Delivery of stromal cell-derived factor 1α for in situ tissue regeneration

Abstract In situ tissue regeneration approach aims to exploit the body’s own biological resources and reparative capability and recruit host cells by utilizing cell-instructive biomaterials. In order to immobilize and release bioactive factors in biomaterials, it is important to engineer the load ef...

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Bibliographic Details
Main Authors: Wen Zhao, Kaixiang Jin, Jiaojiao Li, Xuefeng Qiu, Song Li
Format: Article
Language:English
Published: BMC 2017-06-01
Series:Journal of Biological Engineering
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13036-017-0058-3
Description
Summary:Abstract In situ tissue regeneration approach aims to exploit the body’s own biological resources and reparative capability and recruit host cells by utilizing cell-instructive biomaterials. In order to immobilize and release bioactive factors in biomaterials, it is important to engineer the load effectiveness, release kinetics and cell recruiting capabilities of bioactive molecules by using suitable bonding strategies. Stromal cell-derived factor 1α (SDF-1α) is one of the most potent chemokines for stem cell recruitment, and SDF-1α-loaded scaffolds have been used for the regeneration of many types of tissues. This review summarizes the strategies to incorporate SDF-1α into scaffolds, including direct loading or adsorption, polyion complexes, specific heparin-mediated interaction and particulate system, which may be applied to the immobilization of other chemokines or growth factors. In addition, we discuss the application of these strategies in the regeneration of tissues such as blood vessel, myocardium, cartilage and bone.
ISSN:1754-1611