Perdigão Jorge, Reis Alessandra, Loguercio Alessandro D
Department of Restorative Sciences, University of Minnesota, Minneapolis, MN 55455, USA.
J Esthet Restor Dent. 2013 Aug;25(4):219-41. doi: 10.1111/jerd.12016. Epub 2013 Feb 19.
This review examines the fundamental processes responsible for the aging mechanisms involved in the degradation of resin-bonded interfaces, as well as some potential approaches to prevent and counteract this degradation. Current research in several research centers aims at increasing the resin-dentin bond durability. The hydrophilic and acidic characteristics of current dentin adhesives have made hybrid layers highly prone to water sorption. This, in turn, causes polymer degradation and results in decreased resin-dentin bond strength over time. These unstable polymers inside the hybrid layer may result in denuded collagen fibers, which become vulnerable to mechanical and hydrolytical fatigue, as well as degradation by host-derived proteases with collagenolytic activity. These enzymes, such as matrix metalloproteinases and cysteine cathepsins, have a crucial role in the degradation of type I collagen, the organic component of the hybrid layer. This review will also describe several methods that have been recently advocated to silent the activity of these endogenous proteases.
本综述探讨了导致树脂粘结界面降解的老化机制所涉及的基本过程,以及一些预防和对抗这种降解的潜在方法。几个研究中心目前的研究旨在提高树脂与牙本质的粘结耐久性。当前牙本质粘结剂的亲水性和酸性特性使混合层极易吸水。反过来,这会导致聚合物降解,并随着时间的推移导致树脂与牙本质的粘结强度下降。混合层内这些不稳定的聚合物可能会导致胶原纤维裸露,使其易受机械和水解疲劳以及具有胶原分解活性的宿主衍生蛋白酶降解的影响。这些酶,如基质金属蛋白酶和半胱氨酸组织蛋白酶,在I型胶原(混合层的有机成分)的降解中起关键作用。本综述还将描述最近提倡的几种使这些内源性蛋白酶失活的方法。