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Stefano Bo

@bosste.bsky.social
217 followers 348 following 5 posts

Lecturer in the Biological Physics and Soft Matter Group at King’s College London stefano.bo

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Stefano Bo @bosste.bsky.social · 29/08/2026
Really enjoyed this “fully in-house” collaboration! Hope you’ll like it too.
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Reposted by Stefano Bo
Physical Review X @physrevx.aps.org · 26/08/2026
Living systems operate out of equilibrium to enable rich, complex behaviors. To quantify how far from equilibrium a system is, a study proposes a simple method that tracks and categorizes individual molecules’ displacements. Read more: go.aps.org/4hWqD7Q
The structure of the talin-1 protein represented as curly ribbons in red, orange, yellow, greens, and blues.
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Reposted by Stefano Bo
Lars Hubatsch @larshubatsch.bsky.social · 16/09/2025
Paper alert!🧪 We derive a theory that underpins interface resistance with a physical foundation and look at how it changes droplet growth and recovery kinetics! Awesome collab with @bosste.bsky.social Tyler Harmon @hymanlab.bsky.social @m-pol.bsky.social and Frank Jülicher @mpipks.bsky.social 1/4
elifesciences.org
Transport kinetics across interfaces between coexisting liquid phases
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Reposted by Stefano Bo
@physicsoflifeuk @physicsoflifeuk.bsky.social · 26/03/2025
Another exciting day ahead at 'Physics of Life 2025'! Highlights include keynote talks by Satyajit Mayor & Otger Campàs, cutting-edge sessions, lunchtime talks, and a dinner at Pavilions of Harrogate - all whilst the sun shines down on us!
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Stefano Bo @bosste.bsky.social · 26/03/2025
How are single-molecule dynamics influenced by phase separation? What happens if these molecules undergo chemical reactions as they often do in biomolecular condensates? What if they are driven out of equilibrium? arxiv.org/abs/2503.19517 @larshubatsch.bsky.social @mpipks.bsky.social
arxiv.org
Single-molecule trajectories of reactants in chemically active biomolecular condensates
Biomolecular condensates provide distinct chemical environments, which control various cellular processes. The diffusive dynamics and chemical kinetics inside phase-separated condensates can be studie...
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Stefano Bo @bosste.bsky.social · 13/03/2025
First submission from the new lab! Have a look at the method we developed for the 2024 Anomalous Diffusion Challenge arxiv.org/abs/2503.09422
arxiv.org
Recurrent neural network analysis of single trajectories switching between anomalous diffusion states
Diffusive dynamics abound in nature and have been especially studied in physical, biological, and financial systems. These dynamics are characterised by a linear growth of the mean squared displacemen...
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Reposted by Stefano Bo
Gabriel Neurohr @gabrielneurohr.bsky.social · 27/01/2025
@CharlotteAumeier @barrallab.bsky.social @bosste.bsky.social y.social @gcelora.bsky.social lora.bsky.social @FredChang @AshutoshChilkoti @softliv.bsky.social @JimFerrel @gladfelterlab.bsky.social @alexholehouse.bsky.social @FrankJülicher @sophiemartinlab.bsky.social @Tim Mitchison @DianaMitrea
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Pombo-GarciaLab @pombo-garcialab.bsky.social · 13/01/2025
We started the year with a great founding meeting of the Biomolecular Condensates UK Network! Thanks for support @RosFrankInst @IOPPublishing @durham_uni @EdinburghUni
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Stefano Bo @bosste.bsky.social · 13/01/2025
I have an exciting opportunity for a PhD on the study of force sensing proteins www.findaphd.com/phds/project... The candidate will have the opportunity to perform experiments in the lab of Rafael Tapia-Rojo and develop theory and machine-learning approaches with me. Start date June 2025
findaphd.com
Machine learning the dynamics of force-sensing proteins at King’s College London on FindAPhD.com
PhD Project - Machine learning the dynamics of force-sensing proteins at King’s College London, listed on FindAPhD.com
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Reposted by Stefano Bo
Lars Hubatsch @larshubatsch.bsky.social · 07/01/2025
1/6 🧪 Preprint-Alert! We looked at how molecules move across phase boundaries, e.g., in liquid droplets, taking into account that chemical potentials inside and outside the boundary can be different! This unites recent work with stuff from the 60s and has cool consequences 👇 shorturl.at/j0U6i
biorxiv.org
Transport kinetics across interfaces between coexisting liquid phases
We investigate the kinetics of material transport across interfaces in phase-separated mixtures. Using non-equilibrium thermodynamics we derive the interfacial kinetics, describing the movement of the...
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Stefano Bo @bosste.bsky.social · 27/12/2024
Hello world! See our latest pre-print www.biorxiv.org/content/10.1... with @larshubatsch.bsky.social and @mpipks.bsky.social @weberlab.bsky.social @biorxiv-biophys.bsky.social
biorxiv.org
Transport kinetics across interfaces between coexisting liquid phases
We investigate the kinetics of material transport across interfaces in phase-separated mixtures. Using non-equilibrium thermodynamics we derive the interfacial kinetics, describing the movement of the...
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