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Syntheses andIn VitroBiological Activity of Some Derivatives of C-9154 Antibiotic

机译:C-9154抗生素的某些衍生物的合成及体外生物活性

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In our continued attempts at designing new antibiotics based on the structure of the C-9154 antibiotic, to simultaneously improve activity and lower toxicity, an analogue to the C-9154 antibiotic and six derivatives of this analogue were synthesized. The approach was to significantly reduce the polarity of the synthesized analogue in the derivatives to achieve increased permeability across cell membranes by conversion of the highly polar carboxylic group to an ester functional group. The compounds were synthesized using a two-step reaction which involved an additional reaction between benzyl amine and maleic anhydride and then conversion of the terminal carboxylic acid functional group to an ester functional group using a thionyl chloride mediated esterification reaction. The compounds were fully characterized using Infrared, GC-MS, and 1D and 2D NMR experiments. Thein vitrobiological activity of the compounds showed that the derivatives were more active than the analogues as was anticipated with minimum inhibitory concentration in the range 0.625–5 μg/mL. The analogue had minimum inhibitory concentration in the range 2.5–10 μg/mL. These values are significantly better than that obtained for the original C-9154 antibiotic which had activity in the range 10–>100 μg/mL.
机译:在我们继续尝试基于C-9154抗生素的结构设计新抗生素以同时提高活性和降低毒性的同时,合成了C-9154抗生素的类似物和该类似物的六种衍生物。该方法是显着降低衍生物中合成类似物的极性,以通过将高极性羧基转化为酯官能团来提高细胞膜的通透性。使用两步反应合成化合物,所述两步反应包括苄胺和马来酸酐之间的另外的反应,然后使用亚硫酰氯介导的酯化反应将末端羧酸官能团转化为酯官能团。使用红外,GC-MS以及1D和2D NMR实验对化合物进行了全面表征。这些化合物的体外生物学活性表明,与预期的类似物相比,其衍生物的活性更高,其最低抑菌浓度为0.625-5μg/ mL。该类似物的最低抑菌浓度为2.5-10μg/ mL。这些值显着优于活性范围在10–>100μg/ mL的原始C-9154抗生素获得的值。

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