Excited to share on our work (@Verstreken_Lab) in @NeuroCellPress out today, where we show how synaptic #autophagy is linked with neurotransmission by the protein - EndophilinA, and how a #Parkinsonsdisease risk mutant alters this function. https://t.co/P06JmszE5D.
📣 The 25th HFSP Awardees Meeting is coming!
Three days of science and collaboration at the heart of Geneva’s innovation hub. What a joy! 🙃 Save the Date:
📅 8–10 July 2026
📍 Campus Biotech Geneva, Switzerland
https://t.co/C7iKVCrRkB
#HFSPmtg2026#sts 🧪
Using nanobodies expressed in cells to do spt. Activated b2Adrenergic receptors are almost completely immobile. Check this out: https://t.co/vNWGIIWpO4 @Meunierlab@rachelgormal
Very happy to see our collaborative project led by @Rebecca_SanGlia with @adamkeithwalker out today in @NatureComms, tracking proteomic changes in the cortex throughout disease in TDP-43 mice with comparison to human #ALS#FTD https://t.co/OuOCErpvXb
Very excited to have been part of this collaboration with the team! Study uncovering the role of lncRNA in memory. @TWBredy @kunlebade@MeunierLab (and others) #lncRNA#superresolution 🧠🔬
Short Link: https://t.co/cQi1GOvt3j
https://t.co/lG2Y3lpb0f
Did you think that biomolecular condensates were always large: check our last paper on Tau forming nanoscale BMCs at the synapse. Check this out: https://t.co/WPNWPqMSp9
@MeunierLab@marmol_dr and Shanley Longfield
What an amazing week at the SilverStone circuit with my RAD fellows. Thanks to the amazing team @racingdementia and @SJYSClassic for providing this great platform for us all!
Epic week at the RAD Summer School with our Fellows from around the world! Great insights from F1 teams and medical experts, intense training, and much more. Stay tuned for our thrilling highlights. The race is on ... 🏎️
Cytoplasmic TDP-43 accumulation drives many dynamic changes to the cortex proteome. Together with @adamkeithwalker and the @WalkerNeuroLab, we have produced a “molecular map” of disease-specific changes over time in a mouse model of ALS and FTD.
https://t.co/PZWilerxzz.
#QBI researcher, Dr Adekunle Bademosi has dedicated his time towards investigating why a protein called TDP-43 clumps in the brains of people with frontotemporal dementia.
🔗https://t.co/QcclnkB97y
@DementiaAus@kunlebade#brain#research#science
Formula 1 partners with the Race Against Dementia charity 🤝
Established by Sir Jackie Stewart, the charity raises money for global research, the development of treatments and a potential cure for dementia
#F1@racingdementia
All of this beautiful imaging and more was done by the very hard working @SeanKeato and @kunlebade with @adamkeithwalker. Enjoy our new paper out now in CMLS.
EndophilinA-dependent coupling between activity-induced calcium influx and synaptic autophagy is disrupted by a Parkinson-risk mutation https://t.co/pZsTYpti8i
So proud of my former PhD student @kunlebade who, in the same week, became a dad and published his very cool postdoctoral work with @Verstreken_Lab in Neuron. Well done Kunle! @MeunierLab more celebration! @QldBrainInst https://t.co/CeA1vdGhg3
Dr Adekunle Bademosi & his team found that a Parkinson’s-linked gene contributes to a build-up of cell debris in the brain. This discovery could change the focus of PD treatments & pave the way for new potential drugs. https://t.co/EnaahAoOH0
@kunlebade#QBI#Parkinsonsdisease