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虚拟组合化学与药理学筛选:药物设计简明指南。

Virtual Combinatorial Chemistry and Pharmacological Screening: A Short Guide to Drug Design.

机构信息

ESI International @ UCHCEU, Departamento de Matemáticas, Física y Ciencias Tecnológicas, Universidad Cardenal Herrera-CEU, CEU Universities San Bartolomé 55, Alfara del Patriarca, 46115 Valencia, Spain.

Departamento de Farmacia, Universidad Cardenal Herrera-CEU, CEU Universities, C/Ramón y Cajal s/n, Alfara del Patriarca, 46115 Valencia, Spain.

出版信息

Int J Mol Sci. 2022 Jan 30;23(3):1620. doi: 10.3390/ijms23031620.

Abstract

Traditionally, drug development involved the individual synthesis and biological evaluation of hundreds to thousands of compounds with the intention of highlighting their biological activity, selectivity, and bioavailability, as well as their low toxicity. On average, this process of new drug development involved, in addition to high economic costs, a period of several years before hopefully finding a drug with suitable characteristics to drive its commercialization. Therefore, the chemical synthesis of new compounds became the limiting step in the process of searching for or optimizing leads for new drug development. This need for large chemical libraries led to the birth of high-throughput synthesis methods and combinatorial chemistry. Virtual combinatorial chemistry is based on the same principle as real chemistry-many different compounds can be generated from a few building blocks at once. The difference lies in its speed, as millions of compounds can be produced in a few seconds. On the other hand, many virtual screening methods, such as QSAR (Quantitative Sturcture-Activity Relationship), pharmacophore models, and molecular docking, have been developed to study these libraries. These models allow for the selection of molecules to be synthesized and tested with a high probability of success. The virtual combinatorial chemistry-virtual screening tandem has become a fundamental tool in the process of searching for and developing a drug, as it allows the process to be accelerated with extraordinary economic savings.

摘要

传统上,药物开发涉及数百到数千种化合物的单独合成和生物评估,旨在突出其生物活性、选择性和生物利用度,以及低毒性。平均而言,除了经济成本高之外,新药开发的这个过程还需要数年的时间,希望能找到一种具有合适特性的药物来推动其商业化。因此,新化合物的化学合成成为寻找或优化新药开发先导化合物的过程中的限制步骤。对大型化学文库的需求导致了高通量合成方法和组合化学的诞生。虚拟组合化学基于与真实化学相同的原理——可以从几个构建块同时生成许多不同的化合物。区别在于其速度,因为可以在几秒钟内生成数百万种化合物。另一方面,已经开发了许多虚拟筛选方法,如 QSAR(定量结构-活性关系)、药效团模型和分子对接,以研究这些文库。这些模型允许选择要合成和测试的分子,以提高成功的概率。虚拟组合化学-虚拟筛选串联已成为寻找和开发药物过程中的基本工具,因为它可以以非凡的经济节省加速该过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/492c/8836228/d9695aaf77cc/ijms-23-01620-g001.jpg

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