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首页> 外文期刊>Biocontrol Science >The Antimicrobial Activity, Hydrophobicity and Toxicity of Tri(n-Alkyl)sulfoniums and Tris(n-Alkylphenyl) sulfoniums, and Their Relationships
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The Antimicrobial Activity, Hydrophobicity and Toxicity of Tri(n-Alkyl)sulfoniums and Tris(n-Alkylphenyl) sulfoniums, and Their Relationships

机译:三( n -烷基)ulf和三( n -烷基苯基)sulf的抗菌活性,疏水性和毒性及其关系

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??The antimicrobial activity, hydrophobicity and toxicity of tri(n -alkyl)sulfoniums (TASs) and tris{4-(n -alkylphenyl)}sulfoniums (TAPSs), and their relationships were investigated. The antimicrobial activity against the tested strains tended to increase with the increase in the sulfonium ClogP between 7 and approximately 12 and beyond that decreased with the increase in the ClogP in both sulfoniums. The antimicrobial activities of the most TAPSs were higher than those of the TASs at similar ClogP values. The mutagenicity of the TASs and the TAPSs was judged to be negative. The acute oral toxicity decreased with the increase in the ClogP in the both sulfoniums. The skin irritation/corrosion increased with the increase in the ClogP between approximately 7 and 12, and beyond that decreased or similar with the increase in the ClogP in both sulfoniums. It is noted that the acute toxicity and the skin irritation/corrosion of the TAPSs were clearly higher than those of the TASs at a similar ClogP. In comparing the sulfoniums to representative quaternary ammonium compounds (QACs), the antimicrobial activities of the some sulfoniums were higher than those of QACs and the toxicity was lower. Therefore, some sulfoniums could be utilized in many fields instead of the presently and widely-used QACs.
机译:研究了三(I n-烷基)ulf(TAS)和三{4-(I-烷基苯基)} s(TAPS)的抗微生物活性,疏水性和毒性,以及它们之间的关系。随着7 ClogP的增加,在7至大约12之间,对测试菌株的抗菌活性趋于增加,而在两个sulf中,随着ClogP的增加,抗菌活性均下降。在相似的ClogP值下,大多数TAPS的抗菌活性高于TAS。 TAS和TAPS的致突变性被判定为阴性。两种oral的ClogP均增加,急性口服毒性降低。在两个sulf中,皮肤刺激/腐蚀随着ClogP的增加而增加,大约在7至12之间,而随着ClogP的增加,皮肤刺激/腐蚀也随之减少或类似。值得注意的是,在类似的ClogP情况下,TAPS的急性毒性和皮肤刺激性/腐蚀性明显高于TAS。将comparing与代表性的季铵化合物(QAC)进行比较,某些sulf的抗菌活性高于QAC,且毒性较低。因此,某些sulf可以代替目前广泛使用的QAC应用于许多领域。

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