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分子量对胶原-海藻酸钠支架理化性能和生物学性能的影响。

Influences of Molecular Weights on Physicochemical and Biological Properties of Collagen-Alginate Scaffolds.

机构信息

Institute of Food Science, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.

Department of Food Science and Technology, Pukyong National University, 45 Yongso-ro, Nam-gu, Busan 48513, Korea.

出版信息

Mar Drugs. 2021 Feb 2;19(2):85. doi: 10.3390/md19020085.

Abstract

For tissue engineering applications, biodegradable scaffolds containing high molecular weights (MW) of collagen and sodium alginate have been developed and characterized. However, the properties of low MW collagen-based scaffolds have not been studied in previous research. This work examined the distinctive properties of low MW collagen-based scaffolds with alginate unmodified and modified by subcritical water. Besides, we developed a facile method to cross-link water-soluble scaffolds using glutaraldehyde in an aqueous ethanol solution. The prepared cross-linked scaffolds showed good structural properties with high porosity (~93%) and high cross-linking degree (50-60%). Compared with collagen (6000 Da)-based scaffolds, collagen (25,000 Da)-based scaffolds exhibited higher stability against collagenase degradation and lower weight loss in phosphate buffer pH 7.4. Collagen (25,000 Da)-based scaffolds with modified alginate tended to improve antioxidant capacity compared with scaffolds containing unmodified alginate. Interestingly, in vitro coagulant activity assay demonstrated that collagen (25,000 Da)-based scaffolds with modified alginate (C25-A63 and C25-A21) significantly reduced the clotting time of human plasma compared with scaffolds consisting of unmodified alginate. Although some further investigations need to be done, collagen (25,000 Da)-based scaffolds with modified alginate should be considered as a potential candidate for tissue engineering applications.

摘要

对于组织工程应用,已经开发和表征了含有高分子量(MW)胶原蛋白和海藻酸钠的可生物降解支架。然而,在以前的研究中,没有研究低 MW 胶原支架的特性。本工作研究了未经修饰和经亚临界水修饰的低 MW 胶原支架的独特特性。此外,我们开发了一种使用戊二醛在水性乙醇溶液中交联水溶性支架的简便方法。所制备的交联支架具有良好的结构性能,具有高孔隙率(~93%)和高交联度(50-60%)。与基于胶原蛋白(6000 Da)的支架相比,基于胶原蛋白(25,000 Da)的支架对胶原蛋白酶降解的稳定性更高,在 pH 7.4 的磷酸盐缓冲液中的失重率更低。与含有未修饰海藻酸钠的支架相比,含有修饰海藻酸钠的胶原蛋白(25,000 Da)支架具有更高的抗氧化能力。有趣的是,体外凝血活性测定表明,与含有未修饰海藻酸钠的支架相比,修饰海藻酸钠的胶原蛋白(25,000 Da)支架(C25-A63 和 C25-A21)显著缩短了人血浆的凝血时间。尽管还需要进一步研究,但含修饰海藻酸钠的胶原蛋白(25,000 Da)支架应被视为组织工程应用的潜在候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bf7/7912951/e7f008931ccf/marinedrugs-19-00085-g001.jpg

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