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Daniel R. Weilandt Ph.D.

@danielweilandt.bsky.social
202 followers 446 