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Andreas Walther

@waltherlab.bsky.social
1.4K followers 656 following 129 posts

Professor in Mainz/GER for Life-Like Systems and Materials, Max Planck Fellow, Travel and Food Enthusiast 🧳, AvHumboldt Postdoc-Scout 📧 me www.walther-group.com

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Andreas Walther @waltherlab.bsky.social · 21/08/2026
Please share this opportunity with researchers who may be a strong fit. #PhDPositions #PostdocJobs #ArtificialCells #SyntheticCells #SyntheticBiology #Biomaterials #DNANanotechnology #biomaterials #cellbiology #SystemsChemistry #ERC
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Andreas Walther @waltherlab.bsky.social · 21/08/2026
Your background in #Chemistry #Biology #Biomaterials #SyntheticBiology can be a fit for our interdisciplinary team! Full project and advert: www.walther-group.com/erc Lab homepage: www.walther-group.com
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Andreas Walther @waltherlab.bsky.social · 21/08/2026
We want to answer one main question: Can synthetic cells live, communicate, and cooperate with mammalian cells? Can we build ecologies? What emergent properties would they have? What new therapeutic concepts could this enable in the biomaterials world?
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Andreas Walther @waltherlab.bsky.social · 21/08/2026
Join us as a #PhD #Researcher or #Postdoc to answer bold questions on our new #ERC Advanced Grant: Protoecologies between Artificial Cells and Mammalian Cells. #ArtificialCells #SyntheticCells #SyntheticBiology #Biomaterials #DNANanotechnology #biomaterials #cellbiology #SystemsChemistry
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Cees Dekker @ceesdekker.bsky.social · 21/07/2026
Here's recording of a zoom talk on synthetic cells and our research towards that, that I gave yesterday in the 'Build-a-Cell' online seminars: www.youtube.com/watch?v=ZPOC...
youtube.com
Build-a-Cell seminar Cees Dekker: EVOLF bottom up approach to building synthetic cell & our research
Build-a-Cell seminar presented by Cees Dekker from Delft University of Technology EVOLF: a bottom up approach to building a synthetic cell, and our recent research therein This is recording of live…
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Andreas Walther @waltherlab.bsky.social · 11/07/2026
Weekend with the old DWI friends in Potsdam. Fantastic break.
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Reposted by Andreas Walther
SFB 1551 - Collaborative Research Centre 1551 @sfb1551.bsky.social · 25/06/2026
👏👏👏Congratulations to SFB 1551 group leaders Edward Lemke @lemkelab.bsky.social and Andreas Walther @waltherlab.bsky.social at Johannes Gutenberg University Mainz (JGU) @unimainz.bsky.social @imbmainz.bsky.social on being awarded prestigious European Research Council (ERC) Advanced Grants.
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Andreas Walther @waltherlab.bsky.social · 11/06/2026
#AdvancedMaterials #ReservoirComputing #ChemicalComputing #Microfluidics #DNAComputing #SoftMatter #Hydrogels #AdaptiveMaterials #SystemsChemistry
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Andreas Walther @waltherlab.bsky.social · 11/06/2026
Chemistry + flow + structure = adaptive chemical computing. Big congrats to the master - first author Piet!!
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Andreas Walther @waltherlab.bsky.social · 11/06/2026
New in Advanced Materials: Our “soft hardware, flowing software” platform uses rewritable hydrogel microfluidics to reshape chemical computation—and implements a reservoir computer from flowing reaction dynamics. advanced.onlinelibrary.wiley.com/doi/epdf/10....
advanced.onlinelibrary.wiley.com
Soft Hardware, Flowing Software: Reconfigurable Microfluidics for Adaptable Chemical Computation
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Andreas Walther @waltherlab.bsky.social · 04/05/2026
📍 Mainz, Germany 📅 Start: from July 2026 ⏳ Rolling evaluation; deadline end of May 2026 🔗 More info: www.walther-group.com Please share with excellent Master’s students who want to build adaptive, life-like, intelligent molecular systems.
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Andreas Walther @waltherlab.bsky.social · 04/05/2026
You will join an international, interdisciplinary team working at the interface of systems chemistry, DNA nanoscience, polymer materials, synthetic cells, soft matter, and life-like materials. Possible association with the Max Planck Graduate Center.
