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Kiran R. Patil

@kiranrpatil.bsky.social
480 followers 91 following 25 posts

Professor of Molecular Systems Biology, University of Cambridge

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Reposted by Kiran R. Patil
Jacobo de la Cuesta-Zuluaga @jdlcz.bsky.social · 14/09/2026
Just out! @kiranrpatil.bsky.social @lisamaierlab.bsky.social and I wrote about how compounds not considered antibiotics (pharmaceutical, dietary, industrial, agricultural) can still impact the #microbiome 🦠 and human #health nature.com/articles/s41575-026-01258-w @natrevgastrohep.nature.com
Diagram of how non-antibiotic chemicals (from food, drugs, industry, and farming) interact with gut bacteria. Left side lists each source with an example compound and its structure: carboxymethyl cellulose from diet, metformin from pharmaceuticals, perfluorooctanoic acid from industry, chlorpyrifos from agriculture. In the center, arrows connect host and microbiome in both directions, labeled "Pharmacoecology" and "Pharmacomicrobiomics." The right side shows six effects on bacteria: bioaccumulation, direct killing, growth inhibition, horizontal gene transfer, cross-sensitization, and cross-protection. Boxes along the bottom flag the variables that shape these outcomes: exposure timing and dose, host diet and physiology, and the microbiome's existing structure.
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EMBL Events @events.embl.org · 03/09/2026
Do you want to be part of the community advancing microbiome research? 🧪 Submit your abstract by 15 Sep for the opportunity to present your work at #EMBLGutMicrobeFunction: s.embl.org/gmd26-01-bl Date: 8–10 Dec 2026 EMBL Heidelberg and Virtual Learn more from scientific organiser Lisa Maier.
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Christian Kost @kostchristian.bsky.social · 24/08/2026
Very happy that our paper Obligate cross-feeding of metabolites is common in soil microbial communities just came out in Nature Microbiology. See here 👇 Paywalled version: www.nature.com/articles/s41... Free read-only version: rdcu.be/fBHAb
nature.com
Obligate cross-feeding of metabolites is common in soil microbial communities - Nature Microbiology
Cultivation-dependent techniques, computational analyses and genome-scale metabolic models show widespread amino acid auxotrophies, suggesting that soil microorganisms exist within integrated ecologic...
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Kiran R. Patil @kiranrpatil.bsky.social · 24/07/2026
Latest preprint from our lab reports a hitherto hidden consequence of drug bioaccumulation: disruption of RNA-protein interactions by antidepressant duloxetine in bacterial as well as human cells. Implications for MoA, toxicity, and for targeting RNA-protein interactions. In collab wt Lilley lab
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Sonja Blasche @sonjablasche.bsky.social · 16/07/2026
Our article "Common xenobiotics modulate gut microbial responses to low‑calorie sweeteners in vitro" is out! link.springer.com/article/10.1... With @kiranrpatil.bsky.social, @indraroux.bsky.social, @rbradley.bsky.social, @skamrad.bsky.social, @simonemozzachiodi.bsky.social, @itsbinir.bsky.social.
link.springer.com
Common xenobiotics modulate gut microbial responses to low‑calorie sweeteners in vitro - Molecular Systems Biology
The gut microbiota is implicated in adverse effects associated with low-calorie sweeteners. Yet, the direct impact of sweeteners on gut bacteria remains largely uncharacterized. Here, we report intera...
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Kiran R. Patil @kiranrpatil.bsky.social · 13/07/2026
Could laboratory evolution of microbes strengthen pollinator resilience to chemical exposure? Happy to share the latest preprint from our lab: www.biorxiv.org/content/10.6... Fantastic work by @simonemozzachiodi.bsky.social @davidbaracchi.bsky.social @skamrad.bsky.social et al.
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Kiran R. Patil @kiranrpatil.bsky.social · 01/07/2026
Interested in Genome-scale Metabolic Models for Gut microbes? Check out our latest preprint on automated model reconstruction. Carved by @ariannabasilecc.bsky.social, in teamwork with Aditi, @indraroux.bsky.social, @metagenomez.bsky.social, and @skamrad.bsky.social. www.biorxiv.org/content/10.6...
biorxiv.org
CarveMe-GutMicrobes: Automated Metabolic Model Reconstruction for Gut Microbial Species and Communities
Genome-scale metabolic models (GSMMs) are important aids towards system-level understanding of the metabolic physiology of the gut microbes and for rational microbiome engineering. While large-scale r...
