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首页> 外文期刊>Environmental Science and Pollution Research >Reduced ecotoxicity and improved biodegradability of cationic biocides based on ester-functionalized pyridinium ionic liquids
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Reduced ecotoxicity and improved biodegradability of cationic biocides based on ester-functionalized pyridinium ionic liquids

机译:基于酯官能化吡啶离子液体降低生态毒性及改善阳离子杀菌剂的生物降解性

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摘要

Ester-functionalized pyridinium ionic liquids (ILs), 1-decyloxycarbonylmethylpyridinium chloride (PyrDOOC(10)-Cl), and 1-dodecyloxycarbonylmethylpyridinium chloride (PyrDOOC12-Cl) have been synthesized and studied for their environmental toxicity. Simple long-chain pyridinium ILs, 1-dodecylpyridinium chloride (PyrC(12)-Cl), and commercial disinfectant cetylpyridinium chloride (CPC) were used as reference compounds. Both ester-functionalized ILs and CPC showed significantly reduced antibacterial activity compared to PyrC(12)-Cl. However, ester-functionalized ILs were found to have excellent antifungal activity towards Candida albicans fungus strains, similar to PyrC(12)-Cl and much higher than for CPC. The molecular docking of ILs in the active site of the known antifungal target N-myristoyltransferase (Nmt) C. albicans has been conducted. The obtained results indicate the possibility of ILs binding into the Nmt pocket. The high stability of the complexes, especially for PyrCOOC(10)-Cl, is ensured by hydrogen bonding, electrostatic anion-pi interactions, as well as hydrophobic pi-alkyl and alkyl interactions that was confirmed by calculated binding energy values. The acute toxicity studies of ester-functionalized ILs on D. rerio (zebrafish) hydrobiont have shown their dramatically reduced ecotoxicity compared to PyrC(12)-Cl and CPC. Thus, LD50 values of 15.2 mg/L and 16.8 mg/L were obtained for PyrCOOC(10)-Cl and PyrCOOC(12)-Cl, respectively, whereas CPC had LD50 value of 0.018 mg/L. The primary biodegradation test CEC L-33-A93 of ILs indicated an improved biodegradability of ester-functionalized compounds compared to simple long-chain ILs. Based on the obtained results, PyrCOOC(10)-Cl may be considered as very promising cationic biocide due to the combination of soft antimicrobial activity and reduced ecotoxicity, as well as improved biodegradability.
机译:已经合成了酯官能化吡啶离子液体(ILS),1-癸氧基羰基甲基吡啶氯化啶(吡啶oc(10)-Cl)和1-十二烷氧基羰基甲基吡啶鎓氯化物(Pyrd& Ooc12-Cl),并研究了它们的环境毒性。使用简单的长链吡啶IL,1-十二烷基吡啶鎓氯化氯(Pyrc(12)-Cl)和商业消毒剂甲吡啶氯化氯(CPC)作为参考化合物。与Pyrc(12)-Cl相比,酯官能化ILS和CPC均显示出显着降低的抗菌活性。然而,发现酯官能化的ILS对念珠菌(12)-Cl类似于Pyrc(12)-Cl,并且远高于CPC,酯官能化ILS具有优异的抗真菌活性。已经进行了ILS在已知的抗真菌靶N-MyristoyaLtransfarease(NMT)C. albicans的活性位点中的ILS的分子对接。所得结果表明ILS与NMT袋中结合的可能性。通过氢键,静电阴离子-PI相互作用,静电阴离子-PI相互作用以及通过计算结合能值证实的疏水性Pi-烷基和烷基相互作用,确保了络合物的高稳定性。与Pyrc(12)-Cl和CPC相比,酯官能化ILS对D.Rerio(斑马鱼)氢化物的急性毒性研究表明它们显着降低了生态毒性。因此,对于吡啶(10)-Cl和吡啶(12)-Cl,得到15.2mg / L和16.8mg / L的LD50值分别获得,而CPC具有0.018mg / L的LD50值。 ILS的主要生物降解试验CEC L-33-A93表明与简单的长链ILs相比,酯官能化化合物的生物降解性提高。基于所得结果,由于软抗微生物活性和生态毒性降低,吡啶克(10)-Cl可被认为是非常有前景的阳离子杀生物剂,以及改善生物降解性。

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