Woerly S, Lavallée C, Marchand R
Centre de recherche en neurobiologie, Hôpital de l'Enfant Jésus, Université Laval, Québec, Canada.
J Neural Transplant Plast. 1992 Jan-Mar;3(1):21-34. doi: 10.1155/NP.1992.21.
In previous studies, hyperporous synthetic hydrogels of poly(glyceryl methacrylate) or p(GMA), containing bioadhesive substrates of collagen, were implanted into rat cerebral tissue in order to provide systems of oriented guidance channels for directing the growth of the scar and axons /28/. In the present study, ionic p(GMA)-collagen hydrogels containing polar chemical groups, either basic amino groups or acidic carboxyl groups, were evaluated for their tolerance and their effects on the brain scarring response and axonal reactivity after long-term implantation in the cerebral cortex. In all animals, the implants were well tolerated. Although both types of gels influenced the astroglial reaction near the bioimplant, hydrogels carrying carboxyl groups had the strongest influence on the elongation, the direction and the organization of astrocytic processes so that a glial matrix could form in regions of the gel. Extracellular material (e.g. reticulin) was also deposited into the gels carrying carboxyl groups. Although cortical nerve fibers in the surrounding tissue showed a regenerative response, extending onto or into the matrices, this behavior seemed to depend more on the organization of the astrocytic scar imposed by the gel than on the type of gel. We conclude that matrices carrying negatively charged groups influence favorably the astrocytosis and the deposition of connective tissue, and that this approach represents a new avenue in attempting to modulate the brain scar formation.
在先前的研究中,含有胶原蛋白生物粘附基质的聚甲基丙烯酸甘油酯(p(GMA))超多孔合成水凝胶被植入大鼠脑组织,以提供定向引导通道系统,用于引导瘢痕和轴突的生长[28]。在本研究中,对含有极性化学基团(碱性氨基或酸性羧基)的离子型p(GMA)-胶原蛋白水凝胶进行了评估,观察其在长期植入大脑皮层后的耐受性以及对脑瘢痕反应和轴突反应性的影响。在所有动物中,植入物耐受性良好。尽管两种类型的凝胶都影响生物植入物附近的星形胶质反应,但带有羧基的水凝胶对星形胶质细胞突起的伸长、方向和组织具有最强的影响,从而在凝胶区域形成胶质基质。细胞外物质(如网状纤维)也沉积在带有羧基的凝胶中。尽管周围组织中的皮质神经纤维表现出再生反应,延伸到基质上或进入基质中,但这种行为似乎更多地取决于凝胶施加的星形胶质瘢痕的组织情况,而不是凝胶的类型。我们得出结论,带有负电荷基团的基质对星形胶质细胞增生和结缔组织沉积有有利影响,并且这种方法代表了试图调节脑瘢痕形成的一条新途径。