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纳米技术与牙种植体

Nanotechnology and dental implants.

作者信息

Lavenus Sandrine, Louarn Guy, Layrolle Pierre

机构信息

Inserm U957, Bone Resorption Physiopathology and Primary Bone Tumors Therapy, Faculty of Medicine, University of Nantes - 1 rue Gaston Veil, 44035 Nantes cedex 1, France.

出版信息

Int J Biomater. 2010;2010:915327. doi: 10.1155/2010/915327. Epub 2010 Dec 28.

Abstract

The long-term clinical success of dental implants is related to their early osseointegration. This paper reviews the different steps of the interactions between biological fluids, cells, tissues, and surfaces of implants. Immediately following implantation, implants are in contact with proteins and platelets from blood. The differentiation of mesenchymal stem cells will then condition the peri-implant tissue healing. Direct bone-to-implant contact is desired for a biomechanical anchoring of implants to bone rather than fibrous tissue encapsulation. Surfaces properties such as chemistry and roughness play a determinant role in these biological interactions. Physicochemical features in the nanometer range may ultimately control the adsorption of proteins as well as the adhesion and differentiation of cells. Nanotechnologies are increasingly used for surface modifications of dental implants. Another approach to enhance osseointegration is the application of thin calcium phosphate (CaP) coatings. Bioactive CaP nanocrystals deposited on titanium implants are resorbable and stimulate bone apposition and healing. Future nanometer-controlled surfaces may ultimately direct the nature of peri-implant tissues and improve their clinical success rate.

摘要

牙种植体的长期临床成功与它们早期的骨结合有关。本文综述了生物流体、细胞、组织和种植体表面之间相互作用的不同步骤。植入后即刻,种植体与血液中的蛋白质和血小板接触。间充质干细胞的分化将决定种植体周围组织的愈合情况。为了实现种植体与骨的生物力学锚固,而不是纤维组织包封,需要直接的骨与种植体接触。诸如化学性质和粗糙度等表面特性在这些生物相互作用中起决定性作用。纳米尺度的物理化学特征最终可能控制蛋白质的吸附以及细胞的黏附和分化。纳米技术越来越多地用于牙种植体的表面改性。另一种增强骨结合的方法是应用薄磷酸钙(CaP)涂层。沉积在钛种植体上的生物活性CaP纳米晶体是可吸收的,并能刺激骨附着和愈合。未来的纳米尺度可控表面最终可能决定种植体周围组织的性质,并提高其临床成功率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a3f/3021857/192f120a9712/IJBM2010-915327.001.jpg

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