Saghiri M-A, Asatourian A, Garcia-Godoy F, Sheibani N
Departments of Ophthalmology, &Visual Sciences and Biomedical Engineering, University of Wisconsin, School of Medicine and Public health, Madison, WI, USA,
Med Oral Patol Oral Cir Bucal. 2016 Jul 1;21(4):e514-525. doi: 10.4317/medoral.21199.
Angiogenesis plays an important role in osseointegration process by contributing to inflammatory and regenerative phases of surrounding alveolar bone. The present review evaluated the effect of titanium alloys and their surface characteristics including: surface topography (macro, micro, and nano), surface wettability/energy, surface hydrophilicity or hydrophobicity, surface charge, and surface treatments of dental implants on angiogenesis events, which occur during osseointegration period.
An electronic search was performed in PubMed, MEDLINE, and EMBASE databases via OVID using the keywords mentioned in the PubMed and MeSH headings regarding the role of angiogenesis in implant dentistry from January 2000-April 2014.
Of the 2,691 articles identified in our initial search results, only 30 met the inclusion criteria set for this review. The hydrophilicity and topography of dental implants are the most important and effective surface characteristics in angiogenesis and osteogenesis processes. The surface treatments or modifications of dental implants are mainly directed through the enhancement of biological activity and functionalization in order to promote osteogenesis and angiogenesis, and accelerate the osseointegration procedure.
Angiogenesis is of great importance in implant dentistry in a manner that most of the surface characteristics and treatments of dental implants are directed toward creating a more pro-angiogenic surface on dental implants. A number of studies discussed the effect of titanium alloys, dental implant surface characteristic and treatments on agiogenesis process. However, clinical trials and in-vivo studies delineating the mechanisms of dental implants, and their surface characteristics or treatments, action in angiogenesis processes are lagging.
血管生成在骨整合过程中发挥着重要作用,它参与周围牙槽骨的炎症和再生阶段。本综述评估了钛合金及其表面特性(包括表面形貌(宏观、微观和纳米)、表面润湿性/能量、表面亲水性或疏水性、表面电荷以及牙种植体的表面处理)对骨整合期间发生的血管生成事件的影响。
通过OVID在PubMed、MEDLINE和EMBASE数据库中进行电子检索,使用PubMed和医学主题词表中提到的关于血管生成在种植牙科中的作用的关键词,检索时间为2000年1月至2014年4月。
在我们初步检索结果中识别出的2691篇文章中,只有30篇符合本综述设定的纳入标准。牙种植体的亲水性和形貌是血管生成和成骨过程中最重要且最有效的表面特性。牙种植体的表面处理或修饰主要通过增强生物活性和功能化来进行,以促进成骨和血管生成,并加速骨整合过程。
血管生成在种植牙科中非常重要,因为牙种植体的大多数表面特性和处理都旨在在牙种植体上创造一个更有利于血管生成的表面。许多研究讨论了钛合金、牙种植体表面特性和处理对血管生成过程的影响。然而,描述牙种植体及其表面特性或处理在血管生成过程中的作用机制的临床试验和体内研究仍滞后。