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首页> 外文期刊>Molecules >In Vitro Evaluation of Cytotoxicity and Permeation Study on Lysine- and Arginine-Based Lipopeptides with Proven Antimicrobial Activity
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In Vitro Evaluation of Cytotoxicity and Permeation Study on Lysine- and Arginine-Based Lipopeptides with Proven Antimicrobial Activity

机译:具有经过验证的抗微生物活性的赖氨酸和精氨酸基脂肽的细胞毒性和渗透研究的体外评价

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Owing to their excellent antimicrobial activities with a relatively low cost of production, lipopeptides are being intensively investigated as potential alternatives to popular antimicrobials. However, a critical obstacle for their application is a relatively high toxicity, hence a lot of attention has been paid to designing new molecules with optimal properties. In this study we synthesized the following lipopeptides: C-16-KK-NH2, C-16-K epsilon K-NH2, C-16-KKK-NH2, C-16-KRK-NH2, C-16-RR-NH2, C-16-RRR-NH2, (C-10)(2)-KKKK-NH2 and (C-12)(2)-KKKK-NH2. Their antimicrobial activity against representative strains of Gram-positive bacteria, Gram-negative bacteria and fungi has been confirmed. The compounds have been evaluated with regard to the safety of their application in dermatology. The cytotoxicity was determined in HaCaT keratinocytes using MTT assay, whereas Strat M membranes placed in Franz diffusion cells were used to assess their ability to skin permeation. The compounds containing one hexadecanoic acid chain turned out to be very toxic towards human keratinocytes, while lipopeptides containing two fatty acid chains (decanoic and dodecanoic) demonstrated much lower cytotoxicity. For the most promising lipopeptide, (C-10)(2)-KKKK-NH2, the measured IC50 on HaCaT keratinocytes was few times higher as compared to MICs obtained for the tested bacteria. Both groups of lipopeptides did not permeate the model membranes and therefore lack of permeation through human skin could be expected. The results of this work encourage further research on the potential application of lipopeptides with two fatty acids as novel antimicrobials.
机译:由于它们具有相对较低的生产成本相对较低的优异的抗微生物活性,脂肪肽被密集地调查了流行抗微生物的潜在替代品。然而,其应用的关键障碍是一种相对较高的毒性,因此已经支付了很多关注,以设计具有最佳性质的新分子。在该研究中,我们合成以下脂肽:C-16-KK-NH2,C-16-Kεk-NH2,C-16-KKK-NH2,C-16-KRK-NH2,C-16-RR-NH2 ,C-16-RRR-NH2,(C-10)(2)-KKKK-NH2和(C-12)(2)-KKKK-NH2。已经证实了对代表性的革兰氏菌细菌,革兰氏阴性细菌和真菌的代表性菌株的抗微生物活性。已经在皮肤科中的应用安全评估了化合物。使用MTT测定法在HaCAT角质形成细胞中测定细胞毒性,而置于Franz扩散细胞中的Strat M膜用于评估其皮肤渗透的能力。含有一种十六烷酸链的化合物对人类角质形成细胞非常有毒,而含有两条脂肪酸链(癸晶和十二烷)的脂肽表明细胞毒性大得多。对于最有前途的脂肽,(C-10)(2)--KKKK-NH2,与用于测试细菌的MIC相比,HACAT角质形成细胞上的测量IC50较高。两组脂肽并未渗透模型膜,因此可以预期通过人体皮肤缺乏渗透。这项工作的结果促进了进一步研究脂肪酸与两种脂肪酸作为新型抗微生物的潜在应用。

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