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基于铋的化合物和纳米粒子的药物化学和生物医学应用。

Medicinal chemistry and biomedical applications of bismuth-based compounds and nanoparticles.

机构信息

Department of Chemistry, Royal College of Surgeons in Ireland, 123 St. Stephens Green, Dublin 2, Ireland.

SSPC, Synthesis and Solid State Pharmaceutical Centre, Ireland.

出版信息

Chem Soc Rev. 2021 Nov 1;50(21):12037-12069. doi: 10.1039/d0cs00031k.

Abstract

Bismuth as a relatively non-toxic and inexpensive metal with exceptional properties has numerous biomedical applications. Bismuth-based compounds are used extensively as medicines for the treatment of gastrointestinal disorders including dyspepsia, gastric ulcers and infections. Recently, its medicinal application was further extended to potential treatments of viral infection, multidrug resistant microbial infections, cancer and also imaging, drug delivery and biosensing. In this review we have highlighted the unique chemistry and biological chemistry of bismuth-209 as a prelude to sections covering the unique antibacterial activity of bismuth including a description of research undertaken to date to elucidate key molecular mechanisms of action against , the development of novel compounds to treat infection from microbes beyond and the significant role bismuth compounds can play as resistance breakers. Furthermore we have provided an account of the potential therapeutic application of bismuth-213 in targeted alpha therapy as well as a summary of the biomedical applications of bismuth-based nanoparticles and composites. Ultimately this review aims to provide the state of the art, highlight the untapped biomedical potential of bismuth and encourage original contributions to this exciting and important field.

摘要

铋作为一种相对无毒、廉价的金属,具有许多特殊的性质,在生物医学领域有广泛的应用。基于铋的化合物被广泛用作治疗胃肠道疾病的药物,包括消化不良、胃溃疡和感染。最近,它的药用用途进一步扩展到治疗病毒感染、多药耐药微生物感染、癌症,以及成像、药物输送和生物传感等方面。在这篇综述中,我们强调了铋-209 的独特化学和生物化学性质,作为涵盖铋的独特抗菌活性部分的前奏,其中包括描述了迄今为止为阐明针对的关键作用机制而进行的研究、开发治疗除 以外的微生物感染的新型化合物,以及铋化合物作为耐药突破者可以发挥的重要作用。此外,我们还介绍了铋-213 在靶向α治疗中的潜在治疗应用,以及基于铋的纳米粒子和复合材料在生物医学中的应用。最终,这篇综述旨在提供最新的技术,强调铋在生物医学方面尚未开发的潜力,并鼓励在这个令人兴奋和重要的领域做出原创贡献。

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