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首页> 外文期刊>Polymer Degradation and Stability >Preparation and mechanical behavior of PLGAano-BCP composite scaffolds during in-vitro degradation for bone tissue engineering
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Preparation and mechanical behavior of PLGAano-BCP composite scaffolds during in-vitro degradation for bone tissue engineering

机译:PLGA /纳米BCP复合支架的体外降解过程中的制备及其力学性能

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摘要

In this paper, the yield strength and elastic modulus of Poly (lactide-co-glycolide) (PLGA) and PLGA/ nano-biphasic calcium phosphate (nBCP) composite scaffolds, before and during in-vitro degradation, have been evaluated. Composite scaffolds were made by using PLGA matrix and 10-50 wt.% nBCP powder as the reinforcement material. All scaffolds, with more than 89% porosity, were fabricated by thermally-induced phase separation (TIPS). During in-vitro degradation (0-8 weeks), the PLGABCP scaffolds showed both more weight loss and better mechanical properties as compared to neat PLGA scaffolds. The PLGABCP scaffolds with 30 wt.% nBCP illustrated the highest value of yield strength among the composite scaffolds, before and after degradation, until 6 weeks. After 8 weeks, the yield strength values were very poor and close to each other. The values of elastic modulus for all samples were less than the half of their initial values after 6 weeks. However, after 8 weeks, the elastic moduli of all samples reduced to negligible values.
机译:在本文中,评估了丙交酯-乙交酯-乙交酯(PLGA)和PLGA /纳米双相磷酸钙(nBCP)复合支架在体外降解之前和降解过程中的屈服强度和弹性模量。通过使用PLGA基质和10-50重量%的nBCP粉末作为增强材料来制造复合支架。所有孔隙率超过89%的支架都是通过热诱导相分离(TIPS)制成的。在体外降解期间(0-8周),与纯PLGA支架相比,PLGA / nBCP支架显示出更多的重量减轻和更好的机械性能。具有30wt。%nBCP的PLGA / nBCP支架在降解之前和之后直至6周显示出在复合支架中屈服强度的最高值。 8周后,屈服强度值非常差并且彼此接近。 6周后,所有样品的弹性模量值均小于其初始值的一半。但是,在8周后,所有样品的弹性模量均降至可忽略不计的值。

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