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交联胶原-羟磷灰石支架的制备及组织工程学评价。

Development and evaluation of cross-linked collagen-hydroxyapatite scaffolds for tissue engineering.

机构信息

a Department of Biotechnology and Medical Engineering , National Institute of Technology , Rourkela , 769008 , Odisha , India .

出版信息

J Biomater Sci Polym Ed. 2013;24(18):2031-44. doi: 10.1080/09205063.2013.822247. Epub 2013 Aug 1.

Abstract

This study examines the tissue engineering potential of type I collagen cross-linked in the presence of hydroxyapatite (HAp). Scaffolds were prepared by controlled freezing followed by lyophilization of composite mixtures of collagen and HAp in acetic acid, followed by cross-linking with 0.3% glutaraldehyde. Scaffolds of three ratios were prepared, corresponding to collagen/HAp ratios of 1:2, 1:4, and 1:6. The scaffolds were evaluated for their microstructure, chemical and physical properties, swelling behavior, mechanical strength, biodegradability hemocompatability, cytocompatibility, and histopathology following subcutaneous implantation in Sprague Dawley rats. The collagen/HAp matrices showed a smaller pore size of 10-40 μm compared to 50-100 μm for pure collagen scaffolds. Pure collagen showed a mechanical strength of 0.25 MPa, and the value almost doubled for cross-linked composites with collagen/HAp ratio 1:6. The improvement in mechanical strength corresponded to a decrease in swelling and enzymatic degradation (measured by resistance to collagenases). FTIR spectra results in conjunction with scanning electron micrographs showed that cross-linking in the presence of HAp did not significantly alter the structure of collagen. MTT assay and calcein AM staining revealed prominent and healthy growth of mesenchymal stem cells in both the pure collagen as well as collagen:HAp composites of ratio 1:2. In vivo implantation in Sprague Dawley rats showed an initial acute inflammatory response during days 3 and 7, followed by a chronic, macrophage-mediated inflammatory response on days 14 and 28. Overall, a cross-linked collagen/HAp composite scaffold of ratio 1:2 was identified as having potential for further development in tissue engineering.

摘要

本研究考察了在羟磷灰石(HAp)存在下交联 I 型胶原蛋白的组织工程潜力。通过在醋酸中冷冻控制和随后冻干胶原蛋白和 HAp 的复合混合物来制备支架,然后用 0.3%戊二醛进行交联。制备了三种比例的支架,对应于胶原蛋白/HAp 比例为 1:2、1:4 和 1:6。评估了支架的微观结构、化学和物理性质、溶胀行为、机械强度、生物降解性、血液相容性、细胞相容性和皮下植入 Sprague Dawley 大鼠后的组织病理学。与纯胶原蛋白支架的 50-100μm 相比,胶原蛋白/HAp 基质的孔径较小,为 10-40μm。纯胶原蛋白的机械强度为 0.25MPa,而胶原蛋白/HAp 比例为 1:6 的交联复合材料的机械强度几乎增加了一倍。机械强度的提高与溶胀和酶降解(通过对胶原蛋白酶的抵抗力来测量)的降低相对应。FTIR 谱结果结合扫描电子显微镜照片表明,在 HAp 存在下交联并未显著改变胶原蛋白的结构。MTT 测定和钙黄绿素 AM 染色显示,间充质干细胞在纯胶原蛋白和胶原蛋白:HAp 复合材料(比例为 1:2)中均表现出明显而健康的生长。在 Sprague Dawley 大鼠体内植入显示,在第 3 天和第 7 天期间存在初始急性炎症反应,随后在第 14 天和第 28 天期间存在慢性、巨噬细胞介导的炎症反应。总体而言,交联胶原蛋白/HAp 复合材料的比例为 1:2,被认为具有进一步开发组织工程的潜力。

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