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静电纺丝细胞微环境:控制释放和支架结构的理解。

Electrospun cellular microenvironments: Understanding controlled release and scaffold structure.

机构信息

Institute for Multiphase Processes, Gottfried Wilhelm Leibniz Universitaet, Callinstrasse 36, Hannover, Germany.

出版信息

Adv Drug Deliv Rev. 2011 Apr 30;63(4-5):209-20. doi: 10.1016/j.addr.2010.12.002. Epub 2010 Dec 9.

Abstract

Electrospinning is a versatile technique in tissue engineering for the production of scaffolds. To guide tissue development, scaffolds must provide specific biochemical, structural and mechanical cues to cells and deliver them in a controlled fashion over time. Electrospun scaffold design thus includes aspects of both controlled release and structural cues. Controlled multicomponent and multiphasic drug delivery can be achieved by the careful application and combination of novel electrospinning techniques, i.e., emulsion and co-axial electrospinning. Drug distribution and polymer properties influence the resulting release kinetics. Pore size is far more relevant as a structural parameter than previously recognized. It enables cell proliferation and ingrowth, whereas fiber diameter predominantly influences cell fate. Both parameters can be exploited by combining multiple fiber types in the form of multifiber and multilayer scaffolds. Such scaffolds are required to reproduce more complex tissue structures.

摘要

静电纺丝是组织工程中生产支架的一种通用技术。为了指导组织的发育,支架必须向细胞提供特定的生化、结构和机械线索,并在一段时间内以受控的方式将其传递。因此,静电纺丝支架的设计包括控制释放和结构线索两个方面。通过精心应用和组合新型静电纺丝技术,即乳液和同轴静电纺丝,可以实现受控的多组分和多相药物传递。药物分布和聚合物性能影响释放动力学。与之前的认识相比,孔径作为结构参数更为重要。它可以促进细胞增殖和向内生长,而纤维直径主要影响细胞命运。通过将多种纤维类型组合成多纤维和多层支架,可以利用这两个参数。这种支架需要复制更复杂的组织结构。

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