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首页> 外文期刊>Biomaterials >The role of oxygen termination of nanocrystalline diamond on immobilisation of BMP-2 and subsequent bone formation.
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The role of oxygen termination of nanocrystalline diamond on immobilisation of BMP-2 and subsequent bone formation.

机译:纳米晶金刚石的氧终止在BMP-2固定化和随后的骨形成中的作用。

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摘要

Medical implants are increasingly often inserted into bone of frail patients, who are advanced in years. Due to age, severe trauma or pathology-related bone changes, osseous healing at the implant site is frequently limited. We were able to demonstrate that coating of endosseous implants with nanocrystalline diamond (NCD) allows stable functionalization by means of physisorption with BMP-2. Strong physisorption was shown to be directly related to the unique properties of NCD, and BMP-2 in its active form interacted strongly when NCD was oxygen-terminated. The binding of the protein was monitored under physiological conditions by single molecule force spectroscopy, and the respective adsorption energies were further substantiated by force-field-calculations. Implant surfaces refined in such a manner yielded enhanced osseointegration in vivo, when inserted into sheep calvaria. Our results further suggest that this technical advancement can be readily applied in clinical therapies with regard to bone healing, since primary human mesenchymal stromal cells strongly activated the expression of osteogenic markers when being cultivated on NCD physisorbed with physiological amounts of BMP-2.
机译:医用植入物越来越多地插入体弱的患者的骨中,这些患者已经发展了很多年。由于年龄,严重的创伤或病理相关的骨骼变化,植入部位的骨愈合通常受到限制。我们能够证明,用纳米晶金刚石(NCD)覆盖骨内植入物可以通过BMP-2的物理吸附来实现稳定的功能化。研究表明,强烈的物理吸附与NCD的独特性质直接相关,当NCD被氧封端时,其活性形式的BMP-2相互作用强烈。在生理条件下通过单分子力光谱法监测蛋白质的结合,并且通过力场计算进一步证实了各自的吸附能。当插入绵羊颅盖中时,以这种方式精制的植入物表面在体内产生增强的骨整合。我们的结果进一步表明,由于原代人间充质基质细胞在生理量的BMP-2吸收的NCD上培养时,可以强烈激活成骨标记物的表达,因此该技术进步可以轻松地应用于骨愈合的临床治疗。

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