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Pierre Millard

@pierremillard.bsky.social
100 followers 86 following 20 posts

Systems biologist at Toulouse Biotechnology Institute, INRAE, France Member of MetaboHub consortium ❓️ Focus on microbial metabolism for biotechnology and health 🛠 Main tools: modeling, fluxomics, metabolomics, isotope-based approaches

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Reposted by Pierre Millard
Zeynep Baharoglu @zeynepbaharoglu.bsky.social · 20/09/2026
Bacterial growth rate in populations and single cells 🦠💫 www.nature.com/articles/s41... beautiful review by Petra Levin and Jue Wang
nature.com
Bacterial growth rate in populations and single cells - Nature Microbiology
In this Perspective, Levin and Wang give a brief history of bacterial growth rate and discuss how it is connected to nutrient availability and macromolecule synthesis, with a focus on (p)ppGpp as a ce...
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Olivier Borkowski @oborkowski.bsky.social · 29/11/2025
Resource allocation models: theory and applications in microbial biotechnology doi.org/10.1016/j.co...
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Eric Topol @erictopol.bsky.social · 29/10/2025
Why fundamental research is fundamental to progress, seeding major breakthroughs Editorial @nature.com this week And 7 basic science discoveries that changed the world nature.com/articles/d41... nature.com/articles/d41...
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AnniZLab: [🦠, 🧬 , ✨] @annizlab.bsky.social · 23/10/2025
Cool enzyme specificity predictor🦠✨! Build on >300k enzyme-substrate pairs (UniProt, BRENDA, literature), combining ESM-2 embeddings and GNNs to model atom–residue interactions. In one test (34 E. coli metabolites × 860 enzymes), it correctly matched 10! #microsky 🧪 www.nature.com/articles/s41...
nature.com
Enzyme specificity prediction using cross attention graph neural networks - Nature
Nature - Enzyme specificity prediction using cross attention graph neural networks
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Cara Giovanetti @idontevencara.bsky.social · 26/10/2025
Domesticated animals have pulled our heavy carts and turned our large mills for centuries. But what about the opposite end of the spectrum—what if the wheel you want to turn is so small you can’t see it? Turns out we can harness the power of bacteria to power the world’s smallest machines. 1/7 ⚛️🧪
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Ricard Solé @ricardsole.bsky.social · 26/10/2025
How can we design complex computational systems using synthetic biology? Check our paper, where we use space as a computational element, dramatically reducing communication requirements while allowing modularity, reusability, scalability & minimal cell engineering. journals.plos.org/ploscompbiol...
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Olivier Borkowski @oborkowski.bsky.social · 20/10/2025
Cell-Free-Based Thermophilic Biocatalyst for the Synthesis of Amino Acids from One-Carbon Feedstocks doi.org/10.1021/acss...
doi.org
Cell-Free-Based Thermophilic Biocatalyst for the Synthesis of Amino Acids from One-Carbon Feedstocks
Bioproduction from one-carbon compounds, such as formate, is an attractive prospect due to reduced energy requirements and the possibility for using CO2 as a sustainable feedstock. Formate-fixing path...
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Ricard Solé @ricardsole.bsky.social · 28/04/2025
How can biological systems anticipate future events? In our new paper with @jordiplam.bsky.social, we show how a simple genetic circuit can predict future trends through a simple (and perhaps widespread) mechanism @drmichaellevin.bsky.social @koseskalab.bsky.social www.biorxiv.org/content/10.1...
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labnikel.bsky.social @labnikel.bsky.social · 08/10/2025
🚀 Thrilled to share our new Nature Communications article: “A blueprint for designing the next-generation of synthetic C1 microbes” We propose a framework to unlock sustainable, carbon-efficient biomanufacturing using non-canonical hosts. 🔗 www.nature.com/articles/s41... A short 🧵1/4
nature.com
A blueprint for designing the next-generation of synthetic C1 microbes - Nature Communications
Synthetic one-carbon assimilation could contribute to a more sustainable and circular carbon economy, but much work in this field has focused on model microorganisms. Here the authors provide their perspective on the potential value of non-model microbes, and how that potential could be realised.
