Covalent surface immobilization on metal implants: Key aspects on post-synthesis characterization

Luna Sánchez-López
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Abstract

A variety of methodologies have been applied for characterizing covalent immobilizations of biomolecules and other compounds on metal implant surfaces, due to the positive impact of functionalization and the enhancement of biomimetic signaling at covalently immobilized biomaterial surfaces. However, current challenges should be addressed, as both physically adsorbed and covalently immobilized molecules usually coexist on functionalized surfaces and covalent immobilization efficiencies greatly vary among works, in which the immobilized biomolecule size seems a determinant parameter of the efficiency.

Discrimination of the irreversible-bound covalent fraction should be assessed and advanced techniques for surface characterization must be conducted, such as quartz crystal microbalance or photon induced spectroscopy, as evaluation criteria. Verification of biomolecule activity once it is covalently immobilized on metal substrates is also required. Long-term stability and degradation resistances studies are also highly recommended for obtention of long-lasting, biomimetic-active surfaces upon covalent functionalization of metal biomaterials for medical applications.

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金属植入物的共价表面固定:合成后表征的主要方面
由于功能化的积极影响以及共价固定生物材料表面仿生信号的增强,人们采用了多种方法对金属植入物表面的生物分子和其他化合物的共价固定进行表征。然而,目前面临的挑战是,功能化表面通常同时存在物理吸附分子和共价固定分子,共价固定效率在不同的研究中差异很大,其中固定生物分子的大小似乎是效率的决定性参数。还需要验证共价固定在金属基底上的生物分子的活性。此外,还强烈建议进行长期稳定性和抗降解性研究,以便在共价功能化金属生物材料后获得持久的生物仿生活性表面,用于医疗应用。
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Biomedical engineering advances
Biomedical engineering advances Bioengineering, Biomedical Engineering
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59 days
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