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用于组织工程血管移植物的胶原蛋白/平滑肌细胞掺入弹性支架。

A collagen/smooth muscle cell-incorporated elastic scaffold for tissue-engineered vascular grafts.

机构信息

Biomaterials Research Center, Korea Institute of Science and Technology, P.O. Box 131, Cheongryang, Seoul 130-650, South Korea.

出版信息

J Biomater Sci Polym Ed. 2009;20(11):1645-60. doi: 10.1163/156856208X386237.

Abstract

Biodegradable tubular scaffolds have been developed for vascular graft application. This study was focused to improve the adhesion and proliferation of vascular smooth muscle cells (SMCs) in a tubular scaffold. Tubular scaffolds (ID 4 mm, OD 6 mm) were fabricated from a biodegradable elastic polymer, poly(L-lactide-co-epsilon-caprolactone) (PLCL) (50:50, M(n) 1.58 x 10(5)), by an extrusion/particulate leaching method. SMCs suspended in a collagen solution were infiltrated in tubular PLCL scaffolds under vacuum and incubated for 1 h at 37 degrees C to form a collagenous gel. Results from SEM image analysis showed that collagen was infiltrated into the inside of the scaffolds. Cell adhesion and proliferation rate increased in collagen/SMC-incorporated tubular PLCL scaffolds as compared with the scaffolds in which only SMCs were seeded. From SEM image and histological analysis, we further found that SMCs grew on the inside as well as on the surface of collagen/SMCs-incorporated scaffolds and the cells continued to grow as a monolayer on collagen fibers. In particular, cell proliferation and elastin contents were the highest in a PLCL scaffold with 50-100 microm pore size than any other scaffolds used in this experiment. A collagen/SMC-incorporated PLCL scaffold may support SMC growth and functions and can be used as a scaffold for tissue engineering to facilitate small-diameter vascular-tissue formation.

摘要

可生物降解的管状支架已被开发用于血管移植物应用。本研究旨在提高管状支架中血管平滑肌细胞(SMC)的黏附和增殖。管状支架(内径 4mm,外径 6mm)由可生物降解的弹性聚合物聚(L-丙交酯-共-ε-己内酯)(PLCL)(50:50,Mn 1.58×10(5))通过挤出/颗粒溶出法制备。将悬浮在胶原溶液中的 SMC 经真空渗透到管状 PLCL 支架中,并在 37°C 下孵育 1 小时,形成胶原凝胶。SEM 图像分析结果表明胶原渗透到支架内部。与仅接种 SMC 的支架相比,胶原/SMC 掺入管状 PLCL 支架中的细胞黏附和增殖率增加。从 SEM 图像和组织学分析中,我们进一步发现 SMC 不仅在胶原/SMC 掺入的支架内部生长,而且在其表面生长,细胞在胶原纤维上继续单层生长。特别是,在具有 50-100μm 孔径的 PLCL 支架中,细胞增殖和弹性蛋白含量比本实验中使用的任何其他支架都高。胶原/SMC 掺入的 PLCL 支架可支持 SMC 生长和功能,可作为组织工程支架,促进小直径血管组织形成。

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