SpruijtLab

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SpruijtLab

SpruijtLab

@SpruijtLab

Our lab uses coacervate based materials to investigate protocells, synthetic cells, and biomolecular condensates. Also on Bluesky *Operated by the lab

Radboud University, Nijmegen Katılım Şubat 2019
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SpruijtLab
SpruijtLab@SpruijtLab·
Curious about the open questions in the field of liquid-liquid phase separation? Check out our latest paper in Communications Chemistry for a discussion of current insights and open questions. Read here: nature.com/articles/s4200…
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SpruijtLab
SpruijtLab@SpruijtLab·
Curious how biocondensates localize ions? We found that condensates selectively bind and localize both chaotropic anions and kosmotropic cations. This alters the condensate composition, interface potential and RNA duplex stability inside. By @IrisSmokers biorxiv.org/content/10.110…
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SpruijtLab
SpruijtLab@SpruijtLab·
We're thrilled to announce an open PhD position on exploring controlling condensate membrane attachment and exocytosis! Collaborate across Europe in the ComeInCell EU network. Apply now! Details: comeincell.org & ru.nl/en/working-at/…
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Claudia
Claudia@ClaudiaBonfio·
Ever wondered when coacervates appeared on early Earth and what they looked like? Think no more and have a look at our new preprint! Incredibly proud of @karinakinuyo and @mihoubi_nina for their incredible work, dedication and patience! 🤩 chemrxiv.org/engage/chemrxi…
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SpruijtLab
SpruijtLab@SpruijtLab·
Our latest preprint is now live on bioRxiv! We demonstrate how to control α-synuclein adsorption, desorption, and aggregation at charged biomolecular condensate interfaces. Check it out here: doi.org/10.1101/2024.1…
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Oliver Maguire
Oliver Maguire@oliver_maguire·
I’m very happy to have been awarded an @ERC_Research Starting Grant to begin my lab at @UoBChemistry. eBioNetAniMat will create new decision-making animate materials. Huge thank you to the ERC, the panel, reviewers, all at @UoBChemistry, my mentors, coworkers+students #ERCStG /1
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SpruijtLab
SpruijtLab@SpruijtLab·
Want to measure the volume fraction of biocondensates or coacervates? We present easy and accurate methods, with which we found that upon destabilization, condensates can either shrink or swell, giving insight in condensate volume regulation in cells. chemrxiv.org/engage/chemrxi…
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SpruijtLab
SpruijtLab@SpruijtLab·
We are thrilled to announce that our latest review on the role of biomolecular condensates in protein aggregation is now published in @NatRevChem! Many thanks to the reviewers for their valuable suggestions and feedback. Open access here: nature.com/articles/s4157…
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SpruijtLab
SpruijtLab@SpruijtLab·
Coacervates can accelerate (bio)chemical reactions and direct their outcome. In our new review by @IrisSmokers we detail how their unique properties allow them to function as catalytic microcompartments at the origins of life. Have a look here: pubs.acs.org/doi/10.1021/ac…
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Phase Transition Papers
Phase Transition Papers@Pha_Tran_Papers·
How Droplets Can Accelerate Reactions─Coacervate Protocells as Catalytic Microcompartments dlvr.it/T9Cx6J
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Huck Group
Huck Group@Huckgroup·
In our new paper, now published in @Nature, we report on the discovery and implementation of a chemical reservoir computer based on the prebiotic formose reaction. Congrats to Mathieu, Thijs, @quentin_duez , @robn_will and Wilhelm!🥳 Read the paper 👇 nature.com/articles/s4158…
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Oliver Maguire
Oliver Maguire@oliver_maguire·
An E. coli cell contains ~2500 different chemicals. A chemist combining 2500 different chemicals in a lab will result in an explosion. This is the Many-Chemicals Problem of Systems Chemistry. I explain how to overcome this key obstacle to creating more complex systems.
ChemSystemsChem@ChemSystemsChem

The Many-Chemicals Problem of Systems Chemistry by Oliver R. Maguire @oliver_maguire onlinelibrary.wiley.com/doi/10.1002/sy…

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SpruijtLab
SpruijtLab@SpruijtLab·
Over the weekend our publication on studying the surface charge of condensates on a single droplet level was published in @NatureComms! You can read it now here: doi.org/10.1038/s41467…
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