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Morphological differences in BMP-2-induced ectopic bone between solid and crushed hyaluronan hydrogel templates

机译:透明质酸水凝胶模板与压碎的透明质酸水凝胶模板之间BMP-2诱导的异位骨的形态学差异

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摘要

The possibility to affect bone formation by using crushed versus solid hydrogels as carriers for bone morphogenetic protein 2 (BMP-2) was studied. Hydrogels, based on chemical crosslinking between hyaluronic acid and poly(vinyl alcohol) derivatives, were loaded with BMP-2 and hydroxyapatite. Crushed and solid forms of the gels were analyzed both in vitro via a release study using ~(125)I radioactive labeling of BMP-2, and in vivo in a subcutaneous ectopic bone model in rats. Dramatically different morphologies were observed for the ectopic bone formed in vivo in the two types of gels, even though virtually identical release profiles were observed in vitro. Solid hydrogels induced formation of a dense bone shell around non-degraded hydrogel, while crushed hydrogels demonstrated a uniform bone formation throughout the entire sample. These results suggest that by crushing the hydrogel, the construct's three-dimensional network becomes disrupted. This could expose unreacted functional groups, making the fragment's surfaces reactive and enable limited chemical fusion between the crushed hydrogel fragments,leading to similar in vitro release profiles. However, in vivo these interactions could be broken by enzymatic activity, creating a macroporous structure that allows easier cell infiltration, thus, facilitating bone formation.
机译:研究了使用压碎的固体凝胶与固体水凝胶作为骨形态发生蛋白2(BMP-2)的载体来影响骨形成的可能性。基于透明质酸和聚乙烯醇衍生物之间的化学交联的水凝胶中装有BMP-2和羟基磷灰石。通过使用BMP-2的〜(125)I放射性标记通过释放研究在体外以及在大鼠皮下异位骨模型中体内分析了凝胶的压碎形式和固体形式。尽管在体外观察到实际上相同的释放曲线,但在两种类型的凝胶中观察到了在体内形成的异位骨的显着不同的形态。固体水凝胶可在未降解的水凝胶周围形成致密的骨壳,而压碎的水凝胶可在整个样品中显示出均匀的骨形成。这些结果表明,通过压碎水凝胶,构建体的三维网络被破坏了。这可能会暴露未反应的官能团,使片段的表面具有反应性,并使粉碎的水凝胶片段之间的化学融合作用受到限制,从而导致相似的体外释放曲线。但是,在体内,这些相互作用可能会被酶活性破坏,从而形成大孔结构,从而使细胞更容易浸润,从而促进骨形成。

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  • 来源
    《Journal of materials science》 |2013年第5期|1201-1209|共9页
  • 作者单位

    Department of Orthopedics, Uppsala University,Uppsala, Sweden;

    Division of Polymer Chemistry, Department of Chemistry,Uppsala University, Box 538, SE-751 21 Uppsala, Sweden;

    Department of Oncology, Radiology and Radiation Science, Uppsala University, Uppsala, Sweden;

    Department of Orthopedics, Uppsala University,Uppsala, Sweden;

    Termira AB, Stockholm, Sweden;

    Division of Polymer Chemistry, Department of Chemistry,Uppsala University, Box 538, SE-751 21 Uppsala, Sweden;

    Department of Orthopedics, Uppsala University,Uppsala, Sweden;

    Division of Polymer Chemistry, Department of Chemistry,Uppsala University, Box 538, SE-751 21 Uppsala, Sweden;

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