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首页> 外文期刊>Materialwissenschaft und Werkstofftechnik >Biocoating of Elektropolished and Ultra-Hydrophilic Titanium and Cobalt Chromium Molybdenum Alloy Surfaces with Proteins
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Biocoating of Elektropolished and Ultra-Hydrophilic Titanium and Cobalt Chromium Molybdenum Alloy Surfaces with Proteins

机译:蛋白质的电抛光和超亲水钛和钴铬钼合金表面生物涂层

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摘要

Bone morphogenetic proteins (BMPs) play a decisive role in bone development and osteogenesis. In the past they have been the subject of widespread research and clinical trials as stimulants of bone growth. Although recently recombinant human BMP-2 (rhBMP-2) has been chemically immobilized on implant surfaces leading to enhanced bone growth and accelerated integration in vivo, the non-covalent immobilization of proteins on metal surfaces is still poorly understood, since the oxide layers on metals like titanium, stainless steel or cobalt chromium alloys are poor adsorbents of proteins. Protein binding surfaces could either be generated by linking ionic groups (ion-exchange surface) or by coupling hy-drophobic residues (hydrophobic interacting surface, HIS) to the surface. In this paper the preparation of protein adsorbing surfaces on titanium and cobalt chromium molybdenum alloy for the adsorption of rhBMP-2 and ubiquitin will be described. rhBMP-2 and ubi-quitin are bound extremely tight to surfaces containing propyl or hexyl groups of a certain surface concentration and are slowly released over a range of at least 24―100 days making such surfaces applicable as long-term drug delivery devices for enhancing bone growth or implant integration.
机译:骨形态发生蛋白(BMP)在骨骼发育和成骨中起决定性作用。在过去,它们一直作为骨生长的刺激物而受到广泛研究和临床试验的研究。尽管最近重组人BMP-2(rhBMP-2)已化学固定在植入物表面上,从而增强了骨骼的生长并加速了体内整合,但由于金属氧化物层上的非共价键固定在金属表面上,因此人们对蛋白质的非共价固定化了解仍然很少。钛,不锈钢或钴铬合金等金属对蛋白质的吸收能力很差。可以通过连接离子基团(离子交换表面)或通过将疏水残基(疏水相互作用表面,HIS)偶联到表面来生成蛋白质结合表面。在本文中,将描述在钛和钴铬钼合金上用于rhBMP-2和泛素吸附的蛋白质吸附表面的制备。 rhBMP-2和泛素结合极紧密地结合到具有一定表面浓度的丙基或己基的表面上,并在至少24至100天的范围内缓慢释放,使这些表面可用作长期药物递送装置以增强骨骼生长或植入物整合。

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