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Advanced in silico approaches in antiviral research.

机译:抗病毒研究中的先进计算机方法。

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Computer-aided drug design has seen constantly increasing application over the past two decades in every area of drug discovery. It can offer significant advantages over conventional approaches, being far less expensive and faster than conventional methods, or offering the possibility to predict molecular behaviours that cannot be elucidated in any other way. Recent developments in software and hardware make it possible to simulate increasingly complex molecular environments, widening the applicability of in silico studies from the interactions of small molecules with key protein residues, to the simulation of the dynamic evolution of complex biological systems with atomic resolution. Antiviral research offers several open challenges, from a biological, biochemical and pharmaceutical point of view. Computational approaches are already providing some answers and will undoubtedly give more in the near future. Here, we present a brief overview of the cutting-edge computational methods that play a major role in present and future antiviral research.
机译:在过去的二十年中,计算机辅助药物设计在药物发现的各个领域中的应用不断增加。它可以提供比常规方法显着的优势,比常规方法便宜得多且速度更快,或者可以预测无法以任何其他方式阐明的分子行为。软件和硬件的最新发展使得可以模拟日益复杂的分子环境,从而扩大了计算机研究的应用范围,从小分子与关键蛋白质残基的相互作用,到以原子分辨率模拟复杂生物系统的动态演化。从生物学,生化和药学的角度来看,抗病毒研究提出了一些开放的挑战。计算方法已经提供了一些答案,并且无疑会在不久的将来提供更多答案。在这里,我们简要介绍了在当前和未来的抗病毒研究中起主要作用的前沿计算方法。

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