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种植牙学中的新型表面与骨结合

Novel surfaces and osseointegration in implant dentistry.

作者信息

Pellegrini Gaia, Francetti Luca, Barbaro Bruno, Del Fabbro Massimo

机构信息

Department of Biomedical, Surgical, and Dental Sciences, University of the Study of Milan, Milan, Italy.

Institute of Hospitalization and Care with a Scientific Character (IRCCS) Galeazzi Orthopaedic Institute, Milan, Italy.

出版信息

J Investig Clin Dent. 2018 Nov;9(4):e12349. doi: 10.1111/jicd.12349. Epub 2018 Jul 4.

Abstract

Survival, differentiation capability, and activity of cells are strictly related to structural features and the composition of the extracellular matrix, and its variation affects tissue homeostasis. Placement of a dental implant in bone tissue activates a sequence of molecular and cellular events that lead to the apposition of newly-formed bone directly onto the titanium surface. Due to implant's interaction with the mineralized tissue, osseointegration is affected by the surface structure of the implanted material. Surface nanotopography and microtopography can modify the shape and activity of mesenchymal stem cells leading to a higher differentiation rate of these cells into osteogenic lineage with the upregulation of osteoblastic genes. Several approaches for implant surface modification are currently under investigation or have been recently proposed to improve osseointegration. Most surface treatments are aimed at the formation of a thick layer of titanium oxide, at the alteration of surface chemical composition by incorporating bioactive molecules and drugs, and at the creation of a surface topography that is more attractive for osteoblast differentiation, adhesion, and osteogenic activity. Data on the cellular-substrate interaction, as well as in vivo studies assessing the response to these novel surfaces, are reviewed in the present study. The application of modern surfaces in dental clinical practice might increase and accelerate implant osseointegration, but could also reduce the occurrence of peri-implant bone loss and favor the re-osseointegration of an affected surface.

摘要

细胞的存活、分化能力和活性与细胞外基质的结构特征及组成密切相关,其变化会影响组织稳态。在骨组织中植入牙种植体可激活一系列分子和细胞事件,导致新形成的骨直接附着在钛表面。由于种植体与矿化组织的相互作用,骨结合受植入材料表面结构的影响。表面纳米形貌和微观形貌可改变间充质干细胞的形态和活性,导致这些细胞向成骨谱系的分化率更高,同时成骨细胞基因上调。目前正在研究或最近已提出几种种植体表面改性方法以改善骨结合。大多数表面处理旨在形成厚的氧化钛层,通过掺入生物活性分子和药物改变表面化学成分,并创造对成骨细胞分化、黏附和成骨活性更具吸引力的表面形貌。本研究综述了关于细胞 - 基质相互作用的数据以及评估对这些新型表面反应的体内研究。现代表面在牙科临床实践中的应用可能会增加并加速种植体骨结合,还可能减少种植体周围骨丢失的发生,并有利于受影响表面的再骨结合。

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