Recent advancements in dentistry focus on enhancing dental cement properties, incorporating functional monomers and silanes for better bonding with tooth structure and restorative materials. Simplifying clinical application and reducing technique sensitivity are priorities, while maintaining reliability and longevity of bonds. Ongoing research explores diverse chemical constituents and techniques, aiming to improve resistance to degradation and micromechanical retention. Bioactive molecules are integrated to enhance mechanical properties and prevent enzymatic degradation of dental substrates. Alternative etching materials are investigated to overcome issues with traditional methods. Adhesive dentistry trends towards simpler, more reliable bonding without sacrificing material properties, driving continuous innovation. Dental cements serve crucial roles in affixing inlays, crowns, and bridges, and protecting pulp post-cavity preparation. Success in fixed prosthodontic restorations depends on factors like preparation design and choice of luting agent.
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