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基于青霉素G和阿莫西林水解产物衍生物的离子液体及有机盐对抗耐药菌的合成与抗菌活性

Synthesis and Antibacterial Activity of Ionic Liquids and Organic Salts Based on Penicillin G and Amoxicillin hydrolysate Derivatives against Resistant Bacteria.

作者信息

Ferraz Ricardo, Silva Dário, Dias Ana Rita, Dias Vitorino, Santos Miguel M, Pinheiro Luís, Prudêncio Cristina, Noronha João Paulo, Petrovski Željko, Branco Luís C

机构信息

Ciências Químicas e das Biomoléculas (CQB) e Centro de Investigação em Saúde e Ambiente (CISA), Escola Superior de Saúde do Instituto Politécnico do Porto, 4400-330 Porto, Portugal.

LAQV-REQUIMTE, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal.

出版信息

Pharmaceutics. 2020 Mar 2;12(3):221. doi: 10.3390/pharmaceutics12030221.

Abstract

The preparation and characterization of ionic liquids and organic salts (OSILs) that contain anionic penicillin G [secoPen] and amoxicillin [seco-Amx] hydrolysate derivatives and their in vitro antibacterial activity against sensitive and resistant and strains is reported. Eleven hydrolyzed β-lactam-OSILs were obtained after precipitation in moderate-to-high yields via the neutralization of the basic ammonia buffer of antibiotics with different cation hydroxide salts. The obtained minimum inhibitory concentration (MIC) data of the prepared compounds showed a relative decrease of the inhibitory concentrations (RDIC) in the order of 100 in the case of [COHMIM][seco-Pen] against sensitive ATCC25923 and, most strikingly, higher than 1000 with [CPyr][seco-Amx] against methicillin-resistant (MRSA) ATCC 43300. These outstanding in vitro results showcase that a straightforward transformation of standard antibiotics into hydrolyzed organic salts can dramatically change the pharmaceutical activity of a drug, including giving rise to potent formulations of antibiotics against deadly bacteria strains.

摘要

本文报道了含有阴离子型青霉素G[裂解青霉素]和阿莫西林[裂解阿莫西林]水解产物衍生物的离子液体和有机盐(OSILs)的制备、表征及其对敏感菌和耐药菌的体外抗菌活性。通过用不同的阳离子氢氧化物盐中和抗生素的碱性氨缓冲液,以中等到高产率沉淀后,得到了11种水解β-内酰胺-OSILs。所制备化合物的最低抑菌浓度(MIC)数据显示,对于[COHMIM][裂解青霉素],其对敏感菌ATCC25923的抑制浓度相对降低(RDIC)约为100倍;最显著的是,对于[CPyr][裂解阿莫西林],其对耐甲氧西林金黄色葡萄球菌(MRSA)ATCC 43300的抑制浓度相对降低超过1000倍。这些出色的体外结果表明,将标准抗生素直接转化为水解有机盐可以显著改变药物的药理活性,包括产生针对致命细菌菌株的强效抗生素制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6470/7150922/acb133e78b13/pharmaceutics-12-00221-g001.jpg

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