Efeito dos agentes de Cross-Linking na durabilidade da interface adesiva

Caroliny Mello Barboza, E. V. Maroun
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Abstract

Metalloproteases are endogenous collagenolytic enzymes, capable of degrading the collagen fibrils present in the dentin, producing adhesive interface failures. Cross-linking agents has been proposed to reduce this degradation. The aim of this literature review was to analyze the action of different cross-linking agents on MMPs. The search was conducted in the PubMed database. The final sample consisted of 40 studies published between 2018 and 2010. Current studies have shown cross-linking agents (cabordiimide, glutaraldehyde, proanthocyanidin, riboflavin / UV-A and chitosan) present some advantages as nonspecificity to type of MMPs, collagen fiber’s toughness development and prevent bonding to the cleavage site of the enzyme. For this reason, it is necessary to know the action of the available cross-linking agents. It was observed that  Cabordiimide, riboflavin / UV-A, glutaraldehyde, proanthocyanidin and chitosan presented positive results in reducing degradation of the adhesive interface. Carbodiimide and riboflavin / UV-A are non-cytotoxic, unlike glutaraldehyde. Proanthocyanidin incorporated into the adhesive interferes with the polymerization of the adhesive monomers. Chitosan is able to reinforce collagen fibrils. Thus, it was possible to know more about the action of the available cross-linking agents.  However, there is a need for more research on these agents.
交联剂对粘接界面耐久性的影响
金属蛋白酶是内源性的胶原溶解酶,能够降解存在于牙本质中的胶原原纤维,产生粘接界面失效。交联剂被用来减少这种降解。本文献综述的目的是分析不同交联剂对MMPs的作用。搜索在PubMed数据库中进行。最后的样本包括2018年至2010年间发表的40项研究。目前的研究表明,交联剂(卡波二亚胺、戊二醛、原花青素、核黄素/ UV-A和壳聚糖)具有对MMPs类型无特异性、胶原纤维韧性发育和防止与酶裂解位点结合等优点。因此,有必要了解可用的交联剂的作用。结果表明,碳二亚胺、核黄素/ UV-A、戊二醛、原花青素和壳聚糖均对降低黏附界面的降解有积极作用。与戊二醛不同,碳二亚胺和核黄素/ UV-A没有细胞毒性。加入到粘合剂中的原花青素干扰粘合剂单体的聚合。壳聚糖能够增强胶原原纤维。因此,有可能更多地了解可用交联剂的作用。然而,需要对这些药物进行更多的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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