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Hydrophobicity of Antifungal β-Peptides Is Associated with Their Cytotoxic Effect on In Vitro Human Colon Caco-2 and Liver HepG2 Cells

机译:抗真菌β肽的疏水性与其对人结肠Caco-2和肝HepG2细胞的细胞毒作用相关

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摘要

The widespread distribution of fungal infections, with their high morbidity and mortality rate, is a global public health problem. The increase in the population of immunocompromised patients combined with the selectivity of currents treatments and the emergence of drug-resistant fungal strains are among the most imperative reasons to develop novel antifungal formulations. Antimicrobial β-peptides are peptidomimetics of natural antimicrobial peptides (AMPs), which have been proposed as developmental platforms to enhance the AMPs selectivity and biostability. Their tunability allows the design of sequences with remarkable activity against a wide spectrum of microorganisms such as the human pathogenic Candida spp., both in planktonic and biofilm morphology. However, the β-peptide’s effect on surrounding host cells remains greatly understudied. Assessments have mainly relied on the extent of hemolysis that a candidate peptide is able to cause. This work investigated the in vitro cytotoxicity of various β-peptides in the Caco-2 and HepG2 mammalian cell lines. Results indicated that the cytotoxic effect of the β-peptides was influenced by cell type and was also correlated to structural features of the peptide such as hydrophobicity. We found that the selectivity of the most hydrophobic β-peptide was 2–3 times higher than that of the least hydrophobic one, for both cell types according to the selectivity index parameter (IC50/MIC). The IC50 of Caco-2 and HepG2 increased with hydrophobicity, which indicates the importance of testing putative therapeutics on different cell types. We report evidence of peptide-cell membrane interactions in Caco-2 and HepG2 using a widely studied β-peptide against C. albicans.
机译:真菌感染的高发病率和高死亡率是其广泛分布的一个全球公共卫生问题。免疫功能低下患者人数的增加与当前治疗方法的选择性以及耐药真菌菌株的出现是开发新型抗真菌制剂的最必要的原因。抗菌素β肽是天然抗菌肽(AMPs)的拟肽,已被提议作为增强AMPs选择性和生物稳定性的开发平台。它们的可调谐性使得可以设计出在浮游生物和生物膜形态学上对多种微生物(如人类致病性念珠菌)具有显着活性的序列。但是,β肽对周围宿主细胞的作用仍被大大研究。评估主要依靠候选肽能够引起的溶血程度。这项工作研究了Caco-2和HepG2哺乳动物细胞系中各种β肽的体外细胞毒性。结果表明,β-肽的细胞毒性作用受细胞类型的影响,并且还与该肽的结构特征如疏水性相关。我们发现,根据选择性指数参数(IC50 / MIC),两种细胞类型中疏水性最高的β肽的选择性是疏水性最低的β-肽的2至3倍。 Caco-2和HepG2的IC50随着疏水性的增加而增加,这表明测试不同细胞类型的假定疗法的重要性。我们报告了使用广泛研究的针对白色念珠菌的β-肽在Caco-2和HepG2中的肽-细胞膜相互作用的证据。

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