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Inhibitory Effects on Microbial Growth Using the Derivatives of Benzyl Phenyl Sulfide

机译:苄基苯硫醚衍生物对微生物生长的抑制作用

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We investigated the antimicrobial activities of twelve derivatives of benzyl phenyl sulfide by using Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) values against 10 microbial strains. These derivatives of benzyl phenyl sulfides were synthesized by means of the nucleophilic coupling reaction at our laboratory. MIC testing revealed that all synthetic derivatives of benzyl and 4-methoxybenzyl phenyl sulfides had no effect against the tested microbial strains. However, the compounds of 4-nitrobenzyl phenyl sulfide showed antimicrobial activity against many of the tested strains. Above all, 4-nitrobenzyl 4-chlorophenyl sulfide 11 exhibited the strongest and widest ranging inhibitory effects among the twelve synthetic compounds. We researched the antimicrobial activities of the coupling materials of sulfide. As a result, it was considered important for the expression of antimicrobial activities that the sulfide had a 4-nitrobenzyl group and 4-chlorophenyl group in the same molecule as in the case of benzyl phenyl sulfide.
机译:我们通过使用最小抑菌浓度(MIC)和最小杀菌浓度(MBC)值对10种微生物菌株研究了苄基苯硫醚的十二种衍生物的抗菌活性。这些苄基苯硫醚的衍生物是通过我们实验室的亲核偶联反应合成的。 MIC测试表明,苄基和4-甲氧基苄基苯基硫化物的所有合成衍生物均对测试的微生物菌株没有影响。然而,4-硝基苄基苯基硫醚的化合物对许多测试菌株显示出抗菌活性。最重要的是,在十二种合成化合物中,4-硝基苄基4-氯苯基硫化物11表现出最强和最广泛的抑制作用。我们研究了硫化物偶联材料的抗菌活性。结果,对于抗微生物活性的表达而言,重要的是该硫化物在与苄基苯基硫化物相同的分子中具有4-硝基苄基和4-氯苯基。

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