Capponi Giulio, Zambito Martina, Neri Igor, Cottone Francesco, Mattarelli Maurizio, Vassalli Massimo, Caponi Silvia, Florio Tullio
Dipartimento di Fisica e Geologia, Università di Perugia, 06100 Perugia, Italy.
Sezione di Farmacologia, Dipartimento di Medicina Interna, Università di Genova, 16132 Genova, Italy.
Nanomaterials (Basel). 2022 Aug 5;12(15):2691. doi: 10.3390/nano12152691.
Mechanotransduction refers to the cellular ability to sense mechanical stimuli from the surrounding environment and convert them into biochemical signals that regulate cellular physiology and homeostasis. Mechanosensitive ion channels (MSCs), especially ones of Piezo family (Piezo1 and Piezo2), play a crucial role in mechanotransduction. These transmembrane proteins directly react to mechanical cues by triggering the onset of an ionic current. The relevance of this mechanism in driving physiology and pathology is emerging, and there is a growing need for the identification of an affordable and reliable assay to measure it. Setting up a mechanosensitivity assay requires exerting a mechanical stimulus on single cells while observing the downstream effects of channels opening. We propose an open-hardware approach to stimulate single adherent cells through controlled microindentation, using a 3D-printed actuation platform. We validated the device by measuring the mechanosensitivity of a neural mice cell line where the expression level and activity of Piezo1 were genetically and pharmacologically manipulated. Moreover, this extremely versatile device could be integrated with different read-out technologies, offering a new tool to improve the understanding of mechanotransduction in living cells.
机械转导是指细胞感知周围环境中的机械刺激并将其转化为调节细胞生理和体内平衡的生化信号的能力。机械敏感离子通道(MSCs),尤其是Piezo家族(Piezo1和Piezo2)的通道,在机械转导中起着关键作用。这些跨膜蛋白通过触发离子电流的产生直接对机械信号做出反应。这种机制在驱动生理和病理过程中的相关性正在显现,并且越来越需要一种经济实惠且可靠的检测方法来测量它。建立机械敏感性检测需要在观察通道开放的下游效应的同时对单个细胞施加机械刺激。我们提出了一种开放硬件方法,使用3D打印驱动平台通过控制微压痕来刺激单个贴壁细胞。我们通过测量Piezo1的表达水平和活性在基因和药理学上进行操纵的神经小鼠细胞系的机械敏感性来验证该设备。此外,这种极其通用的设备可以与不同的读出技术集成,为增进对活细胞中机械转导的理解提供了一种新工具。