药物化学基本计算软件研究

Reshma R. Kurup, Anoob Kumar, K. I, Lal Prasanth, M. L
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摘要

今天,使用计算软件工具来研究无机、生物和聚合物系统的结构、动力学、表面特性和热力学是一种常见的做法。计算软件工具是药物发现指南的重要组成部分。它经常被用于合理的药物设计和基于结构的药物设计。药物的设计和发现过程在新化学实体的发明中是必不可少的。对于这一过程,全球有大量的计算工具可用,这些计算软件工具快速,免费,在线开放,无需付费。制药软件减少了特定任务中的人力、错误和时间利用率,而不会影响工作质量,具有很高的准确性和效率。该软件被全球与科学和医学相关的各种研究所使用。一种计算机程序,在允许对输出结构进行评估之前,根据药物化学转换规则库对输入结构进行转换。高通量筛选现在被广泛接受为CADD支持的可行选择。开发一流的数据集和设计库,可以优化分子多样性或相似性,这是对新分子实体的追求的结果。另一方面,计算基础设施和分子对接方法的突破使筛选吞吐量迅速增加。
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A Study of Essential Computational Software in Medicinal Chemistry
Today, it is common practice to employ computational software tools for investigating the structure, dynamics, surface characteristics, and thermodynamics of inorganic, biological, and polymeric systems. Computational software tools are a vital part of the guide for drug discovery. It is frequently employed in approaches for rational drug design and structure-based drug design. The process of drug design and discovery is essential in the invention of a new chemical entity. For this process, plenty of computational tools are available globally, Those computational software tools are fast, free, open online excess paid. Pharmaceutical software decreases human efforts, error, and time utilization in a particular task without compromising the quality of work with great accuracy and efficiency. This software is utilized by various institutes globally related to science and medicine. A computer program that transforms an input structure according toa library of medicinal chemical transformation rules before allowing evaluation of the output structures. High throughput screening is now widely accepted as a viable option that CADD supports. The development of top-notch datasets and design libraries that may be optimized for molecular diversity or similarity has resulted from the quest for novel molecular entities. On the other hand, breakthroughs in computing infrastructure and molecular docking methods are allowing screening throughput to increase quickly.
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