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用于组织工程的生物活性和可生物降解材料及支架的制造与评估。

Manufacture and evaluation of bioactive and biodegradable materials and scaffolds for tissue engineering.

作者信息

Wang M, Chen L J, Ni J, Weng J, Yue C Y

机构信息

School of Mechanical and Production Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798.

出版信息

J Mater Sci Mater Med. 2001 Oct-Dec;12(10-12):855-60. doi: 10.1023/a:1012899318688.

Abstract

For tissue regeneration and tissue engineering applications, a number of bioactive and biodegradable composites, either porous or non-porous, were fabricated. The newly developed materials included tricalcium phosphate reinforced polyhydroxybutyrate and its copolymer, poorly crystallized hydroxyapatite reinforced chitin, and plasma sprayed hydroxyapatite reinforced poly(L-lactic acid). It was shown that these new materials could be successfully produced using the manufacturing techniques adopted. In vitro experiments revealed that the incorporation of bioceramic particles in biodegradable polymers rendered the composites bioactive and significantly improved the ability of composites to induce the formation of bone-like apatite on their surfaces. Degradation of composite scaffolds in simulated body fluid was observed and could be due to the simultaneous degradation of polymer matrix and dissolution of bioceramic particles.

摘要

为了用于组织再生和组织工程应用,制备了许多有生物活性和可生物降解的复合材料,有孔隙的或无孔隙的。新开发的材料包括磷酸三钙增强的聚羟基丁酸酯及其共聚物、结晶度差的羟基磷灰石增强的甲壳素,以及等离子喷涂的羟基磷灰石增强的聚(L-乳酸)。结果表明,采用所采用的制造技术可以成功制备这些新材料。体外实验表明,在可生物降解聚合物中加入生物陶瓷颗粒使复合材料具有生物活性,并显著提高了复合材料在其表面诱导形成类骨磷灰石的能力。观察到复合支架在模拟体液中的降解,这可能是由于聚合物基体的同时降解和生物陶瓷颗粒的溶解。

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