Moreira Felismina T C, Moreira-Tavares Ana P, Sales M Goreti F
BioMark Sensor Research, Instituto Superior de Engenharia do Porto, R. Dr. Antonio Bernardino de Almeida, 431, 4200-072 Porto, Portugal.
Curr Top Med Chem. 2015;15(3):245-55. doi: 10.2174/1568026614666141229113012.
Biosensors have opened new horizons in biomedical analysis, by ensuring increased assay speed and flexibility, and allowing point-of-care applications, multi-target analyses, automation and reduced costs of testing. This has been a result of many studies merging nanotechnology with biochemistry over the years, thereby enabling the creation of more suitable environments to biological receptors and their substitution by synthetic analogue materials. Sol-gel chemistry, among other materials, is deeply involved in this process. Sol-gel processing allows the immobilization of organic molecules, biomacromolecules and cells maintaining their properties and activities, permitting their integration into different transduction devices, of electrochemical or optical nature, for single or multiple analyses. Sol-gel also allows to the production of synthetic materials mimicking the activity of natural receptors, while bringing advantages, mostly in terms of cost and stability. Moreover, the biocompatibility of sol-gel materials structures of biological nature allowed the use of these materials in emerging in vivo applications. In this chapter, biosensors for biomedical applications based on sol-gel derived composites are presented, compared and described, along with current emerging applications in vivo, concerning drug delivery or biomaterials. Sol-gel materials are shown as a promising tool for current, emerging and future medical applications.
生物传感器通过提高检测速度和灵活性,实现即时检测应用、多靶点分析、自动化并降低检测成本,为生物医学分析开辟了新的视野。这是多年来众多将纳米技术与生物化学相结合的研究成果,从而能够为生物受体创造更适宜的环境,并使用合成类似物材料对其进行替代。溶胶-凝胶化学与其他材料一样,深度参与了这一过程。溶胶-凝胶工艺能够固定有机分子、生物大分子和细胞,同时保持它们的特性和活性,使其能够集成到不同的电化学或光学性质的传感装置中,用于单分析或多分析。溶胶-凝胶还能够生产模拟天然受体活性的合成材料,同时带来诸多优势,主要体现在成本和稳定性方面。此外,具有生物性质的溶胶-凝胶材料结构的生物相容性,使得这些材料能够用于新兴的体内应用。在本章中,将介绍、比较和描述基于溶胶-凝胶衍生复合材料的生物医学应用生物传感器,以及当前在体内新兴的药物递送或生物材料应用。溶胶-凝胶材料被视为当前、新兴及未来医学应用的一种有前景的工具。