4.7 Article

Improving mechanical and biological properties of macroporous HA scaffolds through composite coatings

期刊

COLLOIDS AND SURFACES B-BIOINTERFACES
卷 74, 期 1, 页码 159-166

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.colsurfb.2009.07.012

关键词

Porous hydroxyapatite scaffold; Composite coating; Poly(D,L-lactide); Calcium sulfate; Chondroitin sulfate

资金

  1. National Natural Science Foundation of China [30870630]
  2. 2007 Cultivating Fund of Key Program for Scientific and Technological Innovation (MOE) [704039]
  3. Southwest Jiaotong University, China

向作者/读者索取更多资源

Interconnected porous hydroxyapatite (HA) scaffolds are widely used for bone repair and replacement, owing to their ability to support the adhesion, transfer, proliferation and differentiation of cells. In the present study, the polymer impregnation approach was adopted to produce porous HA scaffolds with three-dimensional (3D) porous structures. These scaffolds have an advantage of highly interconnected porosity(approximate to 85%) buta drawback of poor mechanical strength. Therefore, the as-prepared HA scaffolds were lined with composite polymer coatings in order to improve the mechanical properties and retain its good bioactivity and biocompatibility at the same time. The composite coatings were based on poly(D,L-lactide) (PDLLA) polymer solutions, and contained single component or combination of HA, calcium sulfate (CS) and chondroitin sulfate (ChS) powders. The effects of composite coatings on scaffold porosity, microstructure, mechanical property, in vitro mineralizing behavior, and cell attachment of the resultant scaffolds were investigated. The results showed that the scaffolds with composite coatings resulted in significant improvement in both mechanical and biological properties while retaining the 3D interconnected porous structure. The in vitro mineralizing behaviors were mainly related to the compositions of CS and ChS powders in the composite coatings. Excellent cell attachments were observed on the pure HA scaffold as well as the three types of composite scaffolds. These composite scaffolds with improved mechanical properties and bioactivities are promising bone substitutes in tissue engineering fields. (C) 2009 Elsevier B.V. All rights reserved.

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