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首页> 外文期刊>ACS Omega >Understanding the Uptake Mechanism and Interaction Potential of the Designed Peptide and Preparation of Composite Fiber Matrix for Fungal Keratitis
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Understanding the Uptake Mechanism and Interaction Potential of the Designed Peptide and Preparation of Composite Fiber Matrix for Fungal Keratitis

机译:了解设计肽的摄取机理和相互作用潜力及对真菌角膜炎复合纤维基质的制备

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The conventional use of antibiotics for the treatment of infectious keratitis currently faces two major challenges: poor drug penetration and the emergence of antibiotic resistance in microbial strains. Cell-penetrating peptides (CPPs) with antimicrobial properties have the potential to address these challenges. However, their mode of action, mechanism of uptake, and interaction potential have not been explored in detail. In this study, we probed the mechanism of uptake and interaction potential of our previously designed peptides (VRF005 and VRF007). Our results showed that VRF005 undergoes direct translocation and induces a rough membrane surface, whereas VRF007 undergoes clathrin-mediated endocytic uptake. The gel shift assay showed that VRF005 is bound to genomic DNA, whereas VRF007 is bound to chitin and β-d-glucan. Gene expression studies revealed the effect of peptide VRF005 on Candida albicans transcription. Molecular docking and simulations showed that VRF005 forms noncovalent interactions (such as H-bonding and water bridges) with natamycin. It exhibited synergistic antifungal activity in the colony-forming assay. VRF005, functionalized in the polycaprolactone fiber matrix, showed sustained delivery and antifungal activity.
机译:常规使用抗生素治疗感染性角膜炎目前面临的两个主要挑战:药物渗透差和微生物菌株中抗生素抗性的出现。具有抗微生物性质的细胞穿透肽(CPP)具有解决这些挑战的可能性。然而,他们的作用方式,吸收机制和互动潜力尚未详细探讨。在这项研究中,我们探讨了我们先前设计的肽的摄取和相互作用潜力的机制(VRF005和VRF007)。我们的结果表明,VRF005经历了直接易位并诱导粗膜表面,而VRF007经历克拉仑介导的内吞摄取。凝胶移位测定显示VRF005与基因组DNA结合,而VRF007与邻丁蛋白和β-D-葡聚糖结合。基因表达研究揭示了肽VRF005对念珠菌蛋白转录的影响。分子对接和模拟表明,VRF005与纳米霉素形成非共价相互作用(如H键合和水桥)。它在菌落形成测定中表现出协同抗真菌活性。在聚己内酯纤维基质中官能化的VRF005显示出持续递送和抗真菌活性。

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