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Proceedings of the National Academy of Sciences @pnas.org · 06/10/2025
For 25 years, the Chair of the @laskerfdn.bsky.social Jury has reflected on the intersection of science and art in an annual essay. This year, Joseph L. Goldstein explores “From simplicity to complexity: A path to innovation in science and art.” Read now: www.pnas.org/doi/10.1073/...
2025 Lasker Awards – “From simplicity to complexity: A path to innovation in science and art.” Read the essay in a PNAS Perspective. Portrait of Joseph L. Goldstein.
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Astropierre @astropierre.com · 24/09/2025
Suite à la migration de scientifiques et d'universitaires de X, Bluesky est devenue une l'une des alternatives. Afin d'évaluer sa viabilité/pertinence pour la communication scientifique, cette étude présente une analyse à grande échelle de la diffusion d'articles scientifiques sur Bluesky. 1/5
Image d'un téléphone sur lequel se trouve le logo et le nom de Bluesky.
En arrière-plan, un papillon blanc sur fond bleu
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Guim Aguadé-Gorgorió @guimaguade.bsky.social · 20/05/2025
Microbial communities can harbor many species that do not coexist in pairs, yet can coexist in the full community. Here we provide the mathematical foundations of emergent coexistence, and explain why it can't be predicted from pairwise tests www.biorxiv.org/content/10.1...
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AnniZLab: [🦠, 🧬 , ✨] @annizlab.bsky.social · 17/09/2025
Cool! Some gut microbes make 2-MiCit from propionate. In vitro, it inhibits 3D colon tumor growth (and normal cells at high dose). Just a 'lucky' one among millions of microbial by-products? I haven't thought of any selective advantage 🤔 Thoughts? 🦠🧪 #microsky #microbiomesky doi.org/10.1016/j.ce...
cell.com
Chemotherapy modulation by a cancer-associated microbiota metabolite
Martinez-Martinez et al. combine a host-microbe-drug-nutrient screen with multi-omics to reveal how the cancer-associated microbiota modulates chemotherapy. They identify 2-methylisocitrate, a microbi...
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Saez-Rodriguez Group @saezlab.bsky.social · 17/09/2025
🥁 Check out our new preprint on OmniPath, the prior knowledge resource for #SystemsBiology, and its brand-new OmniPath Explorer web app! 🥳 📖 Preprint: www.biorxiv.org/content/10.1... 🔍 Explorer: explore.omnipathdb.org OmniPath integrates 160+ resources for multi-omics analysis & modeling. 🧶⬇️
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Glen Dsouza @nonresidentdesi.bsky.social · 13/06/2025
Thrilled to share our new paper in @science.org describing our discovery that bacteria can switch from competitors to bonafide predators when resources run dry—arming nanoscale “spears” (T6SS) to stab & consume neighbours. www.science.org/doi/10.1126/... #MicroSKy #Microbiology
science.org
Antagonism as a foraging strategy in microbial communities
In natural habitats, nutrient availability limits bacterial growth. We discovered that bacteria can overcome this limitation by acquiring nutrients by lysing neighboring cells through contact-dependen...
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Julien Luneau @juliensluneau.bsky.social · 20/08/2025
Congrats Snorre!!! 👏 It's great to see this coming out 🎉 and thank you for giving the chance to be a (small) part of this very cool work! "Microbes release lower-value metabolites at higher rates" 🦠
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Grace Lindsay @neurograce.bsky.social · 14/09/2025
I've only read the abstract and I already know this paper is so very correct 👀
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Pierre Millard @pierremillard.bsky.social · 14/09/2025
In our new review, we revisit overflow #metabolism across living organisms and propose universal principles of its functioning, integrating insights from studies on yeast, bacterial, and mammalian cells 🦠✨ First first-author paper of Thomas Gosselin-Monplaisir 🥳 👉 Read it here: urlr.me/82Zspc
urlr.me
Overflow metabolism in bacterial, yeast, and mammalian cells: different names, same game | Molecular Systems Biology
EMBO Press is an editorially independent publishing platform for the development of EMBO scientific publications.
