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Nanostructured Titanate with Different Metal Ions on the Surface of Metallic Titanium: A Facile Approach for Regulation of rBMSCs Fate on Titanium Implants

机译:金属钛表面上具有不同金属离子的纳米结构钛酸盐:调节钛植入物上rBMSCs命运的简便方法

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摘要

Titanium (Ti) is widely used for load-bearing bio-implants, however, it is bioinert and exhibits poor osteo-inductive properties. Calcium and magnesium ions are considered to be involved in bone metabolism and play a physiological role in the angiogenesis, growth, and mineralization of bone tissue. In this study, a facile synthesis approach to the in situ construction of a nanostructure enriched with Ca~(2+) and Mg 2+ on the surface of titanium foil is proposed by inserting Ca~(2+) and Mg 2+ into the interlayers of sodium titanate nanostructures through an ion-substitution process. The characteriz 0.67, and 0.73 nm ation results validate that cations can be inserted into the interlayer regions of the layered nanostructure without any obvious change of morphology. The cation content is positively correlated to the concentration of the solutions employed. The biological assessments indicate that the type and the amount of cations in the titanate nanostructure can alter the bioactivity of titanium implants. Compared with a Na + filled titanate nanostructure, the incorporation of divalent ions (Mg~(2+), Ca~(2+)) can effectively enhance protein adsorption, and thus also enhance the adhesion and differentiation ability of rat bone-marrow stem cells (rBMSCs). The Mg ~(2+) /Ca~(2+) -titanate nanostructure is a promising implantable material that will be widely applicable in artificial bones, joints, and dental implants.
机译:钛(Ti)广泛用于承重生物植入物,但是,它具有生物惰性,并且显示出较差的骨诱导性能。钙和镁离子被认为与骨骼代谢有关,并且在骨骼组织的血管生成,生长和矿化中起生理作用。在这项研究中,提出了一种在钛箔表面原位构建富含Ca〜(2+)和Mg 2+的纳米结构的简便合成方法。钛酸钠纳米结构的中间层通过离子取代过程。 0.67和0.73 nm的阳离子化结果验证了阳离子可以插入层状纳米结构的中间层区域,而形态没有任何明显变化。阳离子含量与所用溶液的浓度呈正相关。生物学评估表明,钛酸酯纳米结构中阳离子的类型和数量可以改变钛植入物的生物活性。与Na +填充的钛酸盐纳米结构相比,掺入二价离子(Mg〜(2 +),Ca〜(2+))可以有效增强蛋白质的吸附,从而增强大鼠骨髓干的黏附和分化能力。细胞(rBMSC)。 Mg〜(2 +)/ Ca〜(2 +)-钛酸酯纳米结构是一种有前途的可植入材料,将广泛应用于人造骨,关节和牙科植入物中。

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