含氟离子液体的生态毒性和溶血活性

N. S. Vieira, A. Oliveira, J. Araújo, M. M. Gaspar, A. B. Pereiro
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引用次数: 4

摘要

离子液体(ILs)的特定任务设计已经在一些工业和制药应用中出现。氟标签等于或长于4个碳原子的碘化液体家族,即氟化离子液体(FILs),将碘化液体的最佳性质与全氟化合物的最佳性质结合起来,目前正在为若干特定目的而设计。在制药领域,迫切需要寻找新的抗菌剂来克服与抗菌素耐药性相关的问题。然后,本工作的主要目的是评估FILs的环境影响和作为抗stutzeri假单胞菌的能力。除了其罕见的致病性,这些细菌也被用作生物修复剂来处理一些污染地点。然后,确定哪些FILs具有抗菌性能,哪些不影响细菌生长是很重要的。并通过溶血活性对其生物相容性进行了评价,表明其在制药领域的应用又向前迈进了一步。结果表明,高浓度FILs具有较低的生态毒性和较高的生物相容性。[C8C1Im][CF3SO3]被认为是最有希望用作抗菌剂的化合物,因为它可以在与红细胞生存能力相适应的浓度下阻止细菌的生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ecotoxicity and Hemolytic Activity of Fluorinated Ionic Liquids
The task-specific design of ionic liquids (ILs) has emerged in several industrial and pharmaceutical applications. The family of ILs with fluorine tags equal to or longer than four carbon atoms, the fluorinated ionic liquids (FILs), combine the best properties of ILs with the ones of perfluorinated compounds, and are being designed for several specific purposes. In the pharmaceutical field, there is an urgency to search for novel antibacterial agents to overcome problems associated to antimicrobial resistances. Then, the main purpose of this work is to evaluate the environmental impact and the ability of FILs to be used as antibacterial agents against Pseudomonas stutzeri bacteria. Beyond its rare pathogenicity, these bacteria are also used as a bioremediation agent to treat several contamination sites. Then, it is important to determine which FILs have antibacterial properties, and which do not impact the bacterial growth. The biocompatibility of FILs was also evaluated through their hemolytic activity and represent a step forward the application of FILs in pharmaceutical applications. The results proved that high concentrations of FILs can have a reduced ecotoxicity and a high biocompatibility. [C8C1Im][CF3SO3] was identified as the most promising compound to be used as an antibacterial agent since it prevents the growth of bacteria at concentrations compatible with the red blood cells’ viability.
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