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Cell Reports @cp-cellreports.bsky.social · 07/09/2025
Polysomes and mRNA control the biophysical properties of the eukaryotic cytoplasm
dlvr.it
Polysomes and mRNA control the biophysical properties of the eukaryotic cytoplasm
Gade et al. report that polysomes and mRNA levels impact the biophysical properties of the cytoplasm. Using passive rheology probes and single-particle tracking, they demonstrate that intracellular diffusion is enhanced when polysomes are disassembled or when mRNA levels are reduced in eukaryotic cells.
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AnniZLab: [🦠, 🧬 , ✨] @annizlab.bsky.social · 09/09/2025
A plasmid golden ratio? 🧬 Plasmid copy number ≈ 2.5% of chromosome size—consistent across bacterial species! pmc.ncbi.nlm.nih.gov/articles/PMC... @jerorb.bsky.social 🧪 #microbesky
a Scatter plots showing the correlation between plasmid size (x-axis) and PCN (y-axis) for the analysed genera. Each point represents the median PCN and plasmid size for each PTU, and error bars indicate the standard deviation from the median. Grey lines represent ordinary least squares regression, with the surrounding shaded area indicating 95% confidence intervals. The scaling factor or slope, k, is indicated on each panel. b Distribution of total DNA load per plasmid (x-axis) relative to chromosome size per genus (y-axis). The DNA load of each plasmid is calculated by multiplying the plasmid size by the copy number and then expressed as a proportion relative to the chromosome size. The point inside the box marks the median. The upper and lower hinges correspond to the 25th and 75th percentiles, and whiskers extend to 1.5 times the interquartile range. Only Escherichia and Salmonella significantly differ from All; Kruskal–Wallis test followed by Dunn’s test for pairwise multiple comparisons p < 10−4; effect size = 0.006. c Relative plasmid DNA load observed (%) (x-axis) and expected (y-axis) per cell. The y-axis indicates the expected plasmid DNA load (%) inside a cell when it contains one plasmid (1n), two plasmids (2n), and so on. This expected data has been calculated by generating a sequence from 1 to 9 multiplied by the median of the DNA load per plasmid (2.49%). Each green point represents a single genome, and the black points are the median for each category. Shading indicates interquartile ranges. Pearson’s p value and coefficient are shown for the correlation between expected and observed plasmid DNA.
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Pierre Millard @pierremillard.bsky.social · 14/09/2025
Overflow metabolism: Why cells waste nutrients—and why it’s not really waste go.nature.com/4n39Ijw
go.nature.com
Overflow metabolism: Why cells waste nutrients—and why it’s not really waste
Cells often appear to waste nutrients by releasing them as useless, and sometimes toxic, by-products—a phenomenon known as overflow metabolism. Far from being mere waste, these molecules also play vit...
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Ricard Solé @ricardsole.bsky.social · 10/09/2025
Can a single cell learn? Even without a brain, some microbes show simple forms of cognition. Can this basal cognition be engineered? Check our new paper with @jordiplam.bsky.social on the minimal synthetic circuits & their cognitive limits. @drmichaellevin.bsky.social www.biorxiv.org/content/10.1...
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Alex Fedorec @ajfedorec.bsky.social · 13/08/2025
I'm going to be advertising for a few positions in my group in the next couple of months for a big project on synthetic microbial communities. I would love to hear from you if you are interested and I'd also appreciate if everyone could share this far and wide!
