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与肝素结合的丝素蛋白促进上皮形成和伤口愈合。

Silk Fibroin Conjugated with Heparin Promotes Epithelialization and Wound Healing.

作者信息

Hama Rikako, Aytemiz Derya, Moseti Kelvin O, Kameda Tsunenori, Nakazawa Yasumoto

机构信息

Department of Biotechnology and Life Science, Graduate School of Engineering, Tokyo University of Agriculture and Technology, 2-24-16 Naka-Cho, Koganei 184-8588, Japan.

Silk Materials Research Unit, Institute of Agrobiological Sciences, National Agriculture and Food Research Organization, 1-2 Owashi, Tsukuba 305-8634, Japan.

出版信息

Polymers (Basel). 2022 Aug 30;14(17):3582. doi: 10.3390/polym14173582.

Abstract

Silk fibroin (SF) has attracted attention as a base biomaterial that could be suitable in many applications because of its shape and structure. Highly functional SF has been developed to promote tissue regeneration with heparin conjugation. However, the hydrophobic three-dimensional structure of SF makes it difficult to bind to high-molecular-weight and hydrophilic compounds such as heparin. In this study, sufficient heparin modification was achieved using tyrosine residues as reaction points to improve cellular response. As it was considered that there was a trade-off between the improvement of water wettability and cell responsiveness induced by heparin modification, influences on the structure, and mechanical properties, the structure and physical properties of the SF conjugated with heparin were extensively evaluated. Results showed that increased amounts of heparin modification raised heparin content and water wettability on film surfaces even though SF formation was not inhibited. In addition, the proliferation of endothelial cells and fibroblasts were enhanced when a surface with sufficient heparin assumed its potential in assisting wound healing. This research emphasizes the importance of material design focusing on the crystal structure inherent in SF in the development of functionalized SF materials.

摘要

丝素蛋白(SF)因其形状和结构而作为一种适用于多种应用的基础生物材料受到关注。已开发出具有高功能性的SF,通过与肝素结合来促进组织再生。然而,SF的疏水三维结构使其难以与肝素等高分子量亲水性化合物结合。在本研究中,以酪氨酸残基作为反应点实现了充分的肝素修饰,以改善细胞反应。由于认为肝素修饰引起的水润湿性改善与细胞反应性之间存在权衡,且对结构和力学性能有影响,因此对与肝素共轭的SF的结构和物理性质进行了广泛评估。结果表明,即使SF的形成未受抑制,增加肝素修饰量也会提高膜表面的肝素含量和水润湿性。此外,当具有足够肝素的表面发挥其在辅助伤口愈合方面的潜力时,内皮细胞和成纤维细胞的增殖会增强。本研究强调了在功能化SF材料开发中,关注SF固有晶体结构的材料设计的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2497/9460566/40c2875c2174/polymers-14-03582-g001.jpg

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