Measuring forces inside cells is particularly challenging. With the development of quantitative microscopy, fluorophores which allow the measurement of forces became highly desirable. We have previously introduced a mechanosensitive flipper probe, which responds to the change of plasma membrane tension by changing its fluorescence lifetime and thus allows tension imaging by FLIM. Herein, we describe the design, synthesis, and evaluation of flipper probes that selectively label intracellular organelles, i.e., lysosomes, mitochondria, and the endoplasmic reticulum. The probes respond uniformly to osmotic shocks applied extracellularly, thus confirming sensitivity toward changes in membrane tension. At rest, different lifetimes found for diffe...
Mechanical forces play critical roles in collective cell behaviors such as cell migration, prolifera...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...
Measuring forces inside cells is particularly challenging. With the development of quantitative micr...
Measuring forces inside cells is particularly challenging. With the development of quantitative micr...
Abstract Measuring forces within living cells remains a technical challenge. We developed hydrophobi...
Tools to image membrane tension in response to mechanical stimuli are badly needed in mechanobiology...
Tools to image membrane tension in response to mechanical stimuli are badly needed in mechanobiology...
Cells and organelles are delimited by lipid bilayers in which high deformability is essential to man...
HydroFlippers are introduced as the first fluorescent membrane tension probes that report simultaneo...
In 2016, Flipper-TR® has been introduced as the first small fluorescent molecule capable of visualiz...
Fluorescent flipper probes have been introduced recently to image membrane tension in live cells, an...
Mechanosensitive flipper probes are attracting interest as fluorescent reporters of membrane order a...
Flipper-TR® was introduced to image membrane tension in living cells. Targeting strategies to study ...
Summary: Cell membrane is the first medium from where a cell senses and responds to external stress ...
Mechanical forces play critical roles in collective cell behaviors such as cell migration, prolifera...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...
Measuring forces inside cells is particularly challenging. With the development of quantitative micr...
Measuring forces inside cells is particularly challenging. With the development of quantitative micr...
Abstract Measuring forces within living cells remains a technical challenge. We developed hydrophobi...
Tools to image membrane tension in response to mechanical stimuli are badly needed in mechanobiology...
Tools to image membrane tension in response to mechanical stimuli are badly needed in mechanobiology...
Cells and organelles are delimited by lipid bilayers in which high deformability is essential to man...
HydroFlippers are introduced as the first fluorescent membrane tension probes that report simultaneo...
In 2016, Flipper-TR® has been introduced as the first small fluorescent molecule capable of visualiz...
Fluorescent flipper probes have been introduced recently to image membrane tension in live cells, an...
Mechanosensitive flipper probes are attracting interest as fluorescent reporters of membrane order a...
Flipper-TR® was introduced to image membrane tension in living cells. Targeting strategies to study ...
Summary: Cell membrane is the first medium from where a cell senses and responds to external stress ...
Mechanical forces play critical roles in collective cell behaviors such as cell migration, prolifera...
Imaging membranes in live cells with nanometer-scale resolution promises to reveal ultrastructural d...
We report the design, synthesis, and evaluation of fluorescent flipper probes for single-molecule su...