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Tanmay Bharat @tbharat-lab.bsky.social · 31/08/2025
Sub-cellular chemical mapping in bacteria using correlated cryogenic electron and mass spectrometry imaging Congrats Hannah Ochner and authors on this important paper! Strong collaboration with @kiranrpatil.bsky.social www.biorxiv.org/cgi/content/... @mrclmb.bsky.social @wellcometrust.bsky.social
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Enrico Orsi @eorsi.bsky.social · 12/09/2025
Please repost! Postdoc in adaptive laboratory evolution and C1 synthetic metabolism! Location: DTU Biosustain 🦠🧬🔬 Starting in 01/2026! Fell free to reach out if you have questions! efzu.fa.em2.oraclecloud.com/hcmUI/Candid...
efzu.fa.em2.oraclecloud.com
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deshadock.bsky.social @deshadock.bsky.social · 14/09/2025
Je pense à ce fil depuis hier, et je me posais la question de ce que ça implique pour les efforts d'apprendre la programmation et ou l'algorithmique aux non spécialistes.
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Philip Ball @philipcball.bsky.social · 05/09/2025
Regulation by RNAs might be even more extensive than we thought. Many enzymes and other proteins not previously considered as RNA-binding proteins do seem to fall into this class & might have their activity regulated by RNA. www.cell.com/cell/fulltex...
cell.com
Rethinking RNA-binding proteins: Riboregulation challenges prevailing views
The advent of system-wide proteomic approaches has largely expanded the number of RNA-binding proteins (RBPs). This review discusses how recent discoveries are transforming our understanding of biolog...
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Olivier Borkowski @oborkowski.bsky.social · 29/08/2025
Strategies and applications of synthetic cell communication doi.org/10.1038/s415...
doi.org
Strategies and applications of synthetic cell communication - Nature Chemical Biology
Recent advances in engineering bottom-up synthetic cells have created powerful compartmentalized biochemical reactors with cell-like abilities. To push the boundaries of the collective capabilities of...
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Clausen Lab @clausenlab.bsky.social · 21/08/2025
big one! a decade in the making. nadler & team develop tools to track lipid transport in living cells at single-species resolution. turns out non-vesicular, asymmetry-driven transport is the main architect of organelle identity. feels like the dawn of a golden era for lipid biology. rdcu.be/eBGJv
rdcu.be
Quantitative imaging of lipid transport in mammalian cells
Nature - Directional, non-vesicular lipid transport is responsible for fast, species-selective lipid sorting into organelle membranes.
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Nature @nature.com · 28/08/2025
For life to emerge on Earth, peptides must first have formed without the aid of enzymes — but how? Reactions of sulfur-containing molecules might have been key go.nature.com/4oX04jC
go.nature.com
Origins of life: the molecules that could have unlocked peptide synthesis
For life to emerge on Earth, peptides must first have formed without the aid of enzymes — but how? Reactions of sulfur-containing molecules might have been key.
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Zeynep Baharoglu @zeynepbaharoglu.bsky.social · 23/08/2025
Aggresomes protect mRNA under stress in Escherichia coli www.nature.com/articles/s41... "prolonged stress leading to ATP depletion in Escherichia coli results in increased aggresome formation, compaction and selective mRNA enrichment within these aggresomes" 🦠 #microsky #rnasky
nature.com
Aggresomes protect mRNA under stress in Escherichia coli - Nature Microbiology
Ribonucleoprotein aggresomes exclude ribonucleases and protect mRNA to promote rapid translation reactivation and cellular recovery after stress alleviation in Escherichia coli.
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Olivier Borkowski @oborkowski.bsky.social · 27/08/2025
Autocatalytic selection of gene functions in vitro doi.org/10.1101/2025...
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Olivier Borkowski @oborkowski.bsky.social · 27/08/2025
Biophysical metabolic modeling of complex bacterial colony morphology www.sciencedirect.com/science/arti...
