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Kanchan Jaswal

@kanchanj.bsky.social
68 followers 93 following 10 posts

Post-doc at @judith-behnsen lab, UIC | PhD @iisermohali | Science Interests: pathogens and their interactions with host

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Reposted by Kanchan Jaswal
Andreas Bäumler @abaumler.bsky.social · 16/06/2026
Is colorectal cancer driven by a disruption of anaerobiosis? A recent study by Spiga et al. makes this idea walk and talk like a duck. Read more here: www.sciencedirect.com/science/arti...
sciencedirect.com
An anaerobic pathogen rewires host metabolism to fuel oxidative growth in the inflamed gut
To colonize their host and cause disease, enteric pathogens must deploy their virulence factors to establish distinct nutrient niches. How anaerobic p…
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Reposted by Kanchan Jaswal
Francis Alonzo @francisalonzo12.bsky.social · 19/05/2026
Congratulations to all awardees including my awesome colleague @laurenpalmer.bsky.social !!
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Reposted by Kanchan Jaswal
Kimberly Kline 🏔 @kimingeneva.bsky.social · 27/01/2026
Lactic acid lover? Check out @ronni.bsky.social 's new work in @cp-cellhostmicrobe.bsky.social showing how Enterococcus faecalis-derived LA suppresses macrophage activation, in turn promoting bacterial persistence and polymicrobial wound infection in vivo. www.sciencedirect.com/science/arti...
sciencedirect.com
Enterococcus faecalis-derived lactic acid suppresses macrophage activation to facilitate persistent and polymicrobial wound infections
Macrophage activation is essential for innate immunity and antimicrobial defense. We show that Enterococcus faecalis suppresses macrophage activation …
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Reposted by Kanchan Jaswal
Nature Portfolio @natureportfolio.nature.com · 27/09/2025
A study in Nature Metabolism shows that the dietary fiber inulin modifies the gut #microbiome to better process fructose, helping prevent metabolic dysfunctions and emphasizing the role of dietary fiber. go.nature.com/4gKCvHe 🧪
Fig. 1: Reversal of HFCS-induced metabolic dysfunctions by inulin supplementation.
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Reposted by Kanchan Jaswal
Drew Hryckowian @a-hryckowian.bsky.social · 24/09/2025
Thrilled to share @alex-dobrila.bsky.social’s new review in Infection & Immunity on how butyrate shapes C. difficile pathogenesis. A must-read for those interested in microbiome–pathogen interactions. 👉 journals.asm.org/doi/10.1128/...
journals.asm.org
The emerging view on the roles of butyrate in Clostridioides difficile pathogenesis | Infection and Immunity
The Centers for Disease Control and Prevention classifies Clostridioides difficile as an urgent threat to the nation’s health, as it causes 450,000 infections, 15,000 deaths, and 1 billion dollars in excess healthcare costs per year in the United States (1, 2). Most C. difficile infections (CDIs) occur in healthcare settings, where CDI is the most common cause of infectious diarrhea (3). Known and suspected risk factors for CDI include antibiotics, proton pump inhibitors, impaired immune function, advanced age, and diet, all of which are associated with dysbiotic gastrointestinal (GI) microbiomes (4–6). Though most CDIs are associated with antibiotic treatment, 22% of individuals with community-acquired CDI have no recent history of antibiotic use. Factors affecting persistent and recurrent CDIs remain poorly defined (7, 8). Despite the morbidity and mortality caused by C. difficile, up to 15% of healthy adults are asymptomatic carriers of toxigenic C. difficile (9), highlighting the gaps in our understanding of C. difficile.
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HHMI @hhmi-science.bsky.social · 16/09/2025
🎉Congratulations to @maribyndloss.bsky.social @jenniferdoudna.bsky.social and Kim Orth—three HHMI scientists recently honored by The American Society for Microbiology @asm.org asm.org/press-releas...
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Reposted by Kanchan Jaswal
Judith Behnsen @judith-behnsen.bsky.social · 10/09/2025
The short summary and behind-the-scenes of our paper in this Research Briefing article out today: www.nature.com/articles/d41...
nature.com
A common gut fungus worsens infection with the food-borne bacterium Salmonella
Interactions between the fungus and the bacterium weaken the host’s immune response.
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Reposted by Kanchan Jaswal
Nature @nature.com · 05/09/2025
Nature research paper: Commensal yeast promotes Salmonella Typhimurium virulence go.nature.com/4mTnRzG
go.nature.com
