Department of Otolaryngology-Head and Neck Surgery, Stanford University School of Medicine, Stanford, CA 94305.
Nanosyn Inc., Santa Clara, CA 95051.
Proc Natl Acad Sci U S A. 2020 Dec 22;117(51):32423-32432. doi: 10.1073/pnas.2013065117. Epub 2020 Dec 7.
Gentamicin is a potent broad-spectrum aminoglycoside antibiotic whose use is hampered by ototoxic side-effects. Hospital gentamicin is a mixture of five gentamicin C-subtypes and several impurities of various ranges of nonexact concentrations. We developed a purification strategy enabling assaying of individual C-subtypes and impurities for ototoxicity and antimicrobial activity. We found that C-subtypes displayed broad and potent in vitro antimicrobial activities comparable to the hospital gentamicin mixture. In contrast, they showed different degrees of ototoxicity in cochlear explants, with gentamicin C2b being the least and gentamicin C2 the most ototoxic. Structure-activity relationships identified sites in the C4'-C6' region on ring I that reduced ototoxicity while preserving antimicrobial activity, thus identifying targets for future drug design and mechanisms for hair cell toxicity. Structure-activity relationship data suggested and electrophysiological data showed that the C-subtypes both bind and permeate the hair cell mechanotransducer channel, with the stronger the binding the less ototoxic the compound. Finally, both individual and reformulated mixtures of C-subtypes demonstrated decreased ototoxicity while maintaining antimicrobial activity, thereby serving as a proof-of-concept of drug reformulation to minimizing ototoxicity of gentamicin in patients.
庆大霉素是一种强效的广谱氨基糖苷类抗生素,但由于耳毒性副作用,其应用受到限制。医院用庆大霉素是五种庆大霉素 C 型和几种不同浓度范围的杂质的混合物。我们开发了一种纯化策略,能够对单个 C 型和杂质进行耳毒性和抗菌活性分析。我们发现 C 型在体外显示出广泛而强大的抗菌活性,与医院用庆大霉素混合物相当。相比之下,它们在耳蜗外植体中表现出不同程度的耳毒性,其中庆大霉素 C2b 的耳毒性最小,庆大霉素 C2 的耳毒性最大。结构-活性关系确定了 I 环上 C4'-C6' 区域的一些位点,这些位点降低了耳毒性,同时保留了抗菌活性,从而为未来的药物设计和毛细胞毒性机制确定了目标。结构-活性关系数据表明,C 型都能结合并渗透毛细胞机械转导通道,结合越强,化合物的耳毒性越小。最后,单个 C 型和重新配方的混合物都表现出降低的耳毒性,同时保持抗菌活性,从而为药物重新配方以最大程度降低患者庆大霉素耳毒性提供了概念验证。