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基于生物聚合物的生物材料作为组织工程支架

Biopolymer-based biomaterials as scaffolds for tissue engineering.

作者信息

Velema James, Kaplan David

机构信息

Department of Biomedical Engineering, Tufts University, Medford, MA 02155, USA.

出版信息

Adv Biochem Eng Biotechnol. 2006;102:187-238. doi: 10.1007/10_013.

Abstract

Biopolymers as biomaterials and matrices in tissue engineering offer important options in control of structure, morphology and chemistry as reasonable substitutes or mimics of extracellular matrix systems. These features also provide for control of material functions such as mechanical properties in gel, fiber and porous scaffold formats. The inherent biodegradability of biopolymers is important to help regulate the rate and extent of cell and tissue remodeling in vitro or in vivo. The ability to genetically redesign these polymer systems to bioengineer appropriate features to regulate cell responses and interactions is another important feature that offers both fundamental insight into chemistry-structure-function relationships as well as direct utility as biomaterials. Biopolymer matrices for biomaterials and tissue engineering can directly influence the functional attributes of tissues formed on these materials and suggest they will continue play an increasingly important role in the field.

摘要

生物聚合物作为组织工程中的生物材料和基质,在控制结构、形态和化学性质方面提供了重要选择,可作为细胞外基质系统的合理替代物或模拟物。这些特性还能控制材料的功能,如凝胶、纤维和多孔支架形式的机械性能。生物聚合物固有的生物降解性对于帮助调节体外或体内细胞和组织重塑的速率和程度很重要。通过基因改造这些聚合物系统以生物工程化适当特征来调节细胞反应和相互作用的能力是另一个重要特性,它既提供了对化学-结构-功能关系的基本见解,又具有作为生物材料的直接实用性。用于生物材料和组织工程的生物聚合物基质可以直接影响在这些材料上形成的组织的功能属性,并表明它们将在该领域继续发挥越来越重要的作用。

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