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一种高度大孔可生物降解复合组织工程支架的制备与表征

Preparation and characterization of a highly macroporous biodegradable composite tissue engineering scaffold.

作者信息

Guan Limin, Davies John E

机构信息

Institute of Biomaterials and Biomedical Engineering, University of Toronto, 4 Taddle Creek Road, Toronto, Ontario M5S 3G9, Canada.

出版信息

J Biomed Mater Res A. 2004 Dec 1;71(3):480-7. doi: 10.1002/jbm.a.30173.

Abstract

A unique composite scaffold for bone-tissue engineering applications has been prepared by combining biodegradable poly(lactide-co-glycolide) (PLGA) with bioresorbable calcium phosphate (CaP) cement particles through the process of particle fusion and phase separation/particle leaching. The scaffold is characterized by a highly interconnected macroporosity, with macropores of 0.8-1.8 mm and porosities ranging from 81% to 91%, and improved mechanical properties with respect to the polymer alone, producing excellent dimensional stability. The scaffold properties were controlled by adjusting the processing parameters, including PLGA molar mass and concentration, CaP/PLGA ratio, and porogen size. The differences in mechanical properties between dry, wet/room temperature, and wet/37 degrees C testing conditions, of which the latter are more relevant for materials to be employed in a biological milieu, were investigated. Thus, a scaffold made from PLGA IV 1.13, PLGA concentration 12.5%, and CaP/PLGA ratio 2:1 exhibited significantly different compressive strengths of 0.16 MPa and 0.04 MPa when tested under dry and wet/37 degrees C conditions, respectively. .

摘要

一种用于骨组织工程应用的独特复合支架,是通过颗粒融合以及相分离/颗粒沥滤过程,将可生物降解的聚(丙交酯-共-乙交酯)(PLGA)与可生物吸收的磷酸钙(CaP)水泥颗粒相结合制备而成。该支架的特点是具有高度相互连通的大孔隙率,大孔尺寸为0.8 - 1.8毫米,孔隙率在81%至91%之间,并且相对于单独的聚合物,其机械性能有所改善,具有出色的尺寸稳定性。通过调整加工参数来控制支架性能,这些参数包括PLGA摩尔质量和浓度、CaP/PLGA比例以及致孔剂尺寸。研究了干燥、湿/室温以及湿/37℃测试条件下的机械性能差异,其中后一种条件与在生物环境中使用的材料更为相关。因此,由PLGA IV 1.13、PLGA浓度12.5%以及CaP/PLGA比例2:1制成的支架,在干燥和湿/37℃条件下测试时,其抗压强度分别显著不同,为0.16兆帕和0.04兆帕。

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