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丝素蛋白/羟基磷灰石复合材料与兔骨髓基质细胞共培养在节段性骨缺损愈合中的应用。

The use of silk fibroin/hydroxyapatite composite co-cultured with rabbit bone-marrow stromal cells in the healing of a segmental bone defect.

作者信息

Wang G, Yang H, Li M, Lu S, Chen X, Cai X

机构信息

Department of Orthopaedics, The First Affiliated Hospital of Soochow University, Suzhou, China.

出版信息

J Bone Joint Surg Br. 2010 Feb;92(2):320-5. doi: 10.1302/0301-620X.92B2.22602.

Abstract

In a rabbit model we investigated the efficacy of a silk fibroin/hydroxyapatite (SF/HA) composite on the repair of a segmental bone defect. Four types of porous SF/HA composites (SF/HA-1, SF/HA-2, SF/HA-3, SF/HA-4) with different material ratios, pore sizes, porosity and additives were implanted subcutaneously into Sprague-Dawley rats to observe biodegradation. SF/HA-3, which had characteristics more suitable for a bone substitute based on strength and resorption was selected as a scaffold and co-cultured with rabbit bone-marrow stromal cells (BMSCs). A segmental bone defect was created in the rabbit radius. The animals were randomised into group 1 (SF/HA-3 combined with BMSCs implanted into the bone defect), group 2 (SF/HA implanted alone) and group 3 (nothing implanted). They were killed at four, eight and 12 weeks for visual, radiological and histological study. The bone defects had complete union for group 1 and partial union in group 2, 12 weeks after operation. There was no formation of new bone in group 3. We conclude that SF/HA-3 combined with BMSCs supports bone healing and offers potential as a bone-graft substitute.

摘要

在兔模型中,我们研究了丝素蛋白/羟基磷灰石(SF/HA)复合材料对节段性骨缺损修复的疗效。将四种具有不同材料比例、孔径、孔隙率和添加剂的多孔SF/HA复合材料(SF/HA-1、SF/HA-2、SF/HA-3、SF/HA-4)皮下植入Sprague-Dawley大鼠体内以观察生物降解情况。基于强度和吸收特性,选择更适合作为骨替代物的SF/HA-3作为支架,并与兔骨髓基质细胞(BMSC)共培养。在兔桡骨制造节段性骨缺损。将动物随机分为1组(将SF/HA-3与BMSC联合植入骨缺损处)、2组(单独植入SF/HA)和3组(不植入任何物质)。在术后4周、8周和12周处死动物,进行肉眼、放射学和组织学研究。术后12周,1组骨缺损完全愈合,2组部分愈合。3组未形成新骨。我们得出结论,SF/HA-3与BMSC联合可促进骨愈合,并有望作为骨移植替代物。

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