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Typas Lab @typaslab.bsky.social · 29/06/2026
Check the conference link: www.embl.org/about/info/c... Abstract deadline 15 Sep 2026 & Registration (on-site) 27 Oct 2026, don’t miss out! #EMBLGutMicrobeFunction
embl.org
Unlocking the functional diversity of gut microbiomes
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Tanmay Bharat @tbharat-lab.bsky.social · 25/05/2026
Sub-cellular chemical mapping using correlated cryogenic electron and mass spectrometry imaging online @natmethods.nature.com, led by Hannah Ochner, collaboration with @catfranco.bsky.social and @kiranrpatil.bsky.social labs doi.org/10.1038/s415...
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Tanmay Bharat @tbharat-lab.bsky.social · 07/05/2026
Oxygen gradients reshape cross-feeding through emergent spatial organization of gut commensal bacteria www.biorxiv.org/content/10.6... Use of isotope labels and cryo-CLEM-FIB-SIMS to study microbial communities by Hannah Ochner. Collaboration with @kiranrpatil.bsky.social @jmghigolab.bsky.social
biorxiv.org
Oxygen gradients reshape cross-feeding through emergent spatial organization of gut commensal bacteria
Microbial interactions unfold within environments structured by physical transport and chemical gradients. Yet most mechanistic studies rely on well-mixed systems that mask the reciprocal influences of environmental heterogeneity on metabolism and ecology. Here, we investigate how the physical environment modulates the interaction between the gut commensal Bacteroides thetaiotaomicron and Escherichia coli . In anoxic liquid culture, cell-resolved isotope imaging and genetic perturbations reveal exploitative cross-feeding, where E. coli consumes diffusible sugars released by B . thetaiotaomicron during starch degradation. When exposed to intestinal-like oxygen gradients in microfluidics, the interaction is restructured by spatial organization. The species self-organize into complementary niches: E. coli locally depletes sugars and oxygen, thereby expanding the anoxic niche required by B. thetaiotaomicron . A reactive transport model confirms that this organization arises from coupled feedback between physical transport and metabolic reaction rates. Together, our results reveal how physical structure and chemical gradients convert an exploitative cross-feeding interaction into a dynamic niche-construction process that generates emergent spatial organization and stabilizes coexistence. ### Competing Interest Statement The authors have declared no competing interest.
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Stephan Kamrad @skamrad.bsky.social · 31/03/2026
Check out our new paper applying fast DIA proteomics to bacterial co-cultures at scale. www.nature.com/articles/s41... @kiranrpatil.bsky.social
nature.com
Interspecies interactions drive bacterial proteome reorganization and emergent metabolism - Nature Ecology & Evolution
An analysis of the responses of 15 diverse human gut bacteria in more than 100 pairwise co-cultures reveals extensive remodelling of the bacterial proteome and metabolome in response to the presence o...
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Typas Lab @typaslab.bsky.social · 12/03/2026
Check the conference link: www.embl.org/about/info/c... Abstract submission & registration open, don’t miss out! #EMBLGutMicrobeFunction
embl.org
Unlocking the functional diversity of gut microbiomes
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Simone Mozzachiodi @simonemozzachiodi.bsky.social · 10/03/2026
Happy to share our review on non-model microbes and microbial communities in biotechnology! With @sonjablasche.bsky.social @indraroux.bsky.social @kiranrpatil.bsky.social see below 👇🏼
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Nature Reviews Microbiology @natrevmicro.nature.com · 16/12/2025
New online! Pollutants disrupt gut microbiota
nature.com
Pollutants disrupt gut microbiota
Nature Reviews Microbiology, Published online: 15 December 2025; doi:10.1038/s41579-025-01274-8A recent study investigated the effects of chemical pollutants on human gut bacteria in vitro.
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Indra Roux @indraroux.bsky.social · 01/12/2025
The associated Research Briefing is now out, with additional insights into the mission behind the paper and future directions. We hope this work will contribute to positive environmental change. (11/11) doi.org/10.1038/s415...
doi.org
Common chemical pollutants inhibit human gut bacteria - Nature Microbiology
We uncover hundreds of inhibitory interactions between industrial and agricultural chemicals and gut bacteria. Systematic genetic analyses reveal bacterial survival mechanisms against pollutants and t...
