纳米羟基磷灰石及其在牙科预防、修复和再生中的应用:文献综述。

Annali di stomatologia Pub Date : 2014-11-20 eCollection Date: 2014-07-01
Erlind Pepla, Lait Kostantinos Besharat, Gaspare Palaia, Gianluca Tenore, Guido Migliau
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引用次数: 0

摘要

本研究旨在批判性地总结纳米羟基磷灰石的文献。本文的目的是分析纳米羟基磷灰石在牙科中的应用,特别是在预防、修复和再生方面的应用。我们也提供了新的牙科材料的概述,仍然是实验性的,其中包含纳米羟基磷灰石在其纳米晶体形式。羟基磷灰石是医学领域研究最多的生物材料之一,因为它具有良好的生物相容性,并且是骨骼和牙齿矿物质部分的主要成分。在牙科修复和预防方面,纳米羟基磷灰石对初始牙釉质病变具有明显的再矿化作用,肯定优于常规氟化物,对牙齿的敏感性也有很好的效果。纳米透明质酸也被用作一种添加剂材料,以改善已经存在的和广泛使用的牙科材料,在修复领域(实验添加到传统的玻璃离聚体水泥中,这导致了其机械性能的显著改善)。由于其独特的特性,如与骨化学结合的能力,不诱导毒性或炎症,并通过对成骨细胞的直接作用刺激骨生长,纳米透明质酸已广泛应用于牙周病学和口腔颌面外科。然而,由于该物质具有优异的骨诱导能力并改善骨与种植体的整合,其在口腔种植学中的应用已被广泛应用多年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nano-hydroxyapatite and its applications in preventive, restorative and regenerative dentistry: a review of literature.

Nano-hydroxyapatite and its applications in preventive, restorative and regenerative dentistry: a review of literature.

This study aims to critically summarize the literature about nano-hydroxyapatite. The purpose of this work is to analyze the benefits of using nano-hydroxyapatite in dentistry, especially for its preventive, restorative and regenerative applications. We also provide an overview of new dental materials, still experimental, which contain the nano-hydroxyapatite in its nano-crystalline form. Hydroxyapatite is one of the most studied biomaterials in the medical field for its proven biocompatibility and for being the main constituent of the mineral part of bone and teeth. In terms of restorative and preventive dentistry, nano-hydroxyapatite has significant remineralizing effects on initial enamel lesions, certainly superior to conventional fluoride, and good results on the sensitivity of the teeth. The nano-HA has also been used as an additive material, in order to improve already existing and widely used dental materials, in the restorative field (experimental addition to conventional glass ionomer cements, that has led to significant improvements in their mechanical properties). Because of its unique properties, such as the ability to chemically bond to bone, to not induce toxicity or inflammation and to stimulate bone growth through a direct action on osteoblasts, nano-HA has been widely used in periodontology and in oral and maxillofacial surgery. Its use in oral implantology, however, is a widely used practice established for years, as this substance has excellent osteoinductive capacity and improves bone-to-implant integration.

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