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Immunohistochemical characterization of guided bone formation by a biodegradable tissue engineering scaffold in a healing tooth socket of a rabbit model

机译:一种兔模型愈合齿插座中可生物降解组织工程支架的引导骨形成的免疫组织化学特征

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We have developed a novel, biocompatible, biodegradable tissue engineering scaffold that has been shown to facilitate bone formation in vivo. The process of bone formation within this scaffold, however, is unknown at a molecular level. To study this process, a rabbit's four healing incisor sockets (two mandibular and two maxillar) that remain after tooth extraction were used as a bone defect model. One socket was left empty, while the remaining three were filled with crosslinked polymer networks formed from either the hydrophobic polymer poly(propylene fumarate) (PPF), the hydrophilic oligomer oligo(poly(ethylene glycol) fumarate) (OPF), or PPF with adsorbed transforming growth factor -β{sub}1 (PPF+TGF-β{sub}1). At 4 days, 1 week, 2 weeks, 4 weeks, 8 weeks, and 16 weeks both the mandible and maxilla were removed and prepared for histological analysis. Using immunohistochemical techniques, frozen sections were stained for the presence of TGF-β{sub}1, platelet derived growth factor ("DOF), fibroblast growth factor - 2 (FGF-2), vascular endothelial growth factor (VEOF), and bone morphogenetic protein - 2 (BMP-2). Results indicate the effect of differing biomaterial properties upon bone formation as described by the spatial and temporal development of those growth factors thought to be intimately involved in the process.
机译:我们开发了一种新颖的,生物相容性的可生物降解的组织工程支架,已被证明可以促进体内骨形成。然而,该支架内的骨形成过程在分子水平下是未知的。为了研究这一过程,兔子的四个愈合切牙插座(两个下颌和两个上颌)用作骨缺损模型。一个插座留空,而剩余的三个填充有由疏水聚合物聚(丙烯富马酸丙酯)(PPF)的交联聚合物网络,亲水性低聚物寡核苷酸(聚(乙二醇)富马酸盐)(OPF)或PPF吸附转化生长因子-β{uS} 1(PPF + TGF-β{Sub} 1)。在4天,1周,2周,4周,8周和16周内,除去下颌骨和上颌并准备组织学分析。使用免疫组织化学技术,染色冻结部分,用于存在TGF-β{亚} 1,血小板衍生生长因子(“DOF),成纤维细胞生长因子2(FGF-2),血管内皮生长因子(VEOF)和骨骼形态发生蛋白 - 2(BMP-2)。结果表明这些生长因子的空间和时间发展所描述的骨材料在骨形成上的影响,这些生长因素被认为紧密地参与该过程。

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