Suppr超能文献

通过整合超分子肽基质来提高透明质酸的机械刚性。

Improving the Mechanical Rigidity of Hyaluronic Acid by Integration of a Supramolecular Peptide Matrix.

机构信息

School of Mechanical Engineering , Afeka Tel Aviv Academic College of Engineering , Tel Aviv 6910717 , Israel.

Faculty of Biomedical Engineering , Technion-Israel Institute of Technology , Haifa 3200003 , Israel.

出版信息

ACS Appl Mater Interfaces. 2018 Dec 12;10(49):41883-41891. doi: 10.1021/acsami.8b08423. Epub 2018 Oct 4.

Abstract

Hyaluronic acid (HA), a major component of the extracellular matrix, is an attractive material for various medical applications. Yet, its low mechanical rigidity and fast in vivo degradation hinder its utilization. Here, we demonstrate the reinforcement of HA by its integration with a low-molecular-weight peptide hydrogelator to produce a composite hydrogel. The formulation of HA with the fluorenylmethoxycarbonyl diphenylalanine (FmocFF) peptide, one of the most studied self-assembling hydrogel-forming building blocks, showing notable mechanical properties, resulted in the formation of stable, homogeneous hydrogels. Electron microscopy analysis demonstrated a uniform distribution of the two matrices in the composite forms. The composite hydrogels showed improved mechanical properties and stability to enzymatic degradation while maintaining their biocompatibility. Moreover, the storage modulus of the FmocFF/HA composite hydrogels reached up to 25 kPa. The composite hydrogels allowed sustained release of curcumin, a hydrophobic polyphenol showing antioxidant, anti-inflammatory, and antitumor activities. Importantly, the rate of curcumin release was modulated as a function of the concentration of the FmocFF peptide within the hydrogel matrix. This work provides a new approach for conferring mechanical rigidity and stability to HA without the need of cross-linking, thus potentially facilitating its utilization in different clinical applications, such as sustained drug release.

摘要

透明质酸(HA)是细胞外基质的主要成分,是各种医学应用的有吸引力的材料。然而,其机械刚性低和体内快速降解阻碍了其利用。在这里,我们通过将其与低分子量肽凝胶剂集成来增强 HA,以产生复合水凝胶。用芴甲氧羰基二苯丙氨酸(FmocFF)肽(最受研究的自组装水凝胶形成构建块之一)配制 HA,表现出显著的机械性能,导致形成稳定、均匀的水凝胶。电子显微镜分析表明两种基质在复合形式中均匀分布。复合水凝胶表现出改善的机械性能和对酶降解的稳定性,同时保持其生物相容性。此外,FmocFF/HA 复合水凝胶的储能模量高达 25 kPa。复合水凝胶允许姜黄素的持续释放,姜黄素是一种具有抗氧化、抗炎和抗肿瘤活性的疏水性多酚。重要的是,姜黄素的释放速率可以根据水凝胶基质中 FmocFF 肽的浓度进行调节。这项工作为赋予 HA 机械刚性和稳定性提供了一种新方法,而无需交联,从而可能促进其在不同临床应用中的利用,例如持续药物释放。

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