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硼作为生物医学科学中“神奇元素”的现代角色:化学视角。

The modern role of boron as a 'magic element' in biomedical science: chemistry perspective.

机构信息

Biomimetic Peptide Engineering Laboratory, Department of Chemistry, Indian Institute of Technology, Ropar, Punjab, 140001, India.

出版信息

Chem Commun (Camb). 2021 Dec 16;57(100):13629-13640. doi: 10.1039/d1cc05481c.

Abstract

Boron was misconstrued as a toxic element for animals, which retarded the growth of boron-containing drug discovery in the last century. Nevertheless, modern applications of boronic acid derivatives are attractive in biomedical applications after the declaration that boron is a 'probable essential element' for humans by the WHO. Additionally, the approval of five boronic acid-containing drugs by the FDA has vastly impacted the use of boron in medicinal chemistry, chemical biology, drug delivery, biomaterial exploration, pharmacological improvements, and nutrition. This review article focuses on the chemistries attributed to boronic acids at physiological pH, enticing chemists to multidisciplinary applications. Prospective uses of boronic acid in pharma and chemical biology, along with prospects and challenges, are also part of the deliberation. Understanding these fundamental chemistries and interactions of boronic acid in biological systems will enable solving future challenges in drug discovery and executing space-age applications.

摘要

硼曾被误解为一种对动物有毒的元素,这阻碍了上个世纪含硼药物发现的发展。然而,在世界卫生组织(WHO)宣布硼是“可能的必需元素”之后,硼酸衍生物的现代应用在生物医学领域具有吸引力。此外,FDA 批准了五种含硼酸的药物,这极大地推动了硼在药物化学、化学生物学、药物输送、生物材料探索、药理学改进和营养方面的应用。本文综述了在生理 pH 值下硼酸所具有的化学性质,吸引了化学家在多学科领域的应用。硼酸在制药和化学生物学方面的预期用途以及前景和挑战也是讨论的一部分。了解硼酸在生物系统中的这些基本化学性质和相互作用,将有助于解决药物发现中的未来挑战,并实现太空时代的应用。

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