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骨诱导植入物:含药仿生涂层的应用场景

Osteoinductive implants: the mise-en-scène for drug-bearing biomimetic coatings.

作者信息

Liu Y, de Groot K, Hunziker E B

机构信息

ITI Research Institute, Bern University, Switzerland.

出版信息

Ann Biomed Eng. 2004 Mar;32(3):398-406. doi: 10.1023/b:abme.0000017536.10767.0f.

Abstract

In orthopaedic and dental implantology, novel tools and techniques are being sought to improve the regeneration of bone tissue. Numerous attempts have been made to enhance the osteoconductivity of titanium prostheses, including modifications in their surface properties and coating with layers of calcium phosphate. The technique whereby such layers are produced has recently undergone a revolutionary change, which has had profound consequences for their potential to serve as drug-carrier systems. Hitherto, calcium phosphate layers were deposited upon the surfaces of metal implants under highly unphysiological physical conditions, which precluded the incorporation of proteinaceous osteoinductive drugs. These agents could only be adsorbed, superficially, upon preformed layers. Such superficially adsorbed molecules are released too rapidly within a biological milieu to be effective in their osteoinductive capacity. Now, it is possible to deposit calcium phosphate layers under physiological conditions of temperature and pH by the so-called biomimetic process, during which bioactive agents can be coprecipitated. Since these molecules are integrated into the inorganic latticework, they are released gradually in vivo as the layer undergoes degradation. This feature enhances the capacity of these coatings to act as a carrier system for osteogenic agents.

摘要

在骨科和牙科植入领域,人们一直在寻找新的工具和技术来促进骨组织的再生。为提高钛假体的骨传导性,已进行了大量尝试,包括改变其表面特性以及用磷酸钙层进行涂层处理。制备此类涂层的技术最近发生了革命性变化,这对其作为药物载体系统的潜力产生了深远影响。迄今为止,磷酸钙层是在极不符合生理条件的物理状态下沉积在金属植入物表面的,这使得含蛋白质的骨诱导药物无法掺入。这些药物只能表面吸附在预先形成的涂层上。这种表面吸附的分子在生物环境中释放过快,以至于其骨诱导能力无法有效发挥。现在,通过所谓的仿生过程,可以在温度和pH值的生理条件下沉积磷酸钙层,在此过程中生物活性剂可共沉淀。由于这些分子整合到了无机晶格中,随着涂层在体内降解,它们会逐渐释放出来。这一特性增强了这些涂层作为成骨剂载体系统的能力。

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