New Industry Creation Hatchery Center, Tohoku University, Aoba-ku, Sendai, Japan.
Int J Prosthodont. 2010 Jul-Aug;23(4):299-309.
The focus of this systematic review was to assess the published data concerning zirconia dental implant abutments from various aspects.
To identify suitable literature, an electronic search was performed using PubMed. The keywords "zirconia," "zirconium," "ceramic," "dental abutments," "dental implants," "plaque," and "bacteria" were included. Titles and abstracts were screened, and literature that fulfilled the inclusion criteria was selected for a full-text reading. Articles were divided into four groups: (1) studies on the mechanical properties of zirconia abutments, (2) studies on the peri-implant soft tissues around zirconia abutments, (3) studies on plaque accumulation on zirconia, and (4) clinical studies on the survival of zirconia abutments.
The initial literature search resulted in 380 articles. For groups 1 to 4, 11, 4, 7, and 3 articles satisfied the inclusion and exclusion criteria, respectively. Only 1 randomized clinical study was identified. Review of the selected articles showed that zirconia abutments were reliable in the anterior region from both biologic and mechanical points of view. Furthermore, zirconia abutments may represent a material surface less attractive for early plaque retention compared to titanium. Three clinical follow-up studies indicated that zirconia abutments could function without fracture and peri-implant lesions.
Based on the reviewed literature, zirconia has the potential to be used as a dental abutment material, although some issues have to be studied further.
本系统评价的重点是从多个方面评估氧化锆牙科种植体基台的已发表数据。
为了确定合适的文献,我们使用 PubMed 进行了电子检索。关键词包括“氧化锆”、“锆”、“陶瓷”、“牙基台”、“牙种植体”、“菌斑”和“细菌”。筛选标题和摘要,并选择符合纳入标准的文献进行全文阅读。文章分为四组:(1)氧化锆基台机械性能的研究,(2)氧化锆基台周围种植体周软组织的研究,(3)氧化锆菌斑积聚的研究,(4)氧化锆基台临床生存的研究。
最初的文献检索产生了 380 篇文章。对于第 1 至 4 组,分别有 11、4、7 和 3 篇文章符合纳入和排除标准。仅确定了 1 项随机临床试验。对所选文章的回顾表明,从生物学和机械学的角度来看,氧化锆基台在前牙区是可靠的。此外,与钛相比,氧化锆基台的表面可能对早期菌斑的保留吸引力更小。3 项临床随访研究表明,氧化锆基台可以在没有骨折和种植体周病变的情况下发挥作用。
根据已审查的文献,氧化锆有可能成为一种牙科基台材料,尽管仍需要进一步研究一些问题。