Tabata Y, Yamada K, Hong L, Miyamoto S, Hashimoto N, Ikada Y
Institute for Frontier Medical Sciences and Department of Neurosurgery, Graduate School of Medicine, Kyoto University, Japan.
J Neurosurg. 1999 Nov;91(5):851-6. doi: 10.3171/jns.1999.91.5.0851.
The feasibility of using a biodegradable hydrogel incorporating basic fibroblast growth factor (bFGF) to induce bone regeneration at the site of a skull defect in monkeys was investigated.
Basic fibroblast growth factor was incorporated into a bioabsorbable hydrogel, which was prepared through glutaraldehyde crosslinking of gelatin. Following treatment of monkey skull defects measuring 6 mm in diameter (six defects/experimental group) with gelatin hydrogel incorporating bFGF, skull bone regeneration was evaluated using soft x-ray studies, dual x-ray absorptometry, and histological examinations. The water content of the hydrogels varied according to the glutaraldehyde concentration in the hydrogel preparation. Gelatin hydrogels incorporating 100 microg of bFGF significantly promoted bone regeneration and the skull defect was completely closed 21 weeks after implantation. This is in marked contrast with the effect of the same dose of bFGF in solution form. Bone mineral density (BMD) measured at the sites of skull defect was enhanced by the bFGF-incorporating hydrogels. The BMD enhancement was more prominent at lower water contents of hydrogel. Empty gelatin hydrogels neither induced nor interfered with skull bone regeneration.
The findings of this study indicate that bFGF coupled with bioabsorbable hydrogel is a very promising tool to assist in the regrowth of bone at the site of a skull defect, which clinically has been recognized as almost impossible.
研究使用一种包含碱性成纤维细胞生长因子(bFGF)的可生物降解水凝胶诱导猴颅骨缺损部位骨再生的可行性。
将碱性成纤维细胞生长因子掺入通过明胶戊二醛交联制备的可生物吸收水凝胶中。在用掺入bFGF的明胶水凝胶治疗直径为6毫米的猴颅骨缺损(每组6个缺损)后,使用软X射线研究、双能X射线吸收法和组织学检查评估颅骨再生情况。水凝胶的含水量根据水凝胶制备中戊二醛的浓度而变化。掺入100微克bFGF的明胶水凝胶显著促进了骨再生,植入后21周颅骨缺损完全闭合。这与相同剂量的溶液形式的bFGF的效果形成显著对比。在颅骨缺损部位测量的骨矿物质密度(BMD)通过掺入bFGF的水凝胶得到提高。在水凝胶含水量较低时,BMD的提高更为显著。空白明胶水凝胶既不诱导也不干扰颅骨再生。
本研究结果表明,bFGF与可生物吸收水凝胶结合是一种非常有前途的工具,可协助颅骨缺损部位的骨再生,而临床上一直认为这几乎是不可能的。