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Design of novel indolicidin-derived antimicrobial peptides with enhanced cell specificity and potent anti-inflammatory activity.

机译:具有增强的细胞特异性和有效的抗炎活性的新型吲哚美定衍生的抗菌肽的设计。

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Indolicidin (IN) is a 13-residue Trp-rich antimicrobial peptide isolated from bovine neutrophils. To develop novel IN-derived antimicrobial peptides with enhanced cell specificity (therapeutic index) and potent anti-inflammatory activity, several IN analogs were synthesized by Pro-->Lys substitution. All IN analogs displayed an increase in therapeutic index by 3- to 15-fold relative to parental IN. IN and its analogs induced a significant membrane depolarization against intact Staphylococcus aureus in a dose-dependent manner and depolarized membrane potential at 5 microg/ml (MIC for S. aureus) almost completely. However, these peptides caused less than 40% calcein leakage from negatively charged EYPG/EYPE liposomes mimicking bacterial membranes at 10 microg/ml. Based on these results, we hypothesize that IN and its analogs kill microorganisms via the formation of small ion channels that permit transit of ions or protons, but not molecules as large as calcein. Furthermore, IN and its analogs induced a remarkable suppression in nitric oxide (NO) production and inducible nitric oxide synthase (iNOS) mRNA expression in LPS-stimulated mouse macrophage RAW264.7 cells. All IN analogs showed LPS-binding activity comparable to that of IN. Taken together, their potent antimicrobial, anti-inflammatory and LPS-neutralizing activities similar to those of IN, coupled with their no cytotoxicity, our designed IN analogs make excellent candidates for novel antimicrobial and anti-sepsis agents.
机译:吲哚美定(IN)是一种13残基的富含Trp的抗菌肽,从牛中性粒细胞中分离出来。为了开发具有增强的细胞特异性(治疗指数)和强大的抗炎活性的新型IN衍生抗菌肽,通过Pro-> Lys取代合成了几种IN类似物。相对于亲本IN,所有IN类似物均显示治疗指数提高3至15倍。 IN及其类似物以剂量依赖的方式诱导了针对完整金黄色葡萄球菌的显着膜去极化,并且几乎完全以5微克/毫升(金黄色葡萄球菌为MIC)去极化了膜电位。但是,这些肽导致带负电荷的EYPG / EYPE脂质体(模拟细菌膜的浓度为10微克/毫升)的钙黄绿素泄漏量不到40%。根据这些结果,我们假设IN及其类似物通过形成小的离子通道杀死微生物,这些通道允许离子或质子通过,但不能像钙黄绿素一样大。此外,IN及其类似物在LPS刺激的小鼠巨噬细胞RAW264.7细胞中显着抑制一氧化氮(NO)的产生和诱导型一氧化氮合酶(iNOS)mRNA的表达。所有IN类似物均显示出与IN相当的LPS结合活性。综上所述,我们设计的IN类似物具有与IN相似的有效抗菌,消炎和LPS中和活性,并且无细胞毒性,因此它们是新型抗菌和防腐剂的极佳候选者。

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