Institute of Crystallography, National Research Council (CNR), Departments of Agrofood and Molecular Design, 00015 Monterotondo Scalo, Rome, Italy.
Biosens Bioelectron. 2013 Sep 15;47:12-25. doi: 10.1016/j.bios.2013.02.043. Epub 2013 Mar 14.
In the last decades, a wide multitude of research activity has been focused on the development of biosensors for glucose monitoring, devoted to overcome the challenges associated with smart analytical performances with commercial implications. Crucial issues still nowadays elude biosensors to enter the market, such as sensitivity, stability, miniaturisation, continuous and in situ monitoring in a complex matrix. A noteworthy tendency of biosensor technology is likely to push towards nanotechnology, which allows to reduce dimensions at the nanoscale, consenting the construction of arrays for high throughput analysis with the integration of microfluidics, and enhancing the performance of the biological components by using new nanomaterials. This review aims to highlight current trends in biosensors for glucose monitoring based on nanotechnology, reporting widespread representative examples of the recent approaches for nanobiosensors over the past 10 years. Progress in nanotechnology for the development of biosensing systems for blood glucose level monitoring will be discussed, in view of their design and construction on the bases of the new materials offered by nanotechnology.
在过去的几十年中,人们开展了广泛的研究活动,致力于开发用于葡萄糖监测的生物传感器,以克服与智能分析性能相关的挑战,并具有商业意义。目前,仍有一些关键问题阻碍了生物传感器进入市场,例如灵敏度、稳定性、小型化、在复杂基质中进行连续和原位监测。生物传感器技术的一个显著趋势可能是推动纳米技术的发展,纳米技术可以将尺寸缩小到纳米级,从而构建用于高通量分析的阵列,并通过使用新材料来提高生物元件的性能。本文旨在强调基于纳米技术的葡萄糖监测生物传感器的当前趋势,报告过去 10 年中纳米生物传感器的广泛代表性实例。将讨论纳米技术在开发用于监测血糖水平的生物传感系统方面的进展,着眼于根据纳米技术提供的新材料进行生物传感系统的设计和构建。