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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Biosynthesis and characterization of a novel Fmoc-tetrapeptide-based hydrogel for biotechnological applications
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Biosynthesis and characterization of a novel Fmoc-tetrapeptide-based hydrogel for biotechnological applications

机译:一种新型FMOC-四肽基水凝胶的生物合成与表征生物技术应用

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摘要

The applications of peptide-based materials are currently expanding, especially in the biomedical field. The biocompatibility and biodegradability of peptide materials, as well as their ability to assemble into ordered secondary structures, are indeed ideal for biotechnological applications. However, their full potential will be exploited once novel synthetic procedures are developed for advanced applications. In this work, we explored the ability of Pseudomonas fluorescens lipase to biosynthesize the self-assembled tetrapeptide FmocPheGlyPhe(2) for tissue regeneration. In gel phase, these self-assembling tetrapeptides form a long interconnected nanofibrillar network, as is evident from SEM analysis. Mass spectrometry analysis was used to verify the in vitro formation of the tetrapeptide. Moreover, we characterized the rheological and chemico-physical properties of the obtained materials and studied their in vitro biocompatibility with mammalian fibroblasts.
机译:肽基材料的应用目前正在扩展,特别是在生物医学领域。 肽材料的生物相容性和生物降解性以及它们组装成有序二级结构的能力,是生物技术应用的理想选择。 但是,一旦开发了用于高级应用的新型合成程序,将利用其全部潜力。 在这项工作中,我们探讨了荧光荧光酶脂肪酶对生物组装的四肽Fmcphegle(2)进行组织再生能力的能力。 在凝胶相中,这些自组装四肽形成了长期互连的纳米纤维网络,从SEM分析中明显看出。 使用质谱分析来验证四肽的体外形成。 此外,我们表征了所得材料的流变和化学物理性质,并研究了与哺乳动物成纤维细胞的体外生物相容性。

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