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University of Cambridge @cam.ac.uk · 26/11/2025
Could everyday chemicals be having a toxic effect on our gut #health? 🧫🧪 150+ common substances may stifle 'good' gut bacteria in our bodies, affecting digestion and mental health. New #research by @kiranrpatil.bsky.social @indraroux.bsky.social @mrc-tu.bsky.social 👇 bit.ly/3Ma9325
bit.ly
University of Cambridge
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Indra Roux @indraroux.bsky.social · 26/11/2025
Excited to share our latest research in @natmicrobiol.nature.com . We uncover hundreds of inhibitory interactions between common chemical pollutants and human gut bacteria. A thread🧵 (1/10) #microbiomesky #microsky @kiranrpatil.bsky.social lab @mrc-tu.bsky.social www.nature.com/articles/s41...
nature.com
Industrial and agricultural chemicals exhibit antimicrobial activity against human gut bacteria in vitro - Nature Microbiology
Screening of 1,076 compounds reveals 168 chemical pollutants with inhibitory effects on gut bacteria and genetic screens indicate commonality between pollutant and antibiotic resistance.
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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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Kiran R. Patil @kiranrpatil.bsky.social · 17/07/2025
Another fantastic study from @lisamaierlab.bsky.social showing how non-antibiotics impact gut ecosytem. Congratulations @ghammeranne.bsky.social et al.!
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Molecular Systems Biology @molsystbiol.org · 03/07/2025
@skamrad.bsky.social @kiranrpatil.bsky.social show xenobiotics impact growth of gut bacteria and their metabolic homeostasis by affecting amine metabolism ➡️ www.embopress.org/doi/full/10....
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Cambridgeshire @cambridgeshireuk.bsky.social · 01/07/2025
Scientists discover protection from PFAS chemicals #Cambridgeshire #BBCNews 🔗: www.bbc.com/news/arti...
bbc.com
Scientists' discovery could help protect against PFAS chemicals
Cambridge University scientists say a certain species of microbe in the human gut can absorb PFAS.
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Kiran R. Patil @kiranrpatil.bsky.social · 02/07/2025
Excited to share some key details on our latest research in @natmicrobiol.nature.com reporting intra-cellular accumulation of #PFAS (aka forever chemicals) by certain human gut bacteria. #microsky #mevosky #microbiomesky www.nature.com/articles/s41...
Human gut bacteria bioaccumulate PFAS
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Nature Microbiology @natmicrobiol.nature.com · 01/07/2025
#NewResearch 🚨Out now! Human gut bacteria bioaccumulate forever chemicals, in intracellular aggregates and colonization of gnotobiotic mice with these bioaccumulating bacteria increases faecal PFAS excretion. @kiranrpatil.bsky.social #MicroSky #MicrobiomeSky 🦠 www.nature.com/articles/s41...
nature.com
Human gut bacteria bioaccumulate per- and polyfluoroalkyl substances - Nature Microbiology
Human gut bacteria bioaccumulate per- and polyfluoroalkyl substances (PFAS), commonly known as forever chemicals, in intracellular aggregates. Colonization of gnotobiotic mice with bioaccumulating bac...
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Savitski Lab @savitski-lab.bsky.social · 01/07/2025
Beautiful work from my friend @kiranrpatil.bsky.social . Gut bacteria can accumulate Forever chemicals and help us get rid of them! Happy we could contribute! www.nature.com/articles/s41...
nature.com
Human gut bacteria bioaccumulate per- and polyfluoroalkyl substances - Nature Microbiology
Human gut bacteria bioaccumulate per- and polyfluoroalkyl substances (PFAS), commonly known as forever chemicals, in intracellular aggregates. Colonization of gnotobiotic mice with bioaccumulating bac...
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Reposted by Kiran R. Patil
Lisa Maier Lab | Tübingen @lisamaierlab.bsky.social · 01/07/2025
Gut bacteria to the rescue! 🦠✨ They can shield us from harmful chemicals—and the latest study from Kiran Patil's lab (@kiranrpatil.bsky.social) uncovers how. We’re proud to have contributed to this exciting work! #Microbiome #Detox www.nature.com/articles/s41...
nature.com
Human gut bacteria bioaccumulate per- and polyfluoroalkyl substances - Nature Microbiology
Human gut bacteria bioaccumulate per- and polyfluoroalkyl substances (PFAS), commonly known as forever chemicals, in intracellular aggregates. Colonization of gnotobiotic mice with bioaccumulating bac...
