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用于骨修复的聚合物支架作为干细胞载体

Polymeric scaffolds as stem cell carriers in bone repair.

作者信息

Rossi Filippo, Santoro Marco, Perale Giuseppe

机构信息

Department of Chemistry, Materials and Chemical Engineering, 'Giulio Natta' Politecnico di Milano, Milan, Italy.

Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX, USA.

出版信息

J Tissue Eng Regen Med. 2015 Oct;9(10):1093-119. doi: 10.1002/term.1827. Epub 2013 Nov 6.

Abstract

Although bone has a high potential to regenerate itself after damage and injury, the efficacious repair of large bone defects resulting from resection, trauma or non-union fractures still requires the implantation of bone grafts. Materials science, in conjunction with biotechnology, can satisfy these needs by developing artificial bones, synthetic substitutes and organ implants. In particular, recent advances in polymer science have provided several innovations, underlying the increasing importance of macromolecules in this field. To address the increasing need for improved bone substitutes, tissue engineering seeks to create synthetic, three-dimensional scaffolds made from polymeric materials, incorporating stem cells and growth factors, to induce new bone tissue formation. Polymeric materials have shown a great affinity for cell transplantation and differentiation and, moreover, their structure can be tuned in order to maintain an adequate mechanical resistance and contemporarily be fully bioresorbable. This review emphasizes recent progress in polymer science that allows relaible polymeric scaffolds to be synthesized for stem cell growth in bone regeneration.

摘要

尽管骨骼在受损后具有很高的自我再生潜力,但对于因切除、创伤或骨折不愈合导致的大骨缺损,有效的修复仍需要植入骨移植材料。材料科学与生物技术相结合,可以通过开发人工骨、合成替代品和器官植入物来满足这些需求。特别是,聚合物科学的最新进展带来了多项创新,突显了大分子在该领域日益重要的地位。为了满足对改进型骨替代物日益增长的需求,组织工程致力于制造由聚合材料制成的合成三维支架,并结合干细胞和生长因子,以诱导新骨组织形成。聚合材料对细胞移植和分化表现出极大的亲和力,此外,其结构可以进行调整,以保持足够的机械抗性,同时又能完全生物可吸收。本综述着重介绍了聚合物科学的最新进展,这些进展使得能够合成可靠的聚合物支架,用于骨再生中的干细胞生长。

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