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Synthesis and antimicrobial activity of dimethyl- and trimethyl-substituted phosphonium salts with alkyl chains of various lengths.

机译:具有不同长度烷基链的二甲基和三甲基取代的salts盐的合成和抗菌活性。

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摘要

Various phosphonium salts possessing single or double alkyl chains of various lengths (C10 to C18) were prepared as cationic biocides, and their antimicrobial activities against 11 typical strains of microorganisms including methicillin-resistant Staphylococcus aureus (MRSA) were evaluated. The phosphonium salts with long alkyl chains were found to show high levels of antimicrobial activity. Their activities depended strongly on the molecular structure, and a correlation between antimicrobial activity and molecular structure was observed. In the alkyltrimethylphosphonium salts, the bactericidal activity against S. aureus and Escherichia coli increased with increasing alkyl chain length, and the compound with the longest alkyl chain (C18) killed all the bacterial cells (ca. 10(7) cells per ml) within 30 min of contact at concentrations of 2.8 and 28 microM, respectively. In contrast, the bactericidal activity of dialkyldimethylphosphonium salts was found to decrease as the chain length of the substituents increased. It is significant that the phosphonium biocide containing double decyl groups exhibited the broadest spectrum of activity against microorganisms tested and showed the greatest bacteriostatic activity against MRSA (MIC = 0.78 micrograms/ml). Furthermore, we systematically investigated differences in bactericidal activity between the phosphonium salts and commonly available ammonium salts with the same hydrophobic structure. It was observed that the phosphonium salts showed an advantage over the corresponding ammonium salts in bactericidal activity and killing rate. For example, tetradecyltrimethyl- and didecyldimethylphosphonium chlorides killed all S. aureus organisms (ca. 10(7) cells per ml) within 60 and 30 min of exposure at 28 and 2.8 microM, respectively, while tetradecyltrimethyl- and didecyldimethylammonium chlorides which are representative of the existing cationic disinfectants did not kill all the bacteria even at the longest exposure time (120 min).
机译:制备具有不同长度的单链或双链烷基(C10至C18)的各种phospho盐作为阳离子杀菌剂,并评估了其对11种典型菌株(包括耐甲氧西林金黄色葡萄球菌(MRSA))的抗菌活性。发现具有长烷基链的phospho盐显示出高水平的抗微生物活性。它们的活性在很大程度上取决于分子结构,并且观察到抗菌活性与分子结构之间的相关性。在烷基三甲基p​​hosph盐中,对金黄色葡萄球菌和大肠杆菌的杀菌活性随烷基链长度的增加而增加,烷基链最长的化合物(C18)杀死其中的所有细菌细胞(每毫升约10(7)个细胞)分别以2.8和28 microM的浓度接触30分钟。相反,发现二烷基二甲基phosph盐的杀菌活性随着取代基的链长的增加而降低。重要的是,含有双癸基的groups杀生物剂对被测微生物表现出最广谱的活性,对MRSA表现出最大的抑菌活性(MIC = 0.78微克/毫升)。此外,我们系统地研究了salts盐和具有相同疏水结构的常用铵盐之间在杀菌活性上的差异。观察到the盐在杀菌活性和杀灭率方面显示出优于相应的铵盐的优点。例如,十四烷基三甲基和二癸基二甲基氯化dimethyl在分别暴露于28和2.8 microM的60和30分钟内杀死了所有金黄色葡萄球菌(每毫升约10(7)个细胞),而十四烷基三甲基和二癸基二甲基氯化铵代表了现有的阳离子消毒剂即使在最长的暴露时间(120分钟)下也无法杀死所有细菌。

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