胆碱能系统复杂模型的发展与应用

V. Vasylenko, M. Martynova, S. Mickevicius
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摘要

2西波西米亚大学应用科学学院,捷克普热采 8,30614生物的生命活动受生化过程的调控。在这些过程中,即使是轻微的中断或不正确的干预也会导致严重的、往往是不可逆转的后果。胆碱能系统及其调节剂的研究是特别有趣的。对乙酰胆碱代谢的合理影响有助于解决广泛的兽医、医学和基础生化问题。目前,对胆碱能系统的生物学作用机制尚未全面研究。有限的实验室方法是进一步研究这些过程的主要障碍。由于外部因素的显著影响、变量的高度可变性以及处理大量生化数据的困难,体外和体内研究的结果最常受到质疑。近年来,越来越多的研究者强调在生物科学领域引入新的研究方法和方法的必要性。在应用研究中,如果没有创新的方法,就不可能获得可靠和令人满意的结果。利用计算生物学的方法,从催化和抑制两方面寻找和开发胆碱能系统的安全调节剂是很有必要的。现有的软件产品在解决高度具体的问题方面取得了积极的成果,但它们并没有为生物建模的现有问题提供全面的解决方案。本文考察了现有建模技术的实例,并考虑了为胆碱能系统的整体构建和分析创建通用软件产品的可能性。
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Development and application of the complex model of the cholinergic system
2 University of West Bohemia, Faculty of Applied Sciences, Plzeň, Technická 8, 30614, Czech Republic The vital activity of organisms is regulated by biochemical processes. Even minor disruptions or incorrect intervention in these processes leads to serious, often irreversible, consequences. The study of the cholinergic system and its modulators is of particular interest. Reasonable influence on the metabolism of acetylcholine can help in solving a wide range of veterinary, medical, and fundamental biochemical problems. Currently, not all mechanisms of biological effects on the cholinergic system have been studied. Limited laboratory methods are the main obstacle to further study of these processes. The results of in vitro and in vivo studies can most often be questioned due to the significant influence of external factors, high variability of variables, and difficulties in processing large volumes of biochemical data. In recent years, more and more researchers have emphasized the need to introduce new methods and research methods in the area of biological sciences. Without innovative approaches in applied research, it is no longer possible to obtain a reliable and satisfactory result. It is necessary to set a goal to find and develop safe modulators of the cholinergic system both in the direction of catalytic reactions and its inhibition by using the methods of computational biology. Existing software products give positive results in solving highly specific issues, but they do not offer a comprehensive solution to the existing problems of biomodelling. This article examines examples of the existing modelling techniques and considers the possibility of creating a universal software product for the integral construction and analysis of the cholinergic system.
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