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Andreas Walther @waltherlab.bsky.social · 04/05/2026
🧪 PhD 2: Chemo-mechano Materials We will combine hydrogels, mechanical metamaterials, and chemical reaction networks to create materials where geometry, mechanics, and chemistry feed back on each other. #SystemsChemistry #Mechanochemistry
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Andreas Walther @waltherlab.bsky.social · 04/05/2026
🧬 PhD 1: DNA-based Synthetic Cells We aim to engineer enzymatically active synthetic cells with reaction modules, emergent behaviours such as flow/propulsion, and adaptive features such as habituation and sensitisation. #DNANanoscience #ActiveMatter
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Andreas Walther @waltherlab.bsky.social · 04/05/2026
🚀 We are recruiting 2 PhD researchers to join the Walther Lab @ JGU Mainz! Help us build intelligent matter: synthetic cells and hydrogel materials that compute, adapt, move, learn, or make simple decisions. #PhDPosition #SyntheticCells #Hydrogels
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Andreas Walther @waltherlab.bsky.social · 26/04/2026
Heading out to San Sebastian for the ChemBio 2026.. lnkd.in/dKpHVREp. Looking forward to meeting the Spanish Community and beyond. My keynote is on Tuesday - happy to discuss, just approach me.
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a black and white photo of a man standing in a living room holding a drum .
ALT: a black and white photo of a man standing in a living room holding a drum .
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Andreas Walther @waltherlab.bsky.social · 23/04/2026
That’s why we got the good food !!
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Andreas Walther @waltherlab.bsky.social · 23/04/2026
It has been great catching up with @pappasgroup.bsky.social in @uni-freiburg.de. King of phosphates in #systemschemistry
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Andreas Walther @waltherlab.bsky.social · 24/03/2026
We think this could open exciting future opportunities in tissue engineering, morphogenesis, dynamic cell programming, and multi-layered mechanical-biochemical control. Very happy that this work was supported by our ERC funding. #ERCfunded @erc.europa.eu
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Andreas Walther @waltherlab.bsky.social · 24/03/2026
Because the whole system is built from nucleic acids, it is naturally compatible with DNA strand displacement and reaction networks. That allowed us to go beyond static sensing and introduce reversible switching and temporal programming of mechanosensitivity.
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Andreas Walther @waltherlab.bsky.social · 24/03/2026
A key idea is that aptamers let us access noncanonical surface receptors for mechanotransduction. Using this, we could probe distinct mechanical inputs, including actomyosin-driven contractility and membrane ruffling during macropinocytosis
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Andreas Walther @waltherlab.bsky.social · 24/03/2026
Tao Xu developed an all-DNA mechanosensing platform in which aptamers act as synthetic receptor ligands embedded into force-responsive DNA mechanoprobes. This enables cell-type-selective force sensing rather than relying only on broadly expressed classical receptors such as integrins.
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Andreas Walther @waltherlab.bsky.social · 24/03/2026
Excited to share “Synthetic Aptamer Mechanoreceptors Enable Cell-Specific Force Sensing and Temporal Control via DNA Circuits.” in NatComm. This is our most significant excursion into mechanobiology #mechanobiology #DNAnanoscience #aptamers www.nature.com/articles/s41...
nature.com
Synthetic aptamer mechanoreceptors enable cell-specific force sensing and temporal control via DNA circuits - Nature Communications
Engineering synthetic mechanosensing systems with both cell-specificity and programmability remains challenging, especially for classical mechanoreceptors. Here, the authors develop an all-DNA mechano...
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🔮 Why this matters: Reconfigurable soft microfluidics point toward adaptive chemical matter, embodied computation, and future closed-loop chemical learning systems. #physicalintelligence #softmatter #adaptivematerials
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🧱 Key message: We add a new computational dimension - hardware-level programmability - to chemical computing. Function is reassigned by physical reconfiguration, not molecular redesign.
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🧠 These patterns become computation: The material system itself acts as a physical reservoir, enabling analogue & reservoir computing. Nonlinear functions are recovered with a simple linear readout: The complexity lives in the material. #reservoircomputing
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🌊 Then things get fun: With a pH oscillator, reconfigurable geometry gives rise to standing chemical waves. Emergent spatiotemporal patterns from the interplay of reaction dynamics × flow × structure. #complexity #oscillator #noneqsys
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🧬 We show this first with switchable DNA logic: AND ↔ OR gates realized using the same DNA network — logic reassigned purely by reconfiguring microfluidic flow paths. #DNAnanoscience
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🔁 This enables something powerful: The same molecular system can perform different computations simply by changing physical structure. No new DNA strands. No new chemistry. Just new geometry. #chemicalcomputation #systemschemistry
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
💡 The core idea: Instead of encoding computation only in chemistry, we make the reaction vessel itself programmable. Soft hydrogel structures can be written & erased in situ, reshaping flow, mixing, and reaction environments on demand. #3Dprinting #microfluidics
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Andreas Walther @waltherlab.bsky.social · 27/01/2026
🧪🧠 New preprint out! Soft Hardware, Flowing Software We introduce reconfigurable microfluidics as an active control layer for chemical computation. Geometry, and flow, and not molecular redesign, programs function. Great work by Piet! chemrxiv.org/doi/full/10....
