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用于组织工程应用的生物工程构建体的评估。

Evaluation of a bioengineered construct for tissue engineering applications.

机构信息

Department of Surgery, Harvard Medical School, Beth Israel Deaconess Medical Center, Boston, Massachusetts, 02215.

Charter Preclinical Services, Hudson, Massachusetts, 01749.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Aug;106(6):2345-2354. doi: 10.1002/jbm.b.34042. Epub 2017 Nov 11.

Abstract

Effective biomaterial options for tissue repair and regeneration are limited. Current biologic meshes are derived from different tissue sources and are generally sold as decellularized tissues. This work evaluated two collagen based bioengineered constructs and a commercial product in a model of abdominal full thickness defect repair. To prepare the bioengineered construct, collagen type 1 from porcine skin was isolated using an acid solubilization method. After purification, the collagen was formed into collagen sheets that were physically bonded to form a mechanically robust construct that was subsequently laser micropatterned with pores as a means to promote tissue integration (collagen only construct). A second engineered construct consisted of the aforementioned collagen construct embedded in an RGD-functionalized alginate gel that serves as a bioactive interface (collagen-alginate construct). The commercial product is a biologic mesh derived from bovine pericardium (Veritas ). We observed enhanced vascularization in the midportion of the engineered collagen-alginate construct 2 weeks after implantation. Overall, the performance of the bioengineered constructs was similar to that of the commercial product with comparable integration strength at 8 weeks. Bioengineered constructs derived from monomeric collagen demonstrate promise for a variety of load bearing applications in tissue engineering. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 2345-2354, 2018.

摘要

有效的组织修复和再生生物材料选择有限。目前的生物网片来源于不同的组织来源,通常作为去细胞组织出售。这项工作评估了两种基于胶原蛋白的生物工程构建体和一种商业产品在腹部全层缺损修复模型中的应用。为了制备生物工程构建体,使用酸溶解法从猪皮中分离 I 型胶原蛋白。在纯化后,胶原蛋白形成胶原蛋白片,通过物理结合形成机械强度高的构建体,随后用激光微图案化形成孔,以促进组织整合(仅胶原蛋白构建体)。第二种工程构建体由上述胶原蛋白构建体嵌入 RGD 功能化藻酸盐凝胶组成,作为生物活性界面(胶原蛋白-藻酸盐构建体)。商业产品是一种源自牛心包的生物网片(Veritas)。我们观察到植入后 2 周时工程胶原蛋白-藻酸盐构建体的中部血管化增强。总体而言,生物工程构建体的性能与商业产品相似,8 周时的整合强度相当。源自单体胶原蛋白的生物工程构建体在组织工程中具有多种承重应用的潜力。 ©2017 威利父子公司。J 生物医学材料研究部分 B:应用生物材料,106B:2345-2354,2018 年。

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