辣椒素及其衍生物的抗菌特性及其对抗抗生素耐药性的潜力——文献综述。

Samuel Füchtbauer, Soraya Mousavi, Stefan Bereswill, Markus M Heimesaat
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引用次数: 19

摘要

抗生素耐药性正在危及全球公共卫生,并使人们有理由不断担心几乎难以治愈的细菌感染。考虑到新抗生素类进入市场的局限性,探索新的、不依赖抗生素的方法来对抗细菌感染是必不可少的。因此,天然化合物的抗菌特性在药理学领域受到越来越多的关注。本文对辣椒素及其衍生物的抗菌作用进行了文献综述。研究结果表明,所研究的化合物在体外具有直接和间接的抗菌性能,这取决于所研究的细菌菌株和应用浓度;Ii .)与特定抗生素联合使用的协同抗菌效果;Iii .)通过抑制细菌外排泵来改变耐药性;Iv .)细菌毒力因子表达的衰减;v)抑制病原体诱导的免疫病理反应。总之,辣椒素及其衍生物是有前途的抗菌分子,可以补充或取代抗生素治疗策略来对抗细菌感染。然而,后续临床试验的坚实基础需要未来的调查,以探索潜在的分子机制,特别是在动物感染模型中的药物评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibacterial properties of capsaicin and its derivatives and their potential to fight antibiotic resistance - A literature survey.

Antibiotic resistance is endangering public health globally and gives reason for constant fear of virtually intractable bacterial infections. Given a limitation of novel antibiotic classes brought to market in perspective, it is indispensable to explore novel, antibiotics-independent ways to fight bacterial infections. In consequence, the antibacterial properties of natural compounds have gained increasing attention in pharmacological sciences. We here performed a literature survey regarding the antibacterial effects of capsaicin and its derivatives constituting natural compounds of chili peppers. The studies included revealed that the compounds under investigation exerted i.) both direct and indirect antibacterial properties in vitro depending on the applied concentrations and the bacterial strains under investigation; ii.) synergistic antibacterial effects in combination with defined antibiotics; iii.) resistance-modification via inhibition of bacterial efflux pumps; iv.) attenuation of bacterial virulence factor expression; and v.) dampening of pathogen-induced immunopathological responses. In conclusion, capsaicin and its derivatives comprise promising antimicrobial molecules which could complement or replace antibiotic treatment strategies to fight bacterial infections. However, a solid basis for subsequent clinical trials requires future investigations to explore the underlying molecular mechanisms and in particular pharmaceutical evaluations in animal infection models.

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