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首页> 外文期刊>The Journal of craniofacial surgery >In search of the ideal bone morphogenetic protein delivery system: in vitro studies on demineralized bone matrix, purified, and recombinant bone morphogenetic protein.
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In search of the ideal bone morphogenetic protein delivery system: in vitro studies on demineralized bone matrix, purified, and recombinant bone morphogenetic protein.

机译:为了寻找理想的骨形态发生蛋白递送系统:对脱矿质骨基质,纯化和重组的骨形态发生蛋白进行体外研究。

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摘要

The clinical use of recombinant bone morphogenetic protein (rBMP) is limited by the lack of a suitable delivery system. The bone morphogenetic protein (BMP) delivery system provided by nature is highly effective, and by studying purified BMP (BMP/NCP) and demineralized bone matrix (DBM), it may be possible to learn how to emulate nature's success. The current study used an in vitro muscle cell model to study the activity of BMP/NCP and DBM and the effects of extracellular matrix on BMP activity. C2C12 cells transiently exposed to recombinant human BMP-4 (rhBMP-4) rapidly increased their alkaline phosphatase (AP) activity to day 5, after which it steadily declined. Cells exposed to BMP/NCP or DBM continued to increase their AP activity over the 14-day culture. If BMP/NCP was treated to remove a 22-kd protein, it became water-soluble and exhibited a similar activity pattern to rhBMP-4. Cells cultured on collagen type I, fibronectin, and hyaluronic-coated surfaces demonstrated increased AP activity when exposed to rhBMP-4 or BMP/NCP compared with cells cultured on bovine serum albumin or poly-l-lysine. These results suggest that the natural BMP delivery system operates both by binding to the BMP molecule and slowly releasing it into the extracellular milieu and by interacting with the responding cells through cell-matrix receptors to enhance the cellular response to BMP.
机译:重组骨形态发生蛋白(rBMP)的临床使用受到缺乏合适的递送系统的限制。大自然提供的骨形态发生蛋白(BMP)输送系统非常有效,通过研究纯化的BMP(BMP / NCP)和去矿质骨基质(DBM),可以学习如何模仿大自然的成功。当前的研究使用体外肌肉细胞模型来研究BMP / NCP和DBM的活性以及细胞外基质对BMP活性的影响。短暂暴露于重组人BMP-4(rhBMP-4)的C2C12细胞迅速增加了其碱性磷酸酶(AP)的活性,直至第5天,此后稳定下降。在14天的培养中,暴露于BMP / NCP或DBM的细胞继续增加其AP活性。如果对BMP / NCP进行处理以去除22-kd蛋白,则它变成水溶性的,并且表现出与rhBMP-4类似的活性模式。与在牛血清白蛋白或聚-1-赖氨酸上培养的细胞相比,在I型胶原蛋白,纤连蛋白和透明质酸包被的表面上培养的细胞在暴露于rhBMP-4或BMP / NCP时表现出增加的AP活性。这些结果表明,天然的BMP递送系统既通过结合BMP分子并将其缓慢释放到细胞外环境中,又通过细胞基质受体与反应细胞相互作用来增强对BMP的细胞反应。

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