Antimicrobial Action of 2-Thioxo-3-pyrrolidinecarbaldehyde, a Major Thiolactam Compound Generated from the Pungent Principle of Radish in an Aqueous Medium.

H. Matsuoka, A. Takahashi, K. Yanagi, Y. Uda
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引用次数: 12

Abstract

2-Thioxo-3-pyrrolidinecarbaldehyde (TPC), a major product generated from the pungent principle of radish in an aqueous medium was studied to characterize the mode of antimicrobial action. The minimum inhibitory concentration (MIC) of TPC was measured using 25 strains of microbes. The MICs against fungi and bacteria ranged from 50 to 400 μg/ml, while yeasts were more resistant. The effects of TPC on the growth of spores and mycelia of Eurotium chevalieri and on the survival of Staphylococcus epidermidis were investigated, which suggested that the antifungal and antibacterial actions were due to the sporicidal and bactericidal activities. Also, the effects of TPC on uptake of oxygen and radioactive precursors for RNA, DNA, proteins, peptideglycans, and lipids were examined in S. epidermidis. A dose-dependent inhibition of the uptakes of both oxygen and the precursors was observed, suggesting that TPC caused damage to the mitochondrial functions and biosynthetic systems of the biological materials.
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2-硫氧基-3-吡咯烷二乙醛的抑菌作用。2-硫氧基-3-吡咯烷二乙醛是一种主要的硫内酰胺类化合物。
研究了萝卜在水介质中产生的主要产物2-硫氧基-3-吡咯烷二乙醛(TPC)的抑菌作用模式。用25株微生物测定了TPC的最低抑菌浓度(MIC)。对真菌和细菌的mic为50 ~ 400 μg/ml,而对酵母的抗性较强。研究了TPC对切氏欧tium chevalieri孢子和菌丝生长及表皮葡萄球菌存活的影响,表明TPC的抗真菌和抗菌作用是由于其杀孢和杀菌活性所致。此外,我们还研究了TPC对表皮葡萄球菌吸收氧和RNA、DNA、蛋白质、肽聚糖和脂质的放射性前体的影响。观察到氧和前体摄取的剂量依赖性抑制,表明TPC对生物材料的线粒体功能和生物合成系统造成损害。
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