Roffay Chloé, García-Arcos Juan Manuel, Chapuis Pierrik, López-Andarias Javier, Schneider Falk, Colom Adai, Tomba Caterina, Di Meglio Ilaria, Barrett Katia, Dunsing Valentin, Matile Stefan, Roux Aurélien, Mercier Vincent
Department of Biochemistry, University of Geneva, Geneva, Switzerland.
Department of Organic Chemistry, University of Geneva, Geneva, Switzerland.
Nat Protoc. 2024 Dec;19(12):3457-3469. doi: 10.1038/s41596-024-01027-6. Epub 2024 Aug 29.
Measuring forces within living cells remains a technical challenge. In this Tutorial, we cover the development of hydrophobic mechanosensing fluorescent probes called Flippers, whose fluorescence lifetime depends on lipid packing. Flipper probes can therefore be used as reporters for membrane tension via the measurement of changes in their fluorescence lifetime. We describe the technical optimization of the probe for imaging and provide working examples for their characterizations in a variety of biological and in vitro systems. We further provide a guideline to measure biophysical parameters of cellular membranes by fluorescence lifetime imaging microscopy using Flipper probes, providing evidence that flippers can report long range forces in cells, tissues and organs.
测量活细胞内的力仍然是一项技术挑战。在本教程中,我们介绍了一种名为Flippers的疏水性机械传感荧光探针的开发,其荧光寿命取决于脂质堆积。因此,Flipper探针可通过测量其荧光寿命的变化用作膜张力的报告分子。我们描述了用于成像的探针的技术优化,并提供了在各种生物和体外系统中对其进行表征的工作示例。我们还提供了一份指南,介绍如何使用Flipper探针通过荧光寿命成像显微镜测量细胞膜的生物物理参数,证明Flipper探针可以报告细胞、组织和器官中的长程力。