Ferraz Ricardo, Silva Dário, Dias Ana Rita, Dias Vitorino, Santos Miguel M, Pinheiro Luís, Prudêncio Cristina, Noronha João Paulo, Petrovski Željko, Branco Luís C
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.
Pharmaceutics. 2020 Mar 2;12(3):221. doi: 10.3390/pharmaceutics12030221.
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.
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。