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Reconfigurable Dual Peptide Tethered Polymer System Offers a Synergistic Solution for Next Generation Dental Adhesives

机译:可重新配置的双肽系束性聚合物系统为下一代牙科粘合剂提供协同溶液

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摘要

Resin-based composite materials have been widely used in restorative dental materials due to their aesthetic, mechanical, and physical properties. However, they still encounter clinical shortcomings mainly due to recurrent decay that develops at the composite-tooth interface. The low-viscosity adhesive that bonds the composite to the tooth is intended to seal this interface, but the adhesive seal is inherently defective and readily damaged by acids, enzymes, and oral fluids. Bacteria infiltrate the resulting gaps at the composite-tooth interface and bacterial by-products demineralize the tooth and erode the adhesive. These activities lead to wider and deeper gaps that provide an ideal environment for bacteria to proliferate. This complex degradation process mediated by several biological and environmental factors damages the tooth, destroys the adhesive seal, and ultimately, leads to failure of the composite restoration. This paper describes a co-tethered dual peptide-polymer system to address composite-tooth interface vulnerability. The adhesive system incorporates an antimicrobial peptide to inhibit bacterial attack and a hydroxyapatite-binding peptide to promote remineralization of damaged tooth structure. A designer spacer sequence was incorporated into each peptide sequence to not only provide a conjugation site for methacrylate (MA) monomer but also to retain active peptide conformations and enhance the display of the peptides in the material. The resulting MA-antimicrobial peptides and MA-remineralization peptides were copolymerized into dental adhesives formulations. The results on the adhesive system composed of co-tethered peptides demonstrated both strong metabolic inhibition of S. mutans and localized calcium phosphate remineralization. Overall, the result offers a reconfigurable and tunable peptide-polymer hybrid system as next-generation adhesives to address composite-tooth interface vulnerability.
机译:由于其美学,机械和物理性质,基于树脂的复合材料已广泛用于恢复牙科材料。然而,它们仍然遇到临床缺点,主要是由于复合牙接界面发生的经常发生衰变。将复合物粘合到牙齿的低粘度粘合剂旨在密封该界面,但是粘合剂密封件本身缺陷,并且通过酸,酶和口腔流体易于损坏。细菌渗透在复合牙接界面和细菌副产物的所产生的间隙脱矿物并侵蚀粘合剂。这些活动导致更广泛和更深的差距,为细菌提供了理想的细菌。这种复杂的降解过程由几种生物和环境因素介导的损失牙齿,摧毁粘合密封,最终导致复合恢复的失效。本文描述了一种共束缚的双肽 - 聚合物系统,用于解决复合牙接界面脆弱性。粘合剂系统包含抗微生物肽,以抑制细菌攻击和羟基磷灰石结合肽,以促进损坏的牙齿结构的再矿化。将设计者间隔序列掺入每种肽序列中,以不仅为甲基丙烯酸酯(MA)单体提供缀合位点,还包括保持活性肽构象并增强材料中肽的显示。得到的马抗菌肽和MA-再矿化肽与牙科粘合剂配方共聚到牙科粘合剂中。由共拴肽组成的粘合体系上的结果表明了S.Ulants的强烈代谢抑制和局部磷酸钙再矿化。总的来说,该结果提供可重新配置和可调谐的肽 - 聚合物混合系统,作为下一代粘合剂,以解决复合牙接界面脆弱性。

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