Check out @TheGatherLab‘s latest work applying the ERISM technique. Together w/ @DVRebeca and @silParacchini, we investigated a cellular KO for a gene implicated in dyslexia and saw actin-rich protrusions generate tiny vertical forces in epithelial cells. https://t.co/YahWCqRQld
A new tool for the detection of cell forces. As precise and robust as ERISM, but in real-time and with a 250fold increase in temporal resolution to 100 fps!!! Check out Andrew Meek's new paper on wavelength-alternating resonant pressure microscopy (WARP): https://t.co/mX747vbFam
Which mechanical & biochemical factors affect cellular basement membrane transmigration & what role play oscillating filopodia that pierce the BM prior to transmigration? In our latest work with Noetzel-Reiss @fz_juelich we examined cell acini with ERISM. https://t.co/VN2Q58mKLt
Our double feature in @NatureComms - Paper on 12µm thin, flexible #OLED stable in water and solvents for weeks, https://t.co/h8DNaVe3Wg. +Paper on guiding #fruitfly larvae with arrays of microOLEDs and #optogenetics, https://t.co/5gvectVT23. Congrats to @MurawskiLab and @CKeum25.
"Some (don't) like it hot" -- Yali's paper on making top-emitting #OLEDs more temperature stable for thin-film #encapsulation by #ALD has just appeared. https://t.co/UVPJwPuLHS
@SchubertLab @UniCologne I did not know that the logo of Frankfurt Airport features a fibroblast adhering to a 2D surface… very nice! :-) Good luck for your next step!
Check out our latest work published in Frontiers in Cellular Neuroscience! The protein Willin influences both mechanical phenotype and neuronal differentiation in mammalian cells by regulating ERK1/2 activity @aml78i
https://t.co/OohS5wBzkE
Our new paper is out, showing that cells don't adapt their own stiffness to that of their environment. @NatureMaterials Great job by Johannes Rheinländer & our amazing collaborators @G_Charras @BetzLab@KevinChalut & Malte Gather. https://t.co/4jizSHGHpa
Elena Dalaka presents the first direct measurement of the tiny mechanical forces invadopodia of cancer cells exert when degrading ECM. Have you always wondered how the mechanical activity of invadopodia is correlated to their proteolytic ability? https://t.co/SX1cmJw316
In this study @DVRebeca generated a cellular KO for a gene implicated in dyslexia. With @silParacchini and @angela_marang21 we used biophotonics methods to checked the effects on cytoskeleton-associated functions. https://t.co/g1FaSqbkZa