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MRC Toxicology Unit @mrc-tu.bsky.social · 01/07/2025
Researchers in the Patil Lab have discovered that certain species of gut bacteria can absorb PFAS. Boosting these species in our gut microbiome could be a new way to protect us from the harmful effects of PFAS. Read more here: buff.ly/4FsVFsS @kiranrpatil.bsky.social @indraroux.bsky.social
3D rendering of a bacterium with flagella cut open to show clumps of PFAS molecules inside along with the bacteria's own cellular machinery.
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Kiran R. Patil @kiranrpatil.bsky.social · 30/06/2025
Latest study from the lab is online today (and another will be out tomorrow, stay tuned:)). We profiled effect of >1700 chemicals (drugs, pesticides,...) on secretion of amines (involved in gut-brain and gut-immune axis. ) by human gut bacteria. Brilliant work by @skamrad.bsky.social and Tara Davis
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Stephan Kamrad @skamrad.bsky.social · 15/05/2025
Check out our new preprint! We systematically map proteomic and metabolomic interactions between >100 pairs of gut bacteria, detecting metabolic interactions and functionally-related clusters of proteins. www.biorxiv.org/content/10.1... @kiranrpatil.bsky.social
biorxiv.org
Interspecies interactions drive bacterial proteome reorganisation and emergent metabolism
Species in microbial communities must respond to the presence of others to stave off resource competition or to capitalise on new resources that may become available due to additional metabolic activi...
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Reposted by Kiran R. Patil
Kristina Stapornwongkul @kstapornwongkul.bsky.social · 16/04/2025
📢 Fresh off the press and featuring new exciting experiments! 🧪 We show how glycolytic activity instructs germ layer proportions through regulation of Nodal and Wnt signaling - happy to finally share this 😊 doi.org/10.1016/j.st... B2B with @jesseveenvliet.bsky.social lab: doi.org/10.1016/j.st... 🤩
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Kiran R. Patil @kiranrpatil.bsky.social · 05/04/2025
Sweeteners are so common in food and drinks. New work expanding our knowledge base of sweetener-bacteria interactions 👇🏽. Kudos to @sonjablasche.bsky.social @indraroux.bsky.social and others from our lab
interactions.by
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Kiran R. Patil @kiranrpatil.bsky.social · 31/01/2025
Kudos to Ghada @kostchristian.bsky.social team and @metagenomez.bsky.social et al. for this mammoth effort! An important step forward towards understanding natural microbial communities and determinants of their fascinating diversity.
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Kiran R. Patil @kiranrpatil.bsky.social · 27/01/2025
Congratulations to talented @naomiirisvdberg.bsky.social for successfully passing her PhD exam! Very proud of the latest PhD graduate from my lab and the entire team! 🙌🎉🍾
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EMBL @embl.org · 13/01/2025
Looking for a postdoctoral fellowship? Interested in tackling real-world challenges? Then check EMBL's EIPOD-LinC fellowships. 👉 Gain transferable skills and work on self-designed projects to make a lasting impact on global issues. ✍️ More information: www.embl.org/about/info/p... 🧪 #careers
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Kiran R. Patil @kiranrpatil.bsky.social · 13/01/2025
“Manufactured Chemicals and Children’s Health..” – an excellent evidence-based case in N Eng J Med. Despite overwhelming epidemiological evidence (Note: randomised clinical trials are obviously unethical), less than 20% chemicals are tested for toxicity. www.nejm.org/doi/full/10....
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Francisco Zorrilla @metagenomez.bsky.social · 10/01/2025
Interested in the ecological dynamics of Enterobacteriaceae across populations? Check out our new study 🧬
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Typas Lab @typaslab.bsky.social · 16/12/2024
You want to learn about microbiology from a fantastic lineup of speakers on a beautiful Greek island? PhD students apply now for the @EMBO | @FEBSnews Lecture Course The New Microbiology! Registration: 1 Apr 2025 Course: 03 – 11 Sep 2025 | Spetses, Greece meetings.embo.org/event/25-new...
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