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静电纺纳米纤维支架基生长因子在骨组织工程中的固定化与应用

Immobilization and Application of Electrospun Nanofiber Scaffold-based Growth Factor in Bone Tissue Engineering.

作者信息

Chen Guobao, Lv Yonggang

机构信息

'111' Project Laboratory of Biomechanics and Tissue Repair, Bioengineering College, Chongqing University, 174 Shazheng Jie, Shapingba, Chongqing 400044, China.

出版信息

Curr Pharm Des. 2015;21(15):1967-78. doi: 10.2174/1381612821666150302152704.

Abstract

Electrospun nanofibers have been extensively used in growth factor delivery and regenerative medicine due to many advantages including large surface area to volume ratio, high porosity, excellent loading capacity, ease of access and cost effectiveness. Their relatively large surface area is helpful for cell adhesion and growth factor loading, while storage and release of growth factor are essential to guide cellular behaviors and tissue formation and organization. In bone tissue engineering, growth factors are expected to transmit signals that stimulate cellular proliferation, migration, differentiation, metabolism, apoptosis and extracellular matrix (ECM) deposition. Bolus administration is not always an effective method for the delivery of growth factors because of their rapid diffusion from the target site and quick deactivation. Therefore, the integration of controlled release strategy within electrospun nanofibers can provide protection for growth factors against in vivo degradation, and can manipulate desired signal at an effective level with extended duration in local microenvironment to support tissue regeneration and repair which normally takes a much longer time. In this review, we provide an overview of growth factor delivery using biomimetic electrospun nanofiber scaffolds in bone tissue engineering. It begins with a brief introduction of different kinds of polymers that were used in electrospinning and their applications in bone tissue engineering. The review further focuses on the nanofiber-based growth factor delivery and summarizes the strategies of growth factors loading on the nanofiber scaffolds for bone tissue engineering applications. The perspectives on future challenges in this area are also pointed out.

摘要

由于具有许多优点,如大的表面积与体积比、高孔隙率、优异的负载能力、易于获取和成本效益等,电纺纳米纤维已被广泛应用于生长因子递送和再生医学领域。其相对较大的表面积有助于细胞黏附和生长因子负载,而生长因子的储存和释放对于引导细胞行为以及组织形成和组织化至关重要。在骨组织工程中,生长因子有望传递刺激细胞增殖、迁移、分化、代谢、凋亡和细胞外基质(ECM)沉积的信号。由于生长因子会从靶部位快速扩散并迅速失活,大剂量给药并不总是一种有效的生长因子递送方法。因此,将控释策略整合到电纺纳米纤维中可以为生长因子提供保护,使其免受体内降解,并能在局部微环境中以有效水平控制所需信号并延长持续时间,以支持通常需要更长时间的组织再生和修复。在本综述中,我们概述了在骨组织工程中使用仿生电纺纳米纤维支架进行生长因子递送的情况。首先简要介绍了用于静电纺丝的不同种类聚合物及其在骨组织工程中的应用。该综述进一步聚焦于基于纳米纤维的生长因子递送,并总结了用于骨组织工程应用的生长因子负载在纳米纤维支架上的策略。还指出了该领域未来面临的挑战。

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