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多孔明胶水凝胶:2. 体外细胞相互作用研究。

Porous gelatin hydrogels: 2. In vitro cell interaction study.

作者信息

Dubruel Peter, Unger R, Vlierberghe Sandra Van, Cnudde Veerle, Jacobs Patric J S, Schacht Etienne, Kirkpatrick C J

机构信息

Polymer Chemistry and Biomaterials Research Group, Ghent University, Krijgslaan 281, Building S4 Bis, B-9000 Ghent, Belgium.

出版信息

Biomacromolecules. 2007 Feb;8(2):338-44. doi: 10.1021/bm0606869.

Abstract

We report on the feasibility of applying porous gelatin hydrogels, prepared by a novel and controlled cryogenic treatment, as cell-interactive scaffolds for tissue engineering applications. Despite the large number of publications on gelatin as a biomaterial, a detailed study of screening a limited number of gelatin scaffolds for their interaction with a panel of human cells has, to the best of our knowledge, not yet been published. In the present work, we have evaluated two types of porous gelatin scaffolds that differ in their pore geometry and pore size. Type I hydrogels contained top-to-bottom transverse channels (i.e. cones) with a decreasing diameter from the top (330 microm) to the bottom (20-30 microm). Type II hydrogels contained spherical pores with a diameter of 135 microm. Both types of scaffolds were evaluated by confocal laser scanning microscopy in terms of adhesion, spreading, and proliferation of human cells (endothelial, epithelial, fibroblast, glial, and osteoblast) by visualizing cells using calcein-acetoxy methyl ester as a vital stain. The results indicated that cells attached, spread, and proliferated on both types of hydrogels. In addition, the scaffolds developed can be used for the long-term culturing of human cells.

摘要

我们报告了通过一种新颖的可控低温处理制备的多孔明胶水凝胶作为组织工程应用中细胞相互作用支架的可行性。尽管关于明胶作为生物材料的出版物数量众多,但据我们所知,尚未发表过对有限数量的明胶支架与一组人类细胞相互作用进行筛选的详细研究。在本工作中,我们评估了两种类型的多孔明胶支架,它们在孔几何形状和孔径方面存在差异。I型水凝胶包含从上到下的横向通道(即圆锥体),直径从顶部(330微米)到底部(20 - 30微米)逐渐减小。II型水凝胶包含直径为135微米的球形孔。通过使用钙黄绿素乙酰氧基甲酯作为活体染料对细胞进行可视化,利用共聚焦激光扫描显微镜对两种类型的支架在人类细胞(内皮细胞、上皮细胞、成纤维细胞、神经胶质细胞和成骨细胞)的黏附、铺展和增殖方面进行了评估。结果表明,细胞在两种类型的水凝胶上均能附着、铺展并增殖。此外,所开发的支架可用于人类细胞的长期培养。

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