Assal Patrick A
Médecin dentiste SVMD-SSO Lausanne, Lausanne, Switzerland.
Schweiz Monatsschr Zahnmed. 2013;123(7-8):644-54.
Zirconia is currently extensively used in medicine, especially in orthopedic surgery for various joint replacement appliances. Its outstanding mechanical and chemical properties have made it the "material of choice" for various types of prostheses. Its color in particular makes it a favored material to manufacture dental implants. A literature search through Medline enables one to see zirconia's potential but also to point out and identify its weaknesses. The search shows that zirconia is a biocompatible, osteoconductive material that has the ability to osseointegrate. Its strength of bonding to bone depends on the surface structure of the implant. Although interesting, the studies do not allow for the recommendation of the use of zirconia implants in daily practice. The lack of studies examining the chemical and structural composition of zirconia implants does not allow for a "gold standard" to be established in the implant manufacturing process. Randomized clinical trials (RCT) are urgently needed on surface treatments of zirconia implants intended to achieve the best possible osseointegration.
氧化锆目前在医学领域得到广泛应用,尤其是在整形外科手术中用于各种关节置换器械。其出色的机械和化学性能使其成为各类假体的“首选材料”。特别是其颜色使其成为制造牙种植体的理想材料。通过医学在线数据库(Medline)进行文献检索,人们既能看到氧化锆的潜力,也能指出并识别其弱点。检索显示,氧化锆是一种具有生物相容性、骨传导性且能够实现骨整合的材料。其与骨的结合强度取决于植入物的表面结构。尽管很有意思,但这些研究并不支持在日常实践中推荐使用氧化锆植入物。由于缺乏对氧化锆植入物化学和结构组成的研究,无法在植入物制造过程中确立“金标准”。迫切需要针对旨在实现最佳骨整合的氧化锆植入物表面处理进行随机临床试验(RCT)。