Desbiolles B X E, Hannebelle M T M, de Coulon E, Bertsch A, Rohr S, Fantner G E, Renaud P
Laboratory of Microsystems LMIS4, Ecole Polytechnique Fédérale de Lausanne, Lausanne 1015, Switzerland.
Laboratory of Bio- and Nano- Instrumentation, Ecole Polytechnique Fédérale de Lausanne, Lausanne 1015, Switzerland.
Nano Lett. 2020 Jun 10;20(6):4520-4529. doi: 10.1021/acs.nanolett.0c01319. Epub 2020 May 27.
Atomic force microscopy based approaches have led to remarkable advances in the field of mechanobiology. However, linking the mechanical cues to biological responses requires complementary techniques capable of recording these physiological characteristics. In this study, we present an instrument for combined optical, force, and electrical measurements based on a novel type of scanning probe microscopy cantilever composed of a protruding volcano-shaped nanopatterned microelectrode (nanovolcano probe) at the tip of a suspended microcantilever. This probe enables simultaneous force and electrical recordings from single cells. Successful impedance measurements on mechanically stimulated neonatal rat cardiomyocytes were achieved using these nanovolcano probes. Furthermore, proof of concept experiments demonstrated that extracellular field potentials (electrogram) together with contraction displacement curves could simultaneously be recorded. These features render the nanovolcano probe especially suited for mechanobiological studies aiming at linking mechanical stimuli to electrophysiological responses of single cells.
基于原子力显微镜的方法在力学生物学领域取得了显著进展。然而,将机械信号与生物反应联系起来需要能够记录这些生理特征的互补技术。在本研究中,我们展示了一种基于新型扫描探针显微镜悬臂的用于光学、力和电学联合测量的仪器,该悬臂在悬浮微悬臂的尖端由突出的火山形状的纳米图案化微电极(纳米火山探针)组成。这种探针能够同时对单个细胞进行力和电记录。使用这些纳米火山探针成功地对机械刺激的新生大鼠心肌细胞进行了阻抗测量。此外,概念验证实验表明,可以同时记录细胞外场电位(心电图)和收缩位移曲线。这些特性使得纳米火山探针特别适用于旨在将机械刺激与单个细胞的电生理反应联系起来的力学生物学研究。