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首页> 外文期刊>Scientific reports. >Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
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Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine

机译:使用甘氨酸引导的HAP @ ACP纳米粒子的Demponized Dentent牙釉质表面的定向和有序仿生倒容

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Achieving oriented and ordered remineralization on the surface of demineralized dental enamel, thereby restoring the satisfactory mechanical properties approaching those of sound enamel, is still a challenge for dentists. To mimic the natural biomineralization approach for enamel remineralization, the biological process of enamel development proteins, such as amelogenin, was simulated in this study. In this work, carboxymethyl chitosan (CMC) conjugated with alendronate (ALN) was applied to stabilize amorphous calcium phosphate (ACP) to form CMC/ACP nanoparticles. Sodium hypochlorite (NaClO) functioned as the protease which decompose amelogenin in vivo to degrade the CMC-ALN matrix and generate HAP@ACP core-shell nanoparticles. Finally, when guided by 10?mM glycine (Gly), HAP@ACP nanoparticles can arrange orderly and subsequently transform from an amorphous phase to well-ordered rod-like apatite crystals to achieve oriented and ordered biomimetic remineralization on acid-etched enamel surfaces. This biomimetic remineralization process is achieved through the oriented attachment (OA) of nanoparticles based on non-classical crystallization theory. These results indicate that finding and developing analogues of natural proteins such as amelogenin involved in the biomineralization by natural macromolecular polymers and imitating the process of biomineralization would be an effective strategy for enamel remineralization. Furthermore, this method represents a promising method for the management of early caries in minimal invasive dentistry (MID).
机译:在脱矿牙釉质表面上实现导向和有序的再矿化,从而恢复了令人满意的机械性能,即将出现的声音珐琅质,对牙医仍然是一个挑战。为了模仿牙釉质再矿化的天然生物矿化方法,在本研究中模拟了搪瓷发育蛋白的生物过程,例如Amelogenin。在这项工作中,亚羧甲基壳聚糖(CMC)被缀合与醛膦酸盐(ALN),以稳定无定形磷酸钙(ACP)形成CMC / ACP纳米颗粒。次氯酸钠(NaClO)用作蛋白酶,其在体内分解Amelogen蛋白,以降解CMC-ALN基质并产生HAP核心 - 壳纳米颗粒。最后,当引导10?MM甘氨酸(GLY)时,HAP @ ACP纳米颗粒可以有序地布置并随后从非晶相转变为良好有序的抗杆状磷灰石晶体,以在酸蚀刻的牙釉质表面上获得取向和有序的仿生再矿化。通过基于非经典结晶理论的纳米颗粒的取向附着(OA)实现该仿真再矿化过程。这些结果表明,通过天然大分子聚合物的酰胺化诸如酰胺化的氨基蛋白等自然蛋白等类似物的发现和发展,并模仿生物矿化过程是牙釉质再矿化的有效策略。此外,该方法代表了在最小侵入性牙科(中期)中的早期龋齿管理的有希望的方法。

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