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Andreas Walther @waltherlab.bsky.social · 14/01/2026
I will soon be in Singapore (22-31.Jan) for the Dean's Distinguished Speaker Series #NTU #Singapore hosted by Ali Miserez. Very excited to go and thank you to Ali! @Singaporean researchers, if you want to meet me, I am happy to do so. PLease send me a direct message.
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Andreas Walther @waltherlab.bsky.social · 14/01/2026
Schrödinger was in our canteen and the decision is yet to be made. 🤯😳at least 50 % chance to get it right.
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Reposted by Andreas Walther
Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 20/12/2025
Multidisciplinary training, over time, produces the highest impact people www.science.org/doi/10.1126/...
science.org
Recent discoveries on the acquisition of the highest levels of human performance
Scientists have long debated the origins of exceptional human achievements. This literature review summarizes recent evidence from multiple domains on the acquisition of world-class performance. We re...
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Andreas Walther @waltherlab.bsky.social · 18/12/2025
Fun Xmas day with a team of amazing people. Life is good 😊
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Andreas Walther @waltherlab.bsky.social · 14/12/2025
@mpici.bsky.social
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Andreas Walther @waltherlab.bsky.social · 14/12/2025
Taking my @sfb1551.bsky.social socks for another spin to visit Silvia Vignolini at the MPI in golm. A long trip…
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Andreas Walther @waltherlab.bsky.social · 07/12/2025
Let’s get the show on the road. Best way to start the day. #roma
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Andreas Walther @waltherlab.bsky.social · 10/11/2025
I made it to Cambridge 😀. Looking forward to meeting some ECRs and speaking later today at the Engineering Biology Forum.
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Andreas Walther @waltherlab.bsky.social · 02/11/2025
Duck 🦆 - chestnuts 🌰 - carrot 🥕- blueberrry 🫐 #chemistswhocook
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Andreas Walther @waltherlab.bsky.social · 25/10/2025
Saturday 🧑‍🍳. Cod loin, cauliflower coconut purée, cilantro/lime oil and some barberries.. #chemistswhocook #silkysmoothpuree
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Andreas Walther @waltherlab.bsky.social · 23/10/2025
Looking very much forward to speaking at the Institute for Molecules and Materials in Nijmegen tmrw. Deutsche Bahn is playing all tricks to prevent me from reaching it.
media.tenor.com
a black and white photo of a train on the tracks
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Andreas Walther @waltherlab.bsky.social · 23/10/2025
Congratulations to Soumya and Charu for making the first ATP-fueled homeostatic cytokine delivery system for communication between artificial and living cells. Now in Angewandte Chemie @angewandtechemie.bsky.social #syntheticcell #noneqsys #DNAnanoscience onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
ATP‐Powered Signaling Between Artificial and Living Cells
We introduce an ATP-powered artificial cell platform capable of selectively and transiently releasing DNA signals to facilitate communication between artificial and living cells. By engineering these...
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Andreas Walther @waltherlab.bsky.social · 23/10/2025
Fresh in @natchemeng.nature.com Growing artificial cytoskeleton in the viscoelastic confinement of DNA Artificial Cells. Brilliant work bey Weixiang! #Syntheticcell #systemschemistry www.nature.com/articles/s44...
nature.com
Growing functional artificial cytoskeletons in the viscoelastic confinement of DNA synthetic cells - Nature Chemical Engineering
Engineering structurally and functionally complex synthetic cells remains a key challenge. Here DNA condensate synthetic cells combine phase separation and DNA nanostructures to reveal how switchable ...
