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Limitations in bonding to dentin and experimental strategies to prevent bond degradation. | LitMetric

Limitations in bonding to dentin and experimental strategies to prevent bond degradation.

J Dent Res

Department of Stomatology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Hankou District, Wuhan 430030, People's Republic of China.

Published: August 2011

AI Article Synopsis

  • The durability of resin-dentin bonds is critical for the longevity of tooth-colored restorations, but it is often compromised due to issues such as hydrolysis and enzymatic degradation.
  • Recent research over the past three years has explored five approaches to enhance the strength and longevity of these bonds, including improving adhesive conversion, using enzyme inhibitors, and employing cross-linking agents.
  • Combining multiple strategies, such as ethanol wet-bonding and biomimetic remineralization, could effectively address current challenges in achieving durable dentin bonding.

Article Abstract

The limited durability of resin-dentin bonds severely compromises the lifetime of tooth-colored restorations. Bond degradation occurs via hydrolysis of suboptimally polymerized hydrophilic resin components and degradation of water-rich, resin-sparse collagen matrices by matrix metalloproteinases (MMPs) and cysteine cathepsins. This review examined data generated over the past three years on five experimental strategies developed by different research groups for extending the longevity of resin-dentin bonds. They include: (1) increasing the degree of conversion and esterase resistance of hydrophilic adhesives; (2) the use of broad-spectrum inhibitors of collagenolytic enzymes, including novel inhibitor functional groups grafted to methacrylate resins monomers to produce anti-MMP adhesives; (3) the use of cross-linking agents for silencing the activities of MMP and cathepsins that irreversibly alter the 3-D structures of their catalytic/allosteric domains; (4) ethanol wet-bonding with hydrophobic resins to completely replace water from the extrafibrillar and intrafibrillar collagen compartments and immobilize the collagenolytic enzymes; and (5) biomimetic remineralization of the water-filled collagen matrix using analogs of matrix proteins to progressively replace water with intrafibrillar and extrafibrillar apatites to exclude exogenous collagenolytic enzymes and fossilize endogenous collagenolytic enzymes. A combination of several of these strategies should result in overcoming the critical barriers to progress currently encountered in dentin bonding.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3148178PMC
http://dx.doi.org/10.1177/0022034510391799DOI Listing

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