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Superior Antifouling Performance of a Zwitterionic Peptide Compared to an Amphiphilic, Non-Ionic Peptide

机译:两性离子肽与两亲性非离子肽相比具有出色的防污性能

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The aim of this study was to explore the influence of amphiphilic and zwitterionic structures on the resistance of protein adsorption to peptide self-assembled monolayers (SAMs) and gain insight into the associated antifouling mechanism. Two kinds of cysteine-terminated heptapeptides were studied. One peptide had alternating hydrophobic and hydrophilic residues with an amphiphilic sequence of CYSYSYS. The other peptide (CRERERE) was zwitterionic. Both peptides were covalently attached onto gold substrates via gold thiol bond formation. Surface plasmon resonance analysis results showed that both peptide SAMs had ultralow or low protein adsorption amounts of 1.97-11.78 ng/cm(2) in the presence of single proteins. The zwitterionic peptide showed relatively higher antifouling ability with single proteins and natural complex protein media. We performed molecular dynamics simulations to understand their respective antifouling behaviors. The results indicated that strong surface hydration of peptide SAMs contributes to fouling resistance by impeding interactions with proteins. Compared to the CYSYSYS peptide, more water molecules were predicted to form hydrogen-bonding interactions with the zwitterionic CRERERE peptide, which is in agreement with the antifouling test results. These findings reveal a clear relation between peptide structures and resistance to protein adsorption, facilitating the development of novel peptide-containing antifouling materials.
机译:这项研究的目的是探索两亲和两性离子结构对蛋白质吸附对肽自组装单分子膜(SAMs)的抵抗力的影响,并深入了解相关的防污机理。研究了两种半胱氨酸末端的七肽。一种肽具有交替的疏水性和亲水性残基,具有CYSYSYS的两亲序列。另一个肽(CRERERE)是两性离子的。两种肽均通过金硫醇键形成共价附于金底物上。表面等离振子共振分析结果表明,两种肽SAM在单个蛋白的存在下均具有1.97-11.78 ng / cm(2)的超低或低蛋白吸附量。两性离子肽对单一蛋白质和天然复杂蛋白质介质显示出相对较高的防污能力。我们进行了分子动力学模拟,以了解它们各自的防污行为。结果表明,肽SAM的强表面水合通过阻止与蛋白质的相互作用而有助于提高抗污性。与CYSYSYS肽相比,预计会有更多水分子与两性离子CRERERE肽形成氢键相互作用,这与防污测试结果相符。这些发现揭示了肽结构与对蛋白质吸附的抗性之间的明确关系,从而促进了新型含肽防污材料的开发。

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