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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Fmoc-diphenylalanine as a suitable building block for the preparation of hybrid materials and their potential applications
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Fmoc-diphenylalanine as a suitable building block for the preparation of hybrid materials and their potential applications

机译:FMOC-二苯甲丙氨酸作为制备杂化材料及其潜在应用的合适组成块

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摘要

Due to its capability to self-assemble in self-supporting hydrogels (HG) under physiological conditions, Fmoc-FF is one of the most studied ultra-short peptide. The structural properties of the resulting hydrogel (mechanical rigidity, entanglement of the fibrillary network, and the thickness of the fibers) strictly depend on the experimental conditions used during the preparation. In the past few years, a broad range of applications in different fields, such as biomedical and industrial fields, have been proposed. However, the research on novel materials with enhanced mechanical properties, stability, and biocompatibility has brought about the development of novel Fmoc-FF-based hybrid systems, in which the ultra-short hydrogelator is combined with others entities such as polysaccharides, polymers, peptides, or organic molecules. The structural features and the potential applications of these novel hybrid materials, with particular attention to tissue engineering, drug delivery, and catalysis, are described here. The aim is to give the readers a tool to design new hybrid nanomaterials based on the Fmoc-FF dipeptide hydrogelator, with appropriate properties for specific applications.
机译:由于其在生理条件下在自源水凝胶(Hg)中自组装的能力,FMOC-FF是最多研究的超短肽之一。严格上所得水凝胶(机械刚度,纤维网的缠结,纤维厚度)的结构性能严格取决于制剂期间使用的实验条件。在过去的几年里,已经提出了不同领域的广泛应用,例如生物医学和工业领域。然而,具有增强的机械性能,稳定性和生物相容性的新材料的研究引起了新型FMOC-FF基杂化系统的发展,其中超短液晶与其他实体相结合,如多糖,聚合物,肽或有机分子。这里描述了这些新型杂化材料的结构特征和潜在的应用,特别注意组织工程,药物递送和催化。目的是为读者提供基于FMOC-FF二肽水蛋白设计新的杂合纳米材料的工具,具有特定应用的适当性质。

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