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聚乙醇酸/聚对苯二甲酸丁二醇酯支架结构对组织工程软骨组成的影响。

The effect of PEGT/PBT scaffold architecture on the composition of tissue engineered cartilage.

作者信息

Malda J, Woodfield T B F, van der Vloodt F, Wilson C, Martens D E, Tramper J, van Blitterswijk C A, Riesle J

机构信息

IsoTis S.A., Bilthoven, The Netherlands.

出版信息

Biomaterials. 2005 Jan;26(1):63-72. doi: 10.1016/j.biomaterials.2004.02.046.

Abstract

A highly interconnecting and accessible pore network has been suggested as one of a number of prerequisites in the design of scaffolds for tissue engineering. In the present study, two processing techniques, compression-molding/particulate-leaching (CM), and 3D fiber deposition (3DF), were used to develop porous scaffolds from biodegradable poly(ethylene glycol)-terephthalate/poly(butylene terephthalate) (PEGT/PBT) co-polymers with varying pore architectures. Three-dimensional micro-computed tomography (microCT) was used to characterize scaffold architectures and scaffolds were seeded with articular chondrocytes to evaluate tissue formation. Scaffold porosity ranged between 75% and 80%. Average pore size of tortuous CM scaffolds (182 microm) was lower than those of organized 3DF scaffolds (525 microm). The weight ratio of glycosaminoglycans (GAG)/DNA, as a measure of cartilage-like tissue formation, did not change after 14 days of culture whereas, following subcutaneous implantation, GAG/DNA increased significantly and was significantly higher in 3DF constructs than in CM constructs, whilst collagen type II was present within both constructs. In conclusion, 3DF PEGT/PBT scaffolds create an environment in vivo that enhances cartilaginous matrix deposition and hold particular promise for treatment of articular cartilage defects.

摘要

高度互连且易于通达的孔网络被认为是组织工程支架设计中的若干先决条件之一。在本研究中,采用压缩成型/颗粒沥滤(CM)和三维纤维沉积(3DF)两种加工技术,由具有不同孔结构的可生物降解聚(乙二醇)-对苯二甲酸酯/聚(丁二醇对苯二甲酸酯)(PEGT/PBT)共聚物制备多孔支架。使用三维微计算机断层扫描(microCT)对支架结构进行表征,并将关节软骨细胞接种到支架上以评估组织形成情况。支架孔隙率在75%至80%之间。曲折的CM支架的平均孔径(182微米)低于规整的3DF支架(525微米)。作为软骨样组织形成指标的糖胺聚糖(GAG)/DNA重量比在培养14天后没有变化,而在皮下植入后,GAG/DNA显著增加,且3DF构建体中的GAG/DNA显著高于CM构建体,同时两种构建体中均存在II型胶原。总之,3DF PEGT/PBT支架在体内创造了一个增强软骨基质沉积的环境,对治疗关节软骨缺损具有特殊的前景。

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