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Reposted by Andreas Walther
Engineering Biology Interdisciplinary Research Centre @engbioirc.bsky.social · 14/10/2025
Join us at our EngBio Forum on 10 Nov to hear from Andreas Walther @waltherlab.bsky.social on creating programmable materials and DNA-based synthetic cells that can process information, adapt,and communicate. Don't miss it! Sign up 🫱 buytickets.at/engineeringb... #SyntheticCells #LifeLikeSystems
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SFB 1551 - Collaborative Research Centre 1551 @sfb1551.bsky.social · 08/10/2025
🖥️ New Publication Alert Congratulations to Eric Schumbera, @dormannlab.bsky.social, @waltherlab.bsky.social & @miguelandrade66.bsky.social on their recent publication in BMC Genomics #RGmotifs #IDRs #LLPS #HumanProteome #ComputationalMotifAnalysis bmcgenomics.biomedcentral.com/articles/10....
bmcgenomics.biomedcentral.com
Computational investigation of the sequence context of arginine/glycine-rich motifs in the human proteome - BMC Genomics
Arginine-glycine (RG)-rich motifs are among the most prevalent RNA-binding elements within intrinsically disordered regions (IDRs) of proteins and play crucial roles in RNA metabolism, gene regulation, and the formation of membraneless organelles via liquid phase separation (LLPS). Despite their biological relevance and implication in neurological disorders and cancer, the sequence features and context dependencies that define functional RG motifs remain poorly characterized owing to their disordered nature and sequence variability. In this study, we present a computational framework to dissect the sequence and structural context of RG motifs across the human proteome. By contrasting a functionally defined positive dataset—enriched for RNA-binding and phase-separating proteins—with a negative dataset of RG motif proteins lacking these annotations, we identified distinct compositional and contextual signatures. RG motifs in the functionally defined positive dataset show increased enrichment of phenylalanine, tyrosine, aspartic acid, and asparagine, both within and around the motif, as well as nonrandom spatial relationships with structured RNA-binding domains. Notably, phenylalanine and tyrosine exhibit divergent positional and functional profiles, suggesting distinct mechanistic roles. Our analysis highlights the potential of sequence-based approaches to uncover functional determinants in disordered protein regions and further advances our understanding of the properties of RG motifs, offering a transferable framework for the study of other low-complexity motifs.
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Engineering Biology Interdisciplinary Research Centre @engbioirc.bsky.social · 06/10/2025
We're extremely excited to welcome Prof Andreas Walther @waltherlab.bsky.social and Dr Claudia Contini @continiclau.bsky.social for our next Forum We'll be exploring #SyntheticCells #LifeLikeSystems and #EngineeringBiology from the bottom-up Don't miss it, register now! 👉 bit.ly/engbio-forum-nov25
Headshots of speakers Andreas Walther and Claudia Contini next to text that reads "Engineering Biology Forum. Synthetic Cells. Mon 10 Nov. 5pm to 8pm. St Catharine's College, Cambridge".
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Andrew Bissette @andrewbissette.bsky.social · 11/09/2025
Really happy to see our most recent Voices article, on the importance of DEI in science, published this week. Includes perspectives from 8 researchers from the USA, UK, China, and Bangladesh www.cell.com/cell-reports...
cell.com
Global perspectives on the critical role of diversity, equity, and inclusion in science
Diversity, equity, and inclusion (DEI) are fundamental to advancing scientific innovation and addressing complex societal challenges. This Voices piece gathers insights from eight researchers around t...
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Andreas Walther @waltherlab.bsky.social · 11/09/2025
🚨Oli's soft robotic engines are now in #AdvancedMaterials. A new paradigm for hydrogel actuators - non-reciprocal motion. Kinetic asymmetry rocks advanced.onlinelibrary.wiley.com/doi/full/10.... #softrobotics #ercfunded @erc.europa.eu #hydrogel #actuator #noneqsys #lifelike #physicalintelligence
advanced.onlinelibrary.wiley.com
Soft Robotic Engines with Non‐Reciprocal Motion by Physical Intelligence
Movement is vital, and it requires breaking symmetry. This study introduces a hydrogel engine that achieves non-reciprocal motion through kinetic asymmetry in repeated actuation cycles. This approach....
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Andreas Walther @waltherlab.bsky.social · 11/09/2025
🚨Miao's and Weixiang's work on RNA transcription in DNA based condensates as nucleus mimics is now out in @natcomms.nature.com www.nature.com/articles/s41... #syncell #DNA #condensate #LLPS. Great work to understand transcription and LLPS in #crowded #viscoelastic environments @sfb1551.bsky.social
nature.com
Constructing synthetic nuclear architectures via transcriptional condensates in a DNA protonucleus - Nature Communications
Nuclear biomolecular condensates are functional sub-compartments within the cell nucleus. Here, the authors develop a synthetic DNA protonucleus that enables RNA transcription and condensation into di...
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