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The Role of Host-derived Dentinal Matrix Metalloproteinases in Reducing Dentin Bonding of Resin Adhesives

机译:宿主来源的牙本质基质金属蛋白酶在减少树脂胶粘剂的牙本质键中的作用

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摘要

Dentin matrix metalloproteinases (MMPs) are a family of host-derived proteolytic enzymes trapped within mineralized dentin matrix, which have the ability to hydrolyze the organic matrix of demineralized dentin. After bonding with resins to dentin there are usually some exposed collagen fibrils at the bottom of the hybrid layer owing to imperfect resin impregnation of the demineralized dentin matrix. Exposed collagen fibrils might be affected by MMPs inducing hydrolytic degradation, which might result in reduced bond strength.Most MMPs are synthesized and released from odontoblasts in the form of proenzymes, requiring activation to degrade extracellular matrix components. Unfortunately, they can be activated by modern self-etch and etch-and-rinse adhesives. The aim of this review is to summarize the current knowledge of the role of dentinal host-derived MMPs in dentin matrix degradation. We also discuss various available MMP inhibitors, especially chlorhexidine, and suggest that they could provide a potential pathway for inhibiting collagen degradation in bonding interfaces thereby increasing dentin bonding durability.
机译:牙本质基质金属蛋白酶(MMP)是捕获在矿化的牙本质基质中的宿主衍生的蛋白水解酶家族,它们具有水解脱矿质牙本质有机基质的能力。与树脂粘合到牙本质上后,由于树脂对脱矿牙本质基质的不完全浸渍,通常在杂化层的底部会出现一些裸露的胶原纤维。暴露的胶原原纤维可能受MMP诱导水解降解的影响,这可能导致结合强度降低。大多数MMP都是以成酶形式从成牙本质细胞中合成和释放的,需要活化才能降解细胞外基质成分。不幸的是,它们可以被现代的自蚀刻和蚀刻漂洗粘合剂激活。这篇综述的目的是总结有关牙本质宿主来源的MMP在牙本质基质降解中的作用的当前知识。我们还讨论了各种可用的MMP抑制剂,特别是洗必泰,并建议它们可以提供抑制粘合界面中胶原降解的潜在途径,从而增加牙本质粘合的耐久性。

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