次数: 0

Abstract

The dual role of the ATP molecule, a macroergic compound and a neurotransmitter, is considered. As a signaling molecule, ATP is involved in the formation of the visual system and the development of the inner ear of the embryo; it is involved in the mediation of pain and taste sensations. In cardiovascular diseases, the release of ATP into the intercellular medium serves as a signal for the body to activate repair mechanisms. ATP is involved in maintaining the normal functioning of many organs and tissues. This suggests the possibility of its use for the treatment of a number of disorders: diseases of the kidneys, bones, bladder, skin, neurological and mental pathologies, as well as cardiovascular diseases. Some new trends in the creation of new drugs have been identified, based on the growing knowledge about the functions of ATP in the body. Tetranitrosyl iron complexes, NO donors, are a new class of potential anticancer and cardioprotective drugs. Their reaction rates with ATP and products formed are considered in detail. It is concluded that the interaction of these NO donor iron complexes with the glycolytic ATP and/or the neurotransmitter ATP makes a significant contribution to the therapeutic effects of these compounds.

Abstract Image

大能化合物三磷酸腺苷在生物医学研究中的应用综述
ATP分子的双重作用,一个大能化合物和神经递质,被认为。作为一种信号分子,ATP参与了胚胎视觉系统的形成和内耳的发育;它参与了疼痛和味觉感觉的调解。在心血管疾病中,ATP释放到细胞间介质中作为机体激活修复机制的信号。ATP参与维持许多器官和组织的正常功能。这表明它有可能用于治疗一些疾病:肾脏、骨骼、膀胱、皮肤、神经和精神疾病以及心血管疾病。基于对ATP在体内功能的不断增长的认识,已经确定了新药开发的一些新趋势。四硝基铁配合物是一类有潜力的新型抗癌和心脏保护药物。详细讨论了它们与ATP的反应速率和生成的产物。综上所述,这些NO供体铁复合物与糖酵解ATP和/或神经递质ATP的相互作用对这些化合物的治疗效果有重要贡献。
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来源期刊
Biophysics
Biophysics Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
1.20
自引率
0.00%
发文量
67
期刊介绍: Biophysics is a multidisciplinary international peer reviewed journal that covers a wide scope of problems related to the main physical mechanisms of processes taking place at different organization levels in biosystems. It includes structure and dynamics of macromolecules, cells and tissues; the influence of environment; energy transformation and transfer; thermodynamics; biological motility; population dynamics and cell differentiation modeling; biomechanics and tissue rheology; nonlinear phenomena, mathematical and cybernetics modeling of complex systems; and computational biology. The journal publishes short communications devoted and review articles.
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