Sarig-Nadir Offra, Seliktar Dror
Faculty of Biomedical Engineering, Technion-Israel Institute of Technology, Haifa, Israel.
Tissue Eng Part A. 2008 Mar;14(3):401-11. doi: 10.1089/tea.2007.0029.
The purpose of this investigation was to evaluate dorsal root ganglion (DRG) cell outgrowth in a biosynthetic material made from PEGylated fibrinogen and in thrombin-polymerized fibrin hydrogels. The hypothesis stipulated that changing the composition of the biosynthetic constituents of the hydrogel can be used to better regulate the rate of DRG cell invasion when compared to reconstituted fibrin hydrogels. The composition of the biosynthetic hydrogel was controlled by the relative amount of poly(ethylene glycol) (PEG) to fibrinogen or by the fibrinogen concentration in the material. Other PEGylated protein hydrogels including PEGylated collagen and PEGylated albumin were used as positive and negative controls, respectively, for DRG cell outgrowth studies. The PEGylated fibrinogen hydrogels readily supported extensive outgrowth of sprouting neurites and invading glial cells from encapsulated DRGs in the presence of nerve growth factor. The PEGylated fibrinogen hydrogels exhibited preferential neurite invasion whereby the nonneuronal cells were observed lagging behind the invading neurites. Hydrogels containing more PEG or fibrinogen reduced the lag between the cell types and also the overall rate of the cellular invasion. Time-lapse video microscopy and quantitative cellular invasion data were used to illustrate the effectiveness of controlling DRG cell outgrowth characteristics in PEGylated fibrinogen hydrogels when compared to their respective reconstituted protein hydrogel counterparts.
本研究的目的是评估背根神经节(DRG)细胞在由聚乙二醇化纤维蛋白原制成的生物合成材料以及凝血酶聚合的纤维蛋白水凝胶中的生长情况。该假设规定,与重组纤维蛋白水凝胶相比,改变水凝胶生物合成成分的组成可用于更好地调节DRG细胞的侵入速率。生物合成水凝胶的组成由聚乙二醇(PEG)与纤维蛋白原的相对量或材料中纤维蛋白原的浓度控制。其他聚乙二醇化蛋白质水凝胶,包括聚乙二醇化胶原蛋白和聚乙二醇化白蛋白,分别用作DRG细胞生长研究的阳性和阴性对照。在神经生长因子存在的情况下,聚乙二醇化纤维蛋白原水凝胶很容易支持来自包封DRG的发芽神经突和侵入性神经胶质细胞的广泛生长。聚乙二醇化纤维蛋白原水凝胶表现出优先的神经突侵入,观察到非神经元细胞落后于侵入的神经突。含有更多PEG或纤维蛋白原的水凝胶减少了细胞类型之间的延迟以及细胞侵入的总体速率。与各自的重组蛋白水凝胶对应物相比,延时视频显微镜和定量细胞侵入数据用于说明控制聚乙二醇化纤维蛋白原水凝胶中DRG细胞生长特征的有效性。