Rocha Lab

@rochalab.bsky.social

Laboratory of Biomaterials and Nanotechnology @ KU Leuven, interested in mechanobiology, 3D cell models, cancer metastasis, biosensors and nanoparticles. Fluorescence microscopy aficionados 🔬 https://susanarocha.github.io/

How do cells feel force? 🤔 We tested a full panel of FRET-based vinculin tension sensors side by side under identical conditions using FLIM and found something important: the readout depends not only on force, but also on the design of the probe itself. 📄 Paper: www.biorxiv.org/content/10.6...

From Sensor Design to Force Maps: A Systematic Evaluation of FRET-based Vinculin Tension Sensors

Mechanical forces transmitted through focal adhesions regulate cell behavior and disease progression, yet remain difficult to quantify at the molecular level. Genetically encoded FRET-based tension probes enable measurements of piconewton-scale forces across specific proteins in living cells, but their quantitative interpretation is highly sensitive to probe design and measurement modality. Here, we systematically compared vinculin tension sensors under identical experimental conditions, evaluating unloaded reference constructs, fluorophore pairs, mechanical sensor modules, and circularly permuted variants. Unloaded controls established a common no-force baseline and validated force-dependent readout. Among the fluorophore pairs tested, the green-red combination Clover-mScarlet-I yielded a higher unloaded FRET efficiency and hence a broader measurable dynamic range. Comparison of six mechanical sensor modules identified the binary-response sensors FL and CC-S2 as the most responsive, showing the largest force-dependent FRET changes and broadest FRET distributions. At the sub-focal adhesion level, CC-S2 reported the steepest proximal-to-distal tension gradient, indicating that vinculin tension increases sharply along peripheral adhesions and exceeds 10 piconewton. Circular permutation experiments revealed that fluorophore orientation has a strong, module-dependent influence on the measured FRET readout. Together, these results establish a comparative framework for interpreting FLIM-based vinculin tension measurements and provide practical design principles for selecting and engineering molecular tension probes. ### Competing Interest Statement The authors have declared no competing interest. Research Foundation - Flanders, https://ror.org/03qtxy027, G0C2422N, G0A8L24N, G0B9922N, 1S95125N KU Leuven, C14/22/085

biorxiv.org

Still buzzing after the @cellmech2025.bsky.social conference in Leuven! It was great to connect with so many experts in mechanobiology and to be part of this close, dynamic community. We enjoyed the inspiring talks and left with plenty of new ideas.💡 Already looking forward to the next edition!

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Hydrogels are essential in mechanobiology—and PIC is a game changer. Fully synthetic yet highly biomimetic, PIC opens new possibilities for 3D cell culture applications. Congrats to Hongbo Yuan, Kouwer Lab, and rochalab.bsky.social on this detailed Nature Protocols guide! 👏📜

Fibrous polyisocyanide hydrogels for 3D cell culture applications - Nature Protocols

Methods to use polyisocyanide as a model matrix for 3D cell culture. Polyisocyanide gels closely mimic the physical properties of biogels such as collagen and fibrin and, as fully synthetic materials,...

nature.com

What if tweaking nanoparticles isn’t enough to improve nanomedicine? 🧐 In our latest work, we show that tumor biology – not just particle design – affects how nanoparticles behave. Same particles. Different tumors. Totally different outcomes. 🤯 🔎 Curious? Check it out: doi.org/10.1101/2025...

Beyond One-Size-Fits-All: Tumor Biology Influences Nanoparticle Behaviour in Cancer Models

Nanoparticles (NPs) are a promising tool for cancer therapy, yet few have successfully reached clinical application. Current nanomedicine development pipelines are focused on optimizing physical prope...

biorxiv.org

✨The IUPAC Global Women’s Breakfast is a wrap!✨ A big thank you to our inspiring speakers for sharing their experiences and motivating the next generation of scientists. Perfect timing to celebrate this on the International Day of Women in Science!👩🏻‍🔬 Let’s keep breaking barriers and building bonds!

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If you have a passion for single-molecule super-resolution microscopy🔬, there are great news to share: the SMLMS conference series will continue this year and will be held in Bonn/Germany Aug 27th to 29th ✨- please save the date and join us, we are looking forward to meeting you there👇🏻

SMLMS 2025@smlm-symposium.bsky.social · 2y ago

Welcome to our blue space! SMLMS 2025 is actively in the making! Soon we will be able to reveal our amazing speaker line-up here in Bonn! Stay tuned! While waiting, maybe already bookmark smlms.org! 👈 See you in August 2025 in Bonn!