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Zeynep Baharoglu @zeynepbaharoglu.bsky.social · 27/08/2025
E. Coli with linear growth 🦠🤯 #micdosky "linear proliferation for a finite number of generations" where only one daughter cell continues to divide, with split cyaA making cAMP only in one daughter cell. www.biorxiv.org/content/10.1...
biorxiv.org
Engineering non-exponential proliferation in Escherichia coli using functionalized protein aggregates
Uncurbed exponential proliferation might not always be required for genetically modified microorganisms, and might even cause unpredictable liabilities in their behavior and impact. We therefore const...
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Olivier Borkowski @oborkowski.bsky.social · 09/07/2025
Genetically encoded control of in vitro transcription-translation coupled DNA replication doi.org/10.1101/2025...
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Olivier Borkowski @oborkowski.bsky.social · 09/07/2025
Expression of nano-engineered RNA organelles in bacteria www.biorxiv.org/content/10.1...
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James Saenz @jamessaenz.bsky.social · 08/07/2025
How do lipids shape life? I explore this question in my recent talk for the Build-a-Cell 🦠 seminar series. Thanks to @kateadamala.bsky.social for hosting! Watch it here: youtu.be/JnF7hPCiSbI?...
youtu.be
Build-a-Cell seminar James Saenz: Harnessing minimal cells to understand the living membranes
YouTube video by Build-a-Cell
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Animalcules @bacteriophile.bsky.social · 07/07/2025
enviromicro-journals.onlinelibrary.wiley.com/doi/10.1111/... #MicroSky
enviromicro-journals.onlinelibrary.wiley.com
Exploring Use of a Protein Cage System for Producing Bioactive Peptides in Escherichia coli
Bioactive peptides can be difficult to manufacture biosynthetically. This study explored the use of bacteriophage P22 virus-like particles to encapsulate recombinantly expressed bioactive peptides, e....
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Pablo Ivan Nikel @pabnik.bsky.social · 07/07/2025
Implementing synthetic serine cycles in #Pseudomonas putida unlock methanol assimilation in our favorite bug w/carbon conservation, led by ÒscarPuiggené @labnikel.bsky.social · #SynBio #MetabolicEngineering #Methanol published in @cp-trendsbiotech.bsky.social www.sciencedirect.com/science/arti...
sciencedirect.com
Systematic engineering of synthetic serine cycles in Pseudomonas putida uncovers emergent topologies for methanol assimilation
The urgent need for a circular carbon economy has driven research into sustainable substrates, including one-carbon (C1) compounds. The non-pathogenic…
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Caroline Bartman @cbartman.bsky.social · 07/07/2025
Super excited to share my final postdoc paper from Rabinowitz lab- on how whole-body and tissue metabolism changes in viral infection! pubmed.ncbi.nlm.nih.gov/40581045/
pubmed.ncbi.nlm.nih.gov
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Trends in Microbiology @cp-trendsmicrobiol.bsky.social · 04/07/2025
Culturing the uncultured anaerobes from the perspective of microbial growth curves
dlvr.it
Culturing the uncultured anaerobes from the perspective of microbial growth curves
Anaerobic microorganisms inhabit diverse anoxic environments and play a fundamental role in global biogeochemical cycles. Expanding our knowledge of these organisms offers the potential to transform our understanding of ecological and evolutionary processes and to uncover new biotechnological applications. Recent advances in DNA sequencing have revealed a striking gap between the vast microbial diversity found in anoxic environments and the small number of anaerobes – fewer than 0.1% of the estimated millions of anaerobic species in nature – that have been cultivated in the laboratory. This challenge reflects the 'great plate count anomaly', in which most microorganisms observed in nature fail to grow in laboratory conditions, and aligns with the 'scout' model, which suggests that only a few opportunistic species thrive under standard cultivation approaches. Overcoming these limitations requires a shift in cultivation strategies. Here, we review recent advances in the cultivation and isolation of novel anaerobes. Specifically, we introduce a growth-curve-guided strategy that uses real-time monitoring of microbial growth (primarily at the species level) to inform approaches that leverage relative growth advantages and improve the recovery of target microorganisms. By prioritizing growth performance over abundance and selectively removing non-target microbes, this approach offers a more predictable and adaptable framework for isolating anaerobes from complex communities.
