Department of Biotechnology, National Institute of Technology Warangal, Warangal 506004, Telangana, India.
Department of Biotechnology, National Institute of Technology Warangal, Warangal 506004, Telangana, India.
Biosens Bioelectron. 2016 Jan 15;75:196-205. doi: 10.1016/j.bios.2015.08.042. Epub 2015 Aug 21.
Importance of cholesterol biosensors is already recognized in the clinical diagnosis of cardiac and brain vascular diseases as discernible from the enormous amount of research in this field. Nevertheless, the practical application of a majority of the fabricated cholesterol biosensors is ordinarily limited by their inadequate performance in terms of one or more analytical parameters including stability, sensitivity and detection limit. Nanoscale materials offer distinctive size tunable electronic, catalytic and optical properties which opened new opportunities for designing highly efficient biosensor devices. Incorporation of nanomaterials in biosensing devices has found to improve the electroactive surface, electronic conductivity and biocompatibility of the electrode surfaces which then improves the analytical performance of the biosensors. Here we have reviewed recent advances in nanomaterial-based cholesterol biosensors. Foremost, the diverse roles of nanomaterials in these sensor systems have been discussed. Later, we have exhaustively explored the strategies used for engineering cholesterol biosensors with nanotubes, nanoparticles and nanocomposites. Finally, this review concludes with future outlook signifying some challenges of these nanoengineered cholesterol sensors.
重要的是胆固醇生物传感器已经认识到在临床诊断的心脏和脑血管疾病从大量的研究在这一领域。然而,大多数制造的胆固醇生物传感器的实际应用通常受到限制,因为它们在一个或多个分析参数方面的性能不足,包括稳定性、灵敏度和检测限。纳米材料提供了独特的尺寸可调谐的电子、催化和光学性能,为设计高效的生物传感器设备开辟了新的机会。将纳米材料纳入生物传感设备已被发现可以改善电极表面的电活性、电子导电性和生物相容性,从而提高生物传感器的分析性能。在这里,我们回顾了基于纳米材料的胆固醇生物传感器的最新进展。首先,讨论了纳米材料在这些传感器系统中的多种作用。后来,我们详细探讨了用于工程胆固醇生物传感器的策略与纳米管、纳米粒子和纳米复合材料。最后,这篇综述以这些纳米工程胆固醇传感器的一些挑战为标志,对未来的展望进行了总结。