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Bio-modification approach for novel dentine caries management by Galla chinesis extract and microbial transglutaminase

机译:五倍子中国提取物和微生物转谷氨酰胺酶治疗新型牙本质龋的生物修饰方法

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Introduction: Dental caries still remains one of the most prevalent diseases worldwide. Unlike enamel caries which can be restored mainly by modulating mineral balance, the dentine caries are characterized with irreversible proteolytic disintegration of organic matrices, highlighting an urgent need to seek novel management strategies. Bio-modification of dentine matrix has been proposed as a novel and alternative approach to enhancing its biochemical and biomechanical properties. The resultant chemical stability and mechanic durability are specifically desirable for prevention and restoration of dentine caries. However, conventional cross linking agents, e.g. glutaraldehyde, formaldehyde,are unsuitable for clinical use due to marked cytotoxicity or instability over time. The Hypothesis: Previous studies revealed that Galla chinesis extract (GCE) could inhibit cariogenic microbes and positively modulate enamel de/remineralization balance, and the mechanism was directed to the polyphenols-organic matrix interaction involving hydrogen, covalent, ionic bonding and hydrophobic processes. Microbial transglutaminase (mTGase) could induce crosslinks between peptide chains and improve functional properties of food proteins by catalyzing an acyl transfer reaction through ε - (γ-glutamyl) lysine (GL bonds). Given the high organic content in dentine and universal reaction nature of GCE and mTGase, we put forward a hypothesis that these two natural products may serve as novel biocompatible bio-modifiers to improve biochemical and biomechanical properties of dentine matrices. Evaluation of the Hypothesis: The validation of our hypothesis will provide profound insights updating current therapeutic strategies against dentine caries, and pioneer novel approaches for biocompatible bio-modification of dentine matrices. Specifically, GCE and mTGase can be integrated into the root canal irrigating and dentine boding procedures, where they may generate beneficial effects on preservation of integrity of dentine as well as dentine-sealer interface.
机译:简介:龋齿仍然是世界上最流行的疾病之一。与主要通过调节矿物质平衡而恢复的搪瓷龋齿不同,牙本质龋齿的特征是有机基质的不可逆的蛋白水解分解,这突出表明迫切需要寻求新的管理策略。已经提出了对牙本质基质的生物修饰作为增强其生物化学和生物力学特性的新颖的替代方法。所得的化学稳定性和机械耐久性对于预防和恢复牙本质龋是特别需要的。然而,常规的交联剂,例如聚四氟乙烯。戊二醛,甲醛由于明显的细胞毒性或随时间的不稳定性而不适用于临床。假设:先前的研究表明,五倍子提取物(GCE)可以抑制致龋微生物并积极调节牙釉质的去矿化/再矿化平衡,其机理是针对涉及氢,共价,离子键和疏水过程的多酚-有机基质相互作用。微生物转谷氨酰胺酶(mTGase)可以通过ε-(γ-谷氨酰基)赖氨酸(GL键)催化酰基转移反应,从而诱导肽链之间的交联并改善食品蛋白质的功能特性。鉴于牙本质中有机物含量高以及GCE和mTGase的普遍反应性质,我们提出了一个假设,即这两种天然产物可作为新型生物相容性生物修饰剂,以改善牙本质基质的生化和生物力学特性。假设的评估:我们的假设的验证将提供深刻的见解,以更新当前针对牙本质龋的治疗策略,并为牙本质基质的生物相容性生物修饰开创新型方法。具体而言,GCE和mTGase可以整合到根管冲洗和牙本质粘合程序中,在其中它们可能对保持牙本质的完整性以及牙本质封闭器界面产生有益的影响。

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