含有苯丙氨酸和色氨酸的精氨酸衍生阳离子表面活性剂:抗真菌活性、生物膜根除、细胞毒性和生态毒性的评价。

IF 4.4 Q1 TOXICOLOGY
M Teresa García, M Carmen Morán, Ramon Pons, Zakaria Hafidi, Elena Bautista, Sergio Vazquez, Lourdes Pérez
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引用次数: 0

摘要

由于细菌和真菌耐药性的日益出现,迫切需要新的抗菌化合物。阳离子表面活性剂是有效的抗菌剂;然而,传统的季铵化合物由于其细胞毒性、生物降解性差以及对水生生态系统的有害影响而受到越来越多的关注。虽然包括QACs在内的许多新型杀菌剂的抗菌效果已经得到了广泛的研究,但同时评估抗菌活性、哺乳动物细胞毒性和生态毒性的综合实验策略仍然有限。最近的研究报道了含有精氨酸-苯丙氨酸和精氨酸-色氨酸的氨基酸基表面活性剂具有优异的抗菌活性,并且是可生物降解的。这项工作扩展了它们的生物学特性,以评估它们的潜在应用。具体来说,我们研究了头部基团结构和疏水片段的变化如何影响抗真菌和抗生物膜活性。我们还评估了这些结构参数如何影响细胞毒性和生态毒性。这些化合物显示出对多种念珠菌菌株具有很强的活性。它们的疏水性主要影响抗真菌效果和细胞毒性。重要的是,这些表面活性剂在非细胞毒性浓度下表现出有效的抗菌和抗生物膜作用。值得注意的是,它们的水生毒性明显低于传统的QACs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Arginine-Derived Cationic Surfactants Containing Phenylalanine and Tryptophan: Evaluation of Antifungal Activity, Biofilm Eradication, Cytotoxicity, and Ecotoxicity.

Arginine-Derived Cationic Surfactants Containing Phenylalanine and Tryptophan: Evaluation of Antifungal Activity, Biofilm Eradication, Cytotoxicity, and Ecotoxicity.

Arginine-Derived Cationic Surfactants Containing Phenylalanine and Tryptophan: Evaluation of Antifungal Activity, Biofilm Eradication, Cytotoxicity, and Ecotoxicity.

Arginine-Derived Cationic Surfactants Containing Phenylalanine and Tryptophan: Evaluation of Antifungal Activity, Biofilm Eradication, Cytotoxicity, and Ecotoxicity.

Due to the growing emergence of bacterial and fungal resistance, there is an urgent need for novel antimicrobial compounds. Cationic surfactants are effective antimicrobial agents; however, traditional quaternary ammonium compounds (QACs) are increasingly scrutinized due to their cytotoxicity, poor biodegradability, and harmful effects on aquatic ecosystems. While the antimicrobial efficacy of many new biocides, including QACs, has been extensively studied, comprehensive experimental strategies that simultaneously assess antimicrobial activity, mammalian cell toxicity, and ecotoxicity remain limited. Recent studies have reported that amino-acid-based surfactants containing arginine-phenylalanine and arginine-tryptophan exhibit excellent antibacterial activity and are biodegradable. This work extends their biological characterization to evaluate their potential applications. Specifically, we examined how variations in the head group architecture and hydrophobic moiety influence antifungal and antibiofilm activity. We also assessed how these structural parameters impact cytotoxicity and ecotoxicity. These compounds demonstrated strong activity against a wide range of Candida strains. Their hydrophobic character primarily influenced both antifungal efficacy and cytotoxicity. Importantly, these surfactants exhibited potent antimicrobial and antibiofilm effects at non-cytotoxic concentrations. Notably, their aquatic toxicity was significantly lower than that of conventional QACs.

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来源期刊
CiteScore
5.30
自引率
1.70%
发文量
21
审稿时长
10 weeks
期刊介绍: The Journal of Xenobiotics publishes original studies concerning the beneficial (pharmacology) and detrimental effects (toxicology) of xenobiotics in all organisms. A xenobiotic (“stranger to life”) is defined as a chemical that is not usually found at significant concentrations or expected to reside for long periods in organisms. In addition to man-made chemicals, natural products could also be of interest if they have potent biological properties, special medicinal properties or that a given organism is at risk of exposure in the environment. Topics dealing with abiotic- and biotic-based transformations in various media (xenobiochemistry) and environmental toxicology are also of interest. Areas of interests include the identification of key physical and chemical properties of molecules that predict biological effects and persistence in the environment; the molecular mode of action of xenobiotics; biochemical and physiological interactions leading to change in organism health; pathophysiological interactions of natural and synthetic chemicals; development of biochemical indicators including new “-omics” approaches to identify biomarkers of exposure or effects for xenobiotics.
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