Gross K A, Berndt C C, Goldschlag D D, Iacono V J
Department of Materials Science, University of Technology, Sydney, Australia.
Int J Oral Maxillofac Implants. 1997 Sep-Oct;12(5):589-97.
The stability and degradability of hydroxyapatite coatings on dental implants depends on the dissolution of the individual chemical phases. Hydroxyapatite-coated dental implants exhibit a range of amorphous-phase content. Two tests were conducted to observe the course of coating degradation. The first test showed degradation of both crystalline and amorphous coatings by cracking and dissolution after immersion in Ringer's solution. Concomitant saturation of the implants in the solution modified the coated surface with precipitated crystalline apatite. A second test, intended to replicate the conditions of infection by decreasing pH, illustrated preferred dissolution of the amorphous phase, liberating crystalline segments. It is expected that morphologic changes could influence the rate of bone bonding and therefore could alter or control implant-tissue interactions.
牙科植入物上羟基磷灰石涂层的稳定性和可降解性取决于各个化学相的溶解情况。羟基磷灰石涂层的牙科植入物呈现出一系列非晶相含量。进行了两项测试以观察涂层降解过程。第一项测试表明,在浸入林格氏溶液后,结晶涂层和非晶涂层均通过开裂和溶解而降解。植入物在溶液中的同时饱和用沉淀的结晶磷灰石改变了涂层表面。第二项测试旨在通过降低pH值来复制感染条件,结果表明非晶相优先溶解,释放出结晶片段。预计形态变化可能会影响骨结合速率,因此可能会改变或控制植入物与组织的相互作用。