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一种用于控制细胞行为以促进组织再生的聚乳酸-羟基乙酸共聚物(PLGA)膜。

A PLGA membrane controlling cell behaviour for promoting tissue regeneration.

作者信息

Owen G Rh, Jackson J, Chehroudi B, Burt H, Brunette D M

机构信息

Department of Oral Biological & Medical Sciences, Faculty of Dentistry, 2199 Westbrook Mall, University of British Columbia, Vancouver, Canada V6T 1Z3.

出版信息

Biomaterials. 2005 Dec;26(35):7447-56. doi: 10.1016/j.biomaterials.2005.05.055.

Abstract

Barrier membranes are used in periodontal applications with the aim of supporting bone regeneration by physically blocking migrating epithelial cells. We report a membrane design that has a surface topography that can inhibit epithelial cell migration and proliferation on one side and a topography that guides osteoblast migration to a desired area. A PLGA copolymer (85:15) blended with MePEG, was cast to have surfaces with smooth, grooved or sandblasted-acid-etched topographies. Epithelial cells spread on smooth surfaces after 24 h, and cell numbers increased after 5 days. Cells on the smooth surface exhibited no preferred direction of migration. On the sandblasted-acid-etched topography epithelial cells spread but the cell number did not significantly increase after 5 days. Cell migration was inhibited on this surface. Osteoblasts spread on both grooved and smooth surfaces and cell number increased after 5 days on all surfaces. The cells that adhered in the grooves migrated preferentially in the direction of the grooves. Positive alkaline phosphatase staining was seen on all surfaces within 4 weeks and positive Von Kossa nodule staining within 6 weeks. These results suggest that surface topographies replicated on opposite sides of a biodegradable polymers membrane can inhibit proliferation and migration of the epithelial cells, and promote proliferation and directional migration of osteoblasts. Addition of appropriate surface topographies to membranes used in guided tissue regeneration has the possibility of improving clinical performance in periodontal tissue regeneration procedures.

摘要

屏障膜用于牙周治疗,目的是通过物理阻挡迁移的上皮细胞来支持骨再生。我们报告了一种膜设计,其表面形貌一侧可抑制上皮细胞迁移和增殖,另一侧可引导成骨细胞迁移至所需区域。将与甲氧基聚乙二醇(MePEG)共混的聚乳酸-羟基乙酸共聚物(PLGA,85:15)浇铸成型,使其表面具有光滑、带凹槽或喷砂-酸蚀的形貌。上皮细胞在24小时后在光滑表面铺展,5天后细胞数量增加。光滑表面上的细胞没有表现出优先的迁移方向。在喷砂-酸蚀形貌表面,上皮细胞铺展,但5天后细胞数量没有显著增加。该表面上的细胞迁移受到抑制。成骨细胞在带凹槽和光滑表面均能铺展,5天后所有表面的细胞数量均增加。黏附在凹槽中的细胞优先沿凹槽方向迁移。4周内在所有表面均可见碱性磷酸酶阳性染色,6周内可见冯·科萨结节阳性染色。这些结果表明,在可生物降解聚合物膜的相对两侧复制的表面形貌可抑制上皮细胞的增殖和迁移,并促进成骨细胞的增殖和定向迁移。在引导组织再生中使用的膜上添加适当的表面形貌有可能改善牙周组织再生程序的临床效果。

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