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Decellularized extracellular matrix microparticles as a vehicle for cellular delivery in a model of anastomosis healing

机译:脱细胞的细胞外基质微粒作为吻合愈合模型中细胞递送的载体

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摘要

Extracellular matrix (ECM) materials from animal and human sources have become important materials for soft tissue repair. Microparticles of ECM materials have increased surface area and exposed binding sites compared to sheet materials. Decellularized porcine peritoneum was mechanically dissociated into 200 mu m microparticles, seeded with fibroblasts and cultured in a low gravity rotating bioreactor. The cells avidly attached and maintained excellent viability on the microparticles. When the seeded microparticles were placed in a collagen gel, the cells quickly migrated off the microparticles and through the gel. Cells from seeded microparticles migrated to and across an in vitro anastomosis model, increasing the tensile strength of the model. Cell seeded microparticles of ECM material have potential for paracrine and cellular delivery therapies when delivered in a gel carrier. (c) 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 104A: 1728-1735, 2016.
机译:来自动物和人类的细胞外基质(ECM)材料已成为修复软组织的重要材料。与片状材料相比,ECM材料的微粒具有增加的表面积和暴露的结合位点。将脱细胞的猪腹膜机械分解为200微米的微粒,接种成纤维细胞,并在低重力旋转生物反应器中培养。细胞强烈地附着在微粒上并保持出色的生存力。当将接种的微粒置于胶原凝胶中时,细胞迅速从微粒中迁移出并穿过凝胶。来自接种微粒的细胞迁移到体外吻合模型中并穿过该模型,从而提高了模型的拉伸强度。当植入凝胶载体中时,ECM材料的细胞接种微粒具有潜在的旁分泌和细胞递送疗法。 (c)2016 Wiley Periodicals,Inc.J Biomed Mater Res Part A:104A:1728-1735,2016年。

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