Institute of Microelectronics, NCSR Demokritos, Terma Patriarchou Grigoriou, Agia Paraskevi 15310, Greece.
Biosens Bioelectron. 2011 Sep 15;27(1):1-11. doi: 10.1016/j.bios.2011.05.047. Epub 2011 Jun 24.
The growing interest in personalized medicine leads to the need for fast, cheap and portable devices that reveal the genetic profile easily and accurately. To this direction, several ideas to avoid the classical methods of diagnosis and treatment through miniaturized and label-free systems have emerged. Capacitive biosensors address these requirements and thus have the perspective to be used in advanced diagnostic devices that promise early detection of potential fatal conditions. The operation principles, as well as the design and fabrication of several capacitive microsystems for the detection of biomolecular interactions are presented in this review. These systems are micro-membranes based on surface stress changes, interdigitated micro-electrodes and electrode-solution interfaces. Their applications extend to DNA hybridization, protein-ligand binding, antigen-antibody binding, etc. Finally, the limitations and prospects of capacitive microsystems in biological applications are discussed.
人们对个性化医疗的兴趣日益浓厚,这导致人们需要快速、廉价且便携的设备,以便轻松、准确地揭示基因谱。为此,人们提出了一些想法,希望通过微型化和无标记系统来避免传统的诊断和治疗方法。电容式生物传感器满足了这些要求,因此有望应用于先进的诊断设备中,以实现对潜在致命情况的早期检测。本综述介绍了用于检测生物分子相互作用的几种电容式微系统的工作原理、设计和制造。这些系统基于表面应力变化的微膜、叉指微电极和电极-溶液界面。它们的应用扩展到 DNA 杂交、蛋白-配体结合、抗原-抗体结合等。最后,讨论了电容式微系统在生物应用中的局限性和前景。