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三氧化矿物凝聚体诱导的修复性牙本质生成:从生物学和物理化学角度的综述

Reparative dentinogenesis induced by mineral trioxide aggregate: a review from the biological and physicochemical points of view.

作者信息

Okiji Takashi, Yoshiba Kunihiko

机构信息

Division of Cariology, Operative Dentistry & Endodontics, Department of Oral Health Science, Niigata University Graduate School of Medical & Dental Sciences, 5274 Gakkocho-dori 2-bancho, Chuo-ku, Niigata 951-8514, Japan.

出版信息

Int J Dent. 2009;2009:464280. doi: 10.1155/2009/464280. Epub 2009 Dec 28.

Abstract

This paper aims to review the biological and physicochemical properties of mineral trioxide aggregate (MTA) with respect to its ability to induce reparative dentinogenesis, which involves complex cellular and molecular events leading to hard-tissue repair by newly differentiated odontoblast-like cells. Compared with that of calcium hydroxide-based materials, MTA is more efficient at inducing reparative dentinogenesis in vivo. The available literature suggests that the action of MTA is attributable to the natural wound healing process of exposed pulps, although MTA can stimulate hard-tissue-forming cells to induce matrix formation and mineralization in vitro. Physicochemical analyses have revealed that MTA not only acts as a "calcium hydroxide-releasing" material, but also interacts with phosphate-containing fluids to form apatite precipitates. MTA also shows better sealing ability and structural stability, but less potent antimicrobial activity compared with that of calcium hydroxide. The clinical outcome of direct pulp capping and pulpotomy with MTA appears quite favorable, although the number of controled prospective studies is still limited. Attempts are being conducted to improve the properties of MTA by the addition of setting accelerators and the development of new calcium silicate-based materials.

摘要

本文旨在综述三氧化矿物凝聚体(MTA)的生物学和物理化学性质,及其诱导修复性牙本质形成的能力,这一过程涉及复杂的细胞和分子事件,最终由新分化的成牙本质样细胞实现硬组织修复。与氢氧化钙类材料相比,MTA在体内诱导修复性牙本质形成方面更有效。现有文献表明,MTA的作用归因于暴露牙髓的自然伤口愈合过程,尽管MTA在体外可刺激硬组织形成细胞诱导基质形成和矿化。物理化学分析表明,MTA不仅作为一种“释放氢氧化钙”的材料,还与含磷酸盐的液体相互作用形成磷灰石沉淀。与氢氧化钙相比,MTA还表现出更好的封闭能力和结构稳定性,但抗菌活性较弱。尽管对照前瞻性研究的数量仍然有限,但MTA用于直接盖髓和牙髓切断术的临床效果似乎相当良好。目前正在尝试通过添加促凝剂和开发新型硅酸钙基材料来改善MTA的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/850e/2837314/1e56e3448648/IJD2009-464280.001.jpg

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