利奈唑啉
化学
对接(动物)
金黄色葡萄球菌
细胞毒性
立体化学
抗菌剂
抗菌活性
结核分枝杆菌
生物活性
微生物学
细菌
体外
组合化学
抗菌剂
链球菌
抗生素
分子模型
分枝杆菌
结构-活动关系
肺炎链球菌
最小抑制浓度
拉伤
MTT法
数量结构-活动关系
抗药性
葡萄球菌
肺结核
生物化学
作者
G.D. García-Olaiz,Eleazar Alcántar-Zavala,Adrián Ochoa‐Terán,A. Cabrera,Raquel Muñiz‐Salazar,Julio Montes‐Ávila,Alex J. Salazar‐Medina,Efraín Alday,Carlos Velázquez,José L. Medina‐Franco,Rafael Laniado-Laborı́n
标识
DOI:10.1016/j.bioorg.2019.103483
摘要
Worldwide studies towards development of new drugs with a lower rate in emergence of bacterial resistance have been conducted. The molecular docking analysis gives a possibility to predict the activity of new compounds before to perform their synthesis. In this work, the molecular docking analysis of 64 Linezolid dipeptide-type analogues was performed to predict their activity. The most negative scores correspond to six Fmoc-protected analogues (9as, 9bs, 9bu, 10as, 10ax and 10ay) where Fmoc group interacts in PTC for Linezolid. Twenty-six different Fmoc-protected Linezolid dipeptide-type analogues 9(as-bz) and 10(as-bz) were synthesized and tested in antimicrobial experiments. Compounds 9as, 9ay, 9ax, 10as, 10ay and 9bu show significant activity against group A Streptococcus clinical isolated. Analogue 10ay also display high activity against ATCC 25923 Staphylococcus aureus strain and MRSA-3, MRSA-4 and MRSA-5 clinical isolates, with MIC values lower than Linezolid. The highest activity against multidrug-resistant clinical isolates of Mycobacterium tuberculosis was exhibited by 9bu. Finally, a cytotoxicity assay with ARPE-19 human cells revealed a non-cytotoxic effect of 9bu and 10ay at 50 and 25 μM, respectively.
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