Computational approaches for modeling and structural design of biological systems: A comprehensive review

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Ekambaram Gayathiri , Palanisamy Prakash , Priya Kumaravel , Jayanthi Jayaprakash , Manikkavalli Gurunathan Ragunathan , Sharmila Sankar , Saravanan Pandiaraj , Natesan Thirumalaivasan , Muthu Thiruvengadam , Rajakumar Govindasamy
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引用次数: 0

Abstract

The convergence of biology and computational science has ushered in a revolutionary era, revolutionizing our understanding of biological systems and providing novel solutions to global problems. The field of genetic engineering has facilitated the manipulation of genetic codes, thus providing opportunities for the advancement of innovative disease therapies and environmental enhancements. The emergence of bio-molecular simulation represents a significant advancement in this particular field, as it offers the ability to gain microscopic insights into molecular-level biological processes over extended periods. Biomolecular simulation plays a crucial role in advancing our comprehension of organismal mechanisms by establishing connections between molecular structures, interactions, and biological functions. The field of computational biology has demonstrated its significance in deciphering intricate biological enigmas through the utilization of mathematical models and algorithms. The process of decoding the human genome has resulted in the advancement of therapies for a wide range of genetic disorders, while the simulation of biological systems contributes to the identification of novel pharmaceutical compounds. The potential of biomolecular simulation and computational biology is vast and limitless. As the exploration of the underlying principles that govern living organisms progresses, the potential impact of this understanding on cancer treatment, environmental restoration, and other domains is anticipated to be transformative. This review examines the notable advancements achieved in the field of computational biology, emphasizing its potential to revolutionize the comprehension and enhancement of biological systems.

生物系统建模和结构设计的计算方法:综述。
生物学和计算科学的融合开创了一个革命性的时代,革命性地改变了我们对生物系统的理解,并为全球问题提供了新的解决方案。基因工程领域促进了基因密码的操作,从而为创新疾病疗法和环境改善的进步提供了机会。生物分子模拟的出现代表着这一特定领域的重大进步,因为它提供了在长时间内获得分子水平生物过程微观见解的能力。生物分子模拟通过建立分子结构、相互作用和生物功能之间的联系,在促进我们对生物体机制的理解方面发挥着至关重要的作用。计算生物学领域已经证明了它通过利用数学模型和算法来破解复杂的生物学谜团的重要性。解码人类基因组的过程导致了广泛遗传疾病治疗的进步,而生物系统的模拟有助于鉴定新的药物化合物。生物分子模拟和计算生物学的潜力是巨大而无限的。随着对控制生物体的基本原理的探索取得进展,这种理解对癌症治疗、环境恢复和其他领域的潜在影响预计将是变革性的。这篇综述考察了计算生物学领域取得的显著进展,强调了其在理解和增强生物系统方面的革命性潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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