Tonda-Turo Chiara, Carmagnola Irene, Ciardelli Gianluca
Department of Mechanical and Aerospace Engineering, Politecnico di Torino, Turin, Italy.
POLITO BIOMedLAB, Politecnico di Torino, Turin, Italy.
Front Bioeng Biotechnol. 2018 Oct 30;6:158. doi: 10.3389/fbioe.2018.00158. eCollection 2018.
The Quartz Crystal Microbalance with dissipation monitoring (QCM-D) is a tool to measure mass and viscosity in processes occurring at or near surfaces, or within thin films. QCM-D is able to detect extremely small chemical, mechanical, and electrical changes taking place on the sensor surface and to convert them into electrical signals which can be investigated to study dynamic process. Surface nanotopography and chemical composition are of pivotal importance in biomedical applications since interactions of medical devices with the physiological environment are mediated by surface features. This review is intended to provide readers with an up-to-date summary of QCM-D applications in the study of cell behavior and to discuss the future trends for the use of QCM-D as a high-throughput method to study cell/surface interactions overcoming the current challenges in the design of biomedical devices.
具有耗散监测功能的石英晶体微天平(QCM-D)是一种用于测量在表面或其附近、或在薄膜内发生的过程中的质量和粘度的工具。QCM-D能够检测传感器表面发生的极其微小的化学、机械和电学变化,并将其转换为电信号,这些电信号可用于研究动态过程。表面纳米形貌和化学成分在生物医学应用中至关重要,因为医疗设备与生理环境的相互作用是由表面特征介导的。本综述旨在为读者提供QCM-D在细胞行为研究中的最新应用总结,并讨论将QCM-D用作高通量方法来研究细胞/表面相互作用以克服生物医学设备设计中当前挑战的未来趋势。