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用于再生医学的生物支架:体内重塑机制

Biologic scaffolds for regenerative medicine: mechanisms of in vivo remodeling.

作者信息

Londono Ricardo, Badylak Stephen F

机构信息

McGowan Institute for Regenerative Medicine, University of Pittsburgh, 450 Technology Drive, Suite 300, Pittsburgh, PA, 15219, USA,

出版信息

Ann Biomed Eng. 2015 Mar;43(3):577-92. doi: 10.1007/s10439-014-1103-8. Epub 2014 Sep 12.

Abstract

Successful regenerative medicine strategies for functional tissue reconstruction include the in situ placement of acellular materials composed of the extracellular matrix (ECM) or individual components of the ECM. The composition and ultrastructure of these materials vary depending on multiple factors including the tissue source and species from which the materials are harvested, the methods of manufacture, the efficiency of decellularization, post-processing modifications such as chemical cross-linking or solubilization, and the methods of terminal sterilization. Appropriately configured materials have the ability to modulate different stages of the healing response by inducing a shift from a process of inflammation and scar tissue formation to one of constructive remodeling and functional tissue restoration. The events that facilitate such a dramatic change during the biomaterial-host interaction are complex and necessarily involve both the immune system and mechanisms of stem cell recruitment, growth, and differentiation. The present manuscript reviews the composition of biologic scaffolds, the methods and recommendations for manufacture, the mechanisms of the biomaterial-host interaction, and the clinical application of this regenerative medicine approach.

摘要

用于功能性组织重建的成功再生医学策略包括原位放置由细胞外基质(ECM)或ECM的单个成分组成的无细胞材料。这些材料的组成和超微结构因多种因素而异,包括材料采集的组织来源和物种、制造方法、脱细胞效率、化学交联或溶解等后处理修饰以及终端灭菌方法。适当配置的材料能够通过诱导从炎症和瘢痕组织形成过程向建设性重塑和功能性组织恢复过程的转变来调节愈合反应的不同阶段。在生物材料与宿主相互作用期间促进这种巨大变化的事件是复杂的,并且必然涉及免疫系统以及干细胞募集、生长和分化的机制。本手稿综述了生物支架的组成、制造方法和建议、生物材料与宿主相互作用的机制以及这种再生医学方法的临床应用。

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