Department of Chemistry and Virginia Tech Center for Drug Discovery, Virginia Tech, 900 West Campus Drive, Blacksburg, Virginia 24061, United States.
BioBoron Research Institute, Dunarii 31B Street, 207465 Podari, Romania.
Chem Rev. 2024 Mar 13;124(5):2441-2511. doi: 10.1021/acs.chemrev.3c00663. Epub 2024 Feb 21.
Boron-containing compounds (BCC) have emerged as important pharmacophores. To date, five BCC drugs (including boronic acids and boroles) have been approved by the FDA for the treatment of cancer, infections, and atopic dermatitis, while some natural BCC are included in dietary supplements. Boron's Lewis acidity facilitates a mechanism of action via formation of reversible covalent bonds within the active site of target proteins. Boron has also been employed in the development of fluorophores, such as BODIPY for imaging, and in carboranes that are potential neutron capture therapy agents as well as novel agents in diagnostics and therapy. The utility of natural and synthetic BCC has become multifaceted, and the breadth of their applications continues to expand. This review covers the many uses and targets of boron in medicinal chemistry.
含硼化合物(BCC)已成为重要的药效团。迄今为止,已有五种 BCC 药物(包括硼酸和硼烷)获得 FDA 批准,用于治疗癌症、感染和特应性皮炎,而一些天然 BCC 则包含在膳食补充剂中。硼的路易斯酸性通过在靶蛋白的活性位点内形成可逆的共价键来促进作用机制。硼还被用于荧光团的开发,例如用于成像的 BODIPY,以及作为潜在的中子俘获治疗剂的碳硼烷,以及诊断和治疗中的新型药物。天然和合成 BCC 的用途已变得多样化,其应用范围不断扩大。本综述涵盖了硼在药物化学中的许多用途和靶标。