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由两种可生物降解聚合物的共连续共混物制备的多孔聚(L-丙交酯)的可控制备及其性能

Controlled preparation and properties of porous poly(L-lactide) obtained from a co-continuous blend of two biodegradable polymers.

作者信息

Sarazin Pierre, Roy Xavier, Favis Basil D

机构信息

Department of Chemical Engineering Ecole Polytechnique, Centre de Recherche Appliquée Sur les Polymères, P.O. Box 6079, Station Centre-Ville, Montréal, Que., Canada H3C 3A7.

出版信息

Biomaterials. 2004 Dec;25(28):5965-78. doi: 10.1016/j.biomaterials.2004.01.065.

Abstract

This study prepares porous PLLA from a blend of two biodegradable polymers. This approach is based on a detailed and quantitative morphology control of the blends. Co-continuous blends comprised of poly(L-lactide)/poly(epsilon-caprolactone) PLLA/PCL, were prepared via melt processing. Through a judicious combination of concentration control and a subsequent annealing step it is possible to generate a wide range of sizes for the co-continuous phases. Subsequent extraction of the PCL porogen phase generates a fully interconnected porous PLLA material with a void volume between 50% and 60%. The volume average pore diameter is controlled from 1.5 to 88 microm as measured by mercury intrusion porosimetry. Through static annealing it is also possible to generate porous structures well beyond that upper limit of pore size. The upper limit of pore size reported above is in the range required for scaffolds for tissue engineering. Micrographs of porous polyglycolide and PCL derived from co-continuous blends of PLLA/polyglycolide and PCL/poly(ethylene oxide) are also shown and demonstrate the versatility and wide applicability of this preparation protocol. The porous structures produced from PLLA/PCL blends possess a high level of mechanical integrity and a degree of crystallinity between 25% and 38%. High values of both compressive modulus and strength at 10%-strain are obtained, greater than 190 and 11 MPa, respectively. The compressive modulus is found to be from 10% to 20% of that of the pure PLLA material. A series of loading studies were also carried out and it was shown that under a pressure of 40 atm applied for 1 h, the pores of a 1.5 microm porous PLLA structure were filled to approximately 80% by water. In addition, the loading of an aqueous solution of a model drug compound, bovine serum albumin (BSA), was carried out at 40 atm and the results indicate that large quantities of BSA (up to 25% of the weight of the original porous capsule) can be driven into the pores. These results indicate that the internal porous structure is accessible to aqueous solution and that this material also has potential as a substrate for controlled release applications.

摘要

本研究通过两种可生物降解聚合物的共混物制备了多孔聚乳酸(PLLA)。该方法基于对共混物详细且定量的形态控制。由聚(L-丙交酯)/聚(ε-己内酯)(PLLA/PCL)组成的双连续共混物通过熔融加工制备而成。通过浓度控制和后续退火步骤的明智组合,可以生成各种尺寸的双连续相。随后提取PCL致孔剂相可生成孔隙率在50%至60%之间的完全相互连通的多孔PLLA材料。通过压汞法测得的体积平均孔径控制在1.5至88微米之间。通过静态退火,还可以生成远超上述孔径上限的多孔结构。上述孔径上限处于组织工程支架所需的范围内。还展示了由PLLA/聚乙交酯和PCL/聚(环氧乙烷)的双连续共混物衍生的多孔聚乙交酯和PCL的显微照片,证明了该制备方案的多功能性和广泛适用性。由PLLA/PCL共混物产生的多孔结构具有高度的机械完整性,结晶度在25%至38%之间。在10%应变下获得了较高的压缩模量和强度值,分别大于190MPa和11MPa。发现压缩模量为纯PLLA材料的10%至20%。还进行了一系列负载研究,结果表明,在40个大气压下施加1小时,1.5微米多孔PLLA结构的孔隙被水填充至约80%。此外,在40个大气压下对模型药物化合物牛血清白蛋白(BSA)的水溶液进行负载,结果表明大量的BSA(高达原始多孔胶囊重量的25%)可以被驱入孔隙中。这些结果表明内部多孔结构可被水溶液接触,并且这种材料也有作为控释应用基质的潜力。

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