Commensal yeast promotes Salmonella Typhimurium virulence - Nature
Commensal Candida albicans enhances the virulence and dissemination of Salmonella enterica subsp. enterica serovar Typhimurium.
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Reposted by Kanchan Jaswal
Manuel Kleiner @manuelkleiner.bsky.social · 07/08/2025
I am really excited to see this article on basic experimental design principles published. Definitely will be mandatory reading for incoming graduate students in my lab. Maggie Wagner who led this article did an amazing job with the illustrations of basic principles www.nature.com/articles/s41...
nature.com
How thoughtful experimental design can empower biologists in the omics era - Nature Communications
Here, the authors discuss principles of experimental design that are relevant for all biology research, along with special considerations for projects using -omics approaches, highlighting common expe...
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SCIENMAG @scienmag.bsky.social · 04/09/2025
Commensal Yeast Boosts Salmonella Typhimurium Virulence In an unexpected twist to our understanding of host-pathogen interactions, recent research reveals that a common fungal commensal, Candida albicans, significantly shapes the virulence of the intestinal pathogen Salmonella Typhimurium. This…
scienmag.com
Commensal Yeast Boosts Salmonella Typhimurium Virulence
In an unexpected twist to our understanding of host-pathogen interactions, recent research reveals that a common fungal commensal, Candida albicans, significantly shapes the virulence of the intestinal pathogen Salmonella Typhimurium. This surprising interplay sheds light on the nuanced metabolic crosstalk occurring within the gut environment, altering both microbial behavior and the host immune response in ways that challenge traditional paradigms.
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Reposted by Kanchan Jaswal
Judith Behnsen @judith-behnsen.bsky.social · 03/09/2025
This project was a true whole-lab effort. It was driven by @kanchanj.bsky.social (now on the job market for Assistant Professor positions) with substantial contributions by second author @oliviatodd.bsky.social. So proud of the whole lab!
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Kanchan Jaswal @kanchanj.bsky.social · 03/09/2025
My postdoc work is now online at Nature. Grateful to @judith-behnsen.bsky.social for her support and all the collaborators. #TeamBehnsenLab
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Fabian Rivera-Chávez @fabianrchavez.bsky.social · 18/08/2025
1/ Excited to share the first preprint from my lab! 🎉 My postdoc Paz asked how cholera toxin (CT) helps Vibrio cholerae thrive in the gut. Turns out, CT rewires epithelial metabolism toward L-lactate production—fueling pathogen growth in the small intestine during disease
biorxiv.org
Cholera toxin-induced disease generates epithelial cell-derived L-lactate that promotes Vibrio cholerae growth in the small intestine
Cholera toxin (CT) promotes Vibrio cholerae colonization by altering gut metabolism to favor pathogen growth. We have previously found that CT-induced disease leads to increased concentrations of L-la...
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Reposted by Kanchan Jaswal
Andreas Bäumler @abaumler.bsky.social · 09/08/2025
A Salmonella T3SS-2 mutant grows fine in spleen macrophages, contradicting tissue culture dogma (PMID: 23236281). This observation was largely ignored, but adding certain carbon sources rescues growth in cultured macrophages, hinting that T3SS-2 may be doing something entirely different in vivo.
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Kanchan Jaswal @kanchanj.bsky.social · 07/08/2025
Thrilled to share that I’ve been awarded the NIH K99/R00 Pathway to Independence Award! Grateful to my mentor @judith-behnsen.bsky.social for her support. Can’t wait for the road ahead!
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Lauren Palmer @laurenpalmer.bsky.social · 04/08/2025
Super excited to share our paper online 🚨today🚨 in Cell Host & Microbe‬! Xiaomei Ren @xiaomeiren.bsky.social and Mason Clark @rmasonclark.bsky.social‬ co-led discovery of ecological factors for Acinetobacter baumannii carriage in the gut, a reservoir for pathogen spread. 🎉 tinyurl.com/443kfefk
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Krutika Kuppalli, MD FIDSA @krutikakuppalli.bsky.social · 08/02/2025
NIH doesn’t just support infectious disease research—it drives breakthroughs in cancer, childhood diseases, heart disease, diabetes & more. Thanks to NIH, we have: 💉 Cancer immunotherapy ❤️ Cholesterol-lowering statins 🩸 Insulin for diabetes Investing in NIH = investing in life-saving discoveries.
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