Madfa Ahmed A, Yue Xiao-Guang
Department of Conservative Dentistry, Faculty of Dentistry, University of Thamar, Yemen.
Department of Safety Science and Engineering, Wuhan University of Technology, China.
Jpn Dent Sci Rev. 2016 Feb;52(1):2-13. doi: 10.1016/j.jdsr.2015.07.001. Epub 2015 Sep 1.
Alumina- and zirconia-based ceramic dental restorations are designed to repair functionality as well as esthetics of the failed teeth. However, these materials exhibited several performance deficiencies such as fracture, poor esthetic properties of ceramic cores (particularly zirconia cores), and difficulty in accomplishing a strong ceramic-resin-based cement bond. Therefore, improving the mechanical properties of these ceramic materials is of great interest in a wide range of disciplines. Consequently, spatial gradients in surface composition and structure can improve the mechanical integrity of ceramic dental restorations. Thus, this article reviews the current status of the functionally graded dental prostheses inspired by the dentino-enamel junction (DEJ) structures and the linear gradation in Young's modulus of the DEJ, as a new material design approach, to improve the performance compared to traditional dental prostheses. This is a remarkable example of nature's ability to engineer functionally graded dental prostheses. The current article opens a new avenue for recent researches aimed at the further development of new ceramic dental restorations for improving their clinical durability.
氧化铝基和氧化锆基陶瓷牙科修复体旨在修复患牙的功能和美观。然而,这些材料存在一些性能缺陷,如断裂、陶瓷核(尤其是氧化锆核)的美学性能不佳以及难以实现牢固的陶瓷 - 树脂基粘结。因此,提高这些陶瓷材料的机械性能在众多学科中备受关注。因此,表面成分和结构的空间梯度可以提高陶瓷牙科修复体的机械完整性。因此,本文综述了受牙本质 - 釉质界(DEJ)结构以及DEJ杨氏模量线性渐变启发的功能梯度牙科假体的现状,作为一种新的材料设计方法,以提高与传统牙科假体相比的性能。这是自然设计功能梯度牙科假体能力的一个显著例子。本文为近期旨在进一步开发新型陶瓷牙科修复体以提高其临床耐久性的研究开辟了一条新途径。