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聚环氧乙烷涂层钛植入物与环状RGD肽和氨基酸双膦酸盐共轭物的生物活性建模

Modeling of Biological Activity of PEO-Coated Titanium Implants with Conjugates of Cyclic RGD Peptide with Amino Acid Bisphosphonates.

作者信息

Parfenova Lyudmila V, Galimshina Zulfiya R, Gil'fanova Guzel U, Alibaeva Eliza I, Danilko Ksenia V, Aubakirova Veta R, Farrakhov Ruzil G, Parfenov Evgeny V, Valiev Ruslan Z

机构信息

Institute of Petrochemistry and Catalysis, Ufa Federal Research Center, Russian Academy of Sciences, 141, Prospekt Oktyabrya, 450075 Ufa, Russia.

Central Research Laboratory, Bashkir State Medical University, 3 Lenin Street, 450000 Ufa, Russia.

出版信息

Materials (Basel). 2022 Nov 16;15(22):8120. doi: 10.3390/ma15228120.

Abstract

Titanium is considered to be the most essential metal in the field of implantology. The main factors determining metal biocompatibility, among others, include the morphology and chemical composition of the titanium surface. Therefore, the aim of this work was to develop approaches to control the biological activity of the titanium surface by creating coatings that combine both an inorganic phase with a given morphology and organic molecules containing an integrin-selective peptide that regulate cell adhesion and proliferation. As such, we synthesized new c(RGDfC) derivatives of amino acid bisphosphonates (four examples) with different bisphosphonate anchors and maleimide linkers. These molecules were deposited on a highly developed porous surface obtained via the plasma electrolytic oxidation (PEO) of coarse-grained and nanostructured titanium. In vitro studies demonstrated the increase in the viability degree of mesenchymal stem cells and fibroblasts on the surface of coarse-grained or nanostructured titanium modified with PEO and a c(RGDfC) derivative of ε-aminocaproic acid bisphophonate with an SMCC linker. As a result, the use of conjugates of amino acid bisphosphonates with a cyclic RGD peptide for the modification of PEO-coated titanium opens the ways for the effective control of the biological activity of the metal implant surface.

摘要

钛被认为是植入学领域中最重要的金属。决定金属生物相容性的主要因素包括钛表面的形态和化学成分等。因此,本研究的目的是通过制备涂层来开发控制钛表面生物活性的方法,该涂层将具有特定形态的无机相和含有调节细胞黏附与增殖的整合素选择性肽的有机分子结合在一起。为此,我们合成了具有不同双膦酸盐锚定基团和马来酰亚胺连接基团的新型氨基酸双膦酸盐的c(RGDfC)衍生物(四个实例)。这些分子沉积在通过粗晶和纳米结构钛的等离子体电解氧化(PEO)获得的高度发达的多孔表面上。体外研究表明,在用PEO和带有SMCC连接基团的ε-氨基己酸双膦酸盐的c(RGDfC)衍生物修饰的粗晶或纳米结构钛表面上,间充质干细胞和成纤维细胞的活力程度有所提高。因此,使用氨基酸双膦酸盐与环状RGD肽的缀合物修饰PEO涂层钛为有效控制金属植入物表面的生物活性开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7190/9699121/2c089c7713eb/materials-15-08120-g001.jpg

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