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Saez-Rodriguez Group @saezlab.bsky.social · 02/07/2025
We have a curator position at @ebi.embl.org to work with GSK within a project to understand fibrotic processes (no PhD required). Deadline 20th July. Please share 🙏 embl.wd103.myworkdayjobs.com/en-US/EMBL/j...
embl.wd103.myworkdayjobs.com
Scientific Database Curator – Fibrosis Transcriptomics
We are seeking a technically skilled and biologically literate Scientific Database Curator to join a focused initiative on fibrosis research, hosted at EMBL-EBI in collaboration with the Saez-Rodrigue...
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Diethard Mattanovich @dmattanovich.bsky.social · 01/07/2025
💯 Humans make art, AI does not. (See also my recent rant on LinkedIn) And: read the paper!
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Lennart Schada von Borzyskowski @lennartschada.bsky.social · 01/07/2025
Ethylene glycol is widely used as monomer of the plastic PET. It is therefore highly relevant as sustainable feedstock for microbial biotechnology. In our new paper in @natcomms.nature.com, we characterize efficient enzymes for ethylene glycol oxidation: www.nature.com/articles/s41...
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Olivier Borkowski @oborkowski.bsky.social · 29/06/2025
Membraneless protocell confined by a heat flow doi.org/10.1038/s415...
doi.org
Membraneless protocell confined by a heat flow - Nature Physics
It is unclear how cell compartmentalization emerged in prebiotic conditions. Now it is shown that a temperature gradient in a confined space can bring the core components of a cell together.
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BRGM @brgm.fr · 30/06/2025
On trouvait intéressant de vous partager ce genre commentaire car ne pas croire à des niveaux bas, c’est un peu comme ne pas croire que l’eau mouille. Et comme la pédagogie est le meilleur remède face à la défiance, on va se retrousser les manches et tout décortiquer.⤵️
commentaire reçu sur un de nos posts Bluesky
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FX Coudert @nanoporous.net · 17/06/2025
“Combiner IA et bases de données de matériaux pour la capture du CO2 dans l’air”, nos travaux à l'actu de CNRS Chimie ! www.inc.cnrs.fr/fr/cnrsinfo/...
Une base de données monumentale de matériaux poreux capables de piéger sélectivement certains gaz (Métal-organic frameworks, ou MOFs) a été actualisée en profondeur grâce à l’intelligence artificielle par une équipe internationale de scientifiques. Combinant extraction automatisée de données, filtrage chimio-informatique et apprentissage automatique, cet outil permet à présent d’identifier facilement des matériaux ultra-efficaces pour capter le CO₂, même en très faible concentration. Une avancée décisive pour identifier des solutions viables de dépollution, parue dans le journal Matter.
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Matthias Heinemann @matthiasheinemann.bsky.social · 27/06/2025
Proteins of amino acid metabolism form large structures and determine diffusion in the cytoplasm! Our 7-year-long tour-de-force is now out on Bioxriv www.biorxiv.org/content/10.1... Thanks everyone involved! And especially to Jose Losa who pioneered this!
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Olivier Borkowski @oborkowski.bsky.social · 27/06/2025
Modelling dynamic host-pathway interactions at the genome scale with machine learning doi.org/10.1016/j.ym...
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Ákos T Kovács @evolvedbiofilm.bsky.social · 21/06/2025
A promiscuous Bcd amino acid dehydrogenase promotes biofilm development in Bacillus subtilis -in NPJ Biofilms and Microbiomes by David Ranava et al from Northwestern University / Mee-Ngan Yap, Arthur Prindle www.nature.com/articles/s41...
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