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NANOMATERIAL COATINGS FOR OSTEOINTEGRATED BIOMEDICAL PROSTHESES

机译:整骨生物假体用纳米材料涂层

摘要

The present invention proposes novel materials and methods, for preparation of coatings based on titanium dioxide for osteointegrated biomedical prostheses. The coatings are realized with nanomaterials having antibacterial properties, and have the purpose of : promoting osteointegration of the implants, and, at the same time, reducing rejection attributable to inflammatory processes which derive from infections which may develop in the neighborhood of the implants. In particular, the present invention relates to an endo-osseous implant comprised of biocompatible metallic materials; characterized in that said implant comprises a coating comprised of nanocrystalline material comprising nanoparticles of formula (I) AOx- (L- Men+) i , (I) where AOx represents TiO2 or ZrO2; Men+ is a metallic ion having antibacterial activity, with n = 1 or 2; L is a bi functional organic molecule which can simultaneously bind to the metal oxide and to the metallic ion Men+; and i is the number of L-Men+ groups bound to one nanoparticle of AOx.
机译:本发明提出了新颖的材料和方法,用于制备基于骨粉的生物医学假体的基于二氧化钛的涂层。所述涂层用具有抗菌特性的纳米材料实现,并且具有以下目的:促进植入物的骨整合,并且同时减少归因于炎症过程的排斥反应,所述炎症过程源于可能在植入物附近发展的感染。特别地,本发明涉及一种由生物相容性金属材料构成的骨内植入物。其特征在于,所述植入物包括由纳米晶体材料组成的涂层,所述纳米晶体材料包含式(I)的纳米颗粒:AOx-(L-Men +)i,其中,AOx表示TiO 2或ZrO 2; Men +是具有抗菌活性的金属离子,n = 1或2; L是双功能有机分子,其可以同时结合金属氧化物和金属离子Men +; i是与一个AOx纳米颗粒结合的L-Men +基团的数量。

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