A reminder to colleagues interested in Cell-Matrix adhesion & anything ECM related that registration is now open for the Fibronectin, Integrins & related molecules Gordon Research Conference. Incredible list speakers! incredible location! it will 🔥 🔥 🔥 Please join us! www.grc.org/fibronectin-...

2025 Fibronectin, Integrins and Related Molecules Conference GRC

The 2025 Gordon Research Conference on Fibronectin, Integrins and Related Molecules will be held in Lucca (Barga), Lucca Italy. Apply today to reserve your spot.

grc.org

How do cells translate molecular forces into mechanical actions? 🧬🔬💪 Our new research combines Traction Force Microscopy (TFM) with FRET-based tension sensors to uncover how focal adhesions manage vinculin tension and cellular traction. Check it out: www.biorxiv.org/content/10.1...

Linking Molecular Tension and Cellular Tractions: A Multiscale Approach to Focal Adhesion Mechanics

Focal adhesions (FAs) are mechanosensitive structures that mediate force transmission between cells and the extracellular matrix. While Traction Force Microscopy (TFM) quantifies cellular tractions ex...

biorxiv.org

Lab life = science, fun, and cake! 🎂🥳 Nina Anseeuw outdid herself with this lab-logo masterpiece for her birthday. Starting 2025 on a sweet note with science and great vibes! Here’s to more good times (and good science)! 🔬✨ #LabLife #Happy2025

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Super proud to see the efforts of @borislouis.bsky.social being recognised – even if it has little to do with my own research 😅

Boris Louis 🧪🔬@borislouis.bsky.social · 2y ago

The Correlation Clustering Imaging (CLIM) method developed with @sudiptaseth.bsky.social @hofkenslab.bsky.social, Scheblykin lab, had two milestones last week: 1) Science and innovation award (KU leuven) 2) Accepted in Advanced materials You can read about it here, meanwhile: doi.org/10.26434/che...

🔬 Hydrogels Redefined 🔬 What happens when you combine polymer science with collaborative creativity? In a project driven by Dankers' group (Eindhoven) and in collaboration with Kouwer's team (Nijmegen), we explored multi-dynamic hydrogels that combine stress-stiffening and supramolecular polymers.

Synthetic, multi-dynamic hydrogels by uniting stress-stiffening and supramolecular polymers

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science.org

At the Rocha Lab, we work at the intersection of chemistry 🧪 and biology 🧬, developing hydrogel-based 3D cell models that mimic natural tissues. Our passion for microscopy 🔬 drives us to explore the intricate details of biological systems, pushing the boundaries of cellular research!

Interested in an interdisciplinary PhD? Join us to explore dynamic cell-ECM interactions using advanced microscopy and nanoparticles! Be a part of the partnership program between KU Leuven and Melbourne University and travel to the other side of the world! Apply now! www.kuleuven.be/personeel/jo...

Nano-Enhanced Hydrogels for Probing Cellular Mechanotransduction

Join us to explore dynamic cell-ECM interactions using advanced microscopy and nanoparticles.

kuleuven.be

We are thrilled to announce that Indra Van Zundert has been awarded a prestigious FWO post-doctoral fellowship! 🎉 She will join our team in October, using 3D cell models to develop DNA origamis for gene therapy. 🧬 Can't wait to have you with us at KU Leuven!

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Super proud to share the success of the IUPAC Global Women’s Breakfast held at @KU_Leuven! With the support of the Chemistry Department, we hosted over 60 enthusiastic participants. A big shoutout to our speakers for their openness during the Q&A session #GWB2024 #WomeninSTEM

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Excited to announce that we are joining the IUPAC Global Women's Breakfast initiative. We are hosting a special lunch @KULeuven to celebrate women in chemistry. It's a fantastic opportunity to connect with fellow female chemists #GWB2024

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Delighted to have hosted Hokkaido University's scientific delegation at KU Leuven for the Core-2-Core symposium yesterday! 🥳After 4 years due to COVID, it was fantastic to meet in person. Big thanks to our colleagues from Melbourne University for joining us online! 🌏

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The Feel the Force summer school is a wrap! Big shoutout to all the participants for their interest and 'mechano-passion'. Huge thanks to the Rocha Lab & Co for their incredible support! Couldn't be happier with this awesome team!

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The end of first day of our 'Feel the force' summer school ended like this. Thanks to everyone from the Rocha Lab for their help setting up! And a special thanks to prof. Jelle Hendrix for his amazing tutorial talk on FRET!

team supporting the summer school