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N-Acetylated Gemini Surfactants: Synthesis, Surface-Active Properties, Antifungal Activity, and Ecotoxicity Bioassays

机译:N-乙酰化双子表面活性剂:合成,表面活性,抗真菌活性和生态毒性生物测定

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摘要

A series of N-acetylated cationic gemini surfactants (3a-e) having dimeric structures derived from tertiary amines were synthesized. Their antifungal potency and surface properties were determined. It also studied the acute toxicity of the molecule with the best performance and the best water solubility (3e) through Chlorella vulgaris and Daphnia magna bioassays. The results were compared to those obtained for a commercially available reference compound 2-(thiocyanomethylthio) benzothiazole (TCMTB). Parameters such as surface tension (γCMC), critical micelle concentration (CMC), surface excess concentration (Γ), and area per molecule (A) were determined. The resulting values indicated that the five gemini surfactants are characterized by good surface-active and self-aggregation properties. All surfactants were tested to evaluate their antifungal activity. Six fungal strains were used to conduct the study. The minimum inhibitory concentration (MIC) value was measured by the fungal growth inhibition. The results of the MICs were compared with two commercially available reference compounds (Fluconazole and TCMTB). The least active molecule was 3e, but 3b and 3d were found to be the most potent compounds with a similar activity for all strains. Candida albicans was the most sensitive one. In contrast, Aspergillus niger was resistant. Ecotoxicity of gemini 3e was assessed: the commercial formulation (TCMTB) was between three and four orders of magnitude more toxic than the gemini one for the biological species tested.
机译:合成了具有源自叔胺的二聚结构的一系列N-乙酰化阳离子双子表面活性剂(3a-e)。测定了它们的抗真菌效力和表面性质。它还通过寻常小球藻和大水蚤生物测定法研究了具有最佳性能和最佳水溶性(3e)的分子的急性毒性。将结果与可商购的参考化合物2-(硫氰基甲硫基)苯并噻唑(TCMTB)进行比较。确定诸如表面张力(γCMC),临界胶束浓度(CMC),表面过量浓度(Γ)和每分子面积(A)之类的参数。所得值表明这五种双子表面活性剂的特征在于良好的表面活性和自聚集性能。测试所有表面活性剂以评估其抗真菌活性。使用六种真菌菌株进行研究。最小抑制浓度(MIC)值通过真菌生长抑制来测量。 MIC的结果与两种市售参考化合物(氟康唑和TCMTB)进行了比较。活性最低的分子是3e,但发现3b和3d是对所有菌株都具有相似活性的最有效的化合物。白色念珠菌是最敏感的一种。相反,黑曲霉具有抗性。评估了双子座3e的生态毒性:对于所测试的生物物种,商业配方(TCMTB)的毒性比双子座3e高三至四个数量级。

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