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Cationic gemini compounds with antifungal activity and wood preservation potentiality

机译:阳离子双子座具有抗真菌活性和木材保存潜力的化合物

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Three gemini compounds were synthesized and characterized in the search of an alternative eco-friendly wood preservative. Synthesis was carried out from N,N-dimethylamines and 2-O-acetyl-1,3-dichloropropane as linker molecule. All the synthesized molecules were adequately purified and characterized by TLC, GC, FT-IR and NMR. Their tensioactive properties were determined. All three efficiently lowered the surface tension in aqueous solutions with critical micelle concentrations ranging from 0.53 to 1.34 mM. Their antifungal activities were evaluated from a broth dilution test against four yeasts and two filamentous fungi and were compared to commercially available references: Fluconazole and TCMTB (2-thiocyanomethylthiobenzothiazole). All gemini compounds displayed good antifungal activity; particularly, the gemini derived from N,N-dimethyldodecylamine, with even better performance than Fluconazole against Saccharomyces cerevisiae, Aspergillus niger and Alternaria sp., and than TCMTB against the last one. The environmental impact of the gemini compound that showed the highest antifungal activity was analyzed through ecotoxicity tests, using Chlorella vulgaris and Daphnia magna as model organisms. It was several orders of magnitude less toxic than TCMTB. Finally, wood preservation efficacy studies were carried out on pine (Pinus ponderosa) samples. Results demonstrated accomplished resistance against brown rot fungi, comparable to a widespread commercial hydrosoluble preservative. (C) 2018 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:合成了三种Gemini化合物,并在寻找替代的环保木材防腐剂。合成由N,N-二甲胺和2-O-乙酰基-1,3-二氯丙酸作为接头分子进行。所有合成的分子都被充分纯化并通过TLC,GC,FT-IR和NMR表征。确定了它们的张力活性性质。所有三个有效地降低了水溶液中的表面张力,临界胶束浓度范围为0.53至1.34mm。它们的抗真菌活性从肉汤稀释试验评估了四种酵母和两种丝状真菌,并与市售的参考文献进行了比较:氟康唑和TCMTB(2-硫氰酸噻吩噻唑)。所有Gemini化合物都显示出良好的抗真菌活动;特别是,Gemini衍生自N,N-二甲基二甲胺胺,甚至比氟康唑对抗酿酒酵母,患有葡萄糖葡萄球菌和alercaria sp的氟康唑甚至更好。,而不是Tcmtb对阵最后一个。通过生态毒性试验,使用小球藻和Daphnia Magna作为模型生物,通过生态毒性试验分析了显示出最高抗真菌活性的Gemini化合物的环境影响。这比TCMTB毒性不大数量级。最后,在松树(松叉胶刺)样品上进行木材保存疗效研究。结果证明了抗褐腐真菌的成分抗性,与广泛的商业加氢溶解防腐剂相当。 (c)2018年韩国工程和工程化学学会。 elsevier b.v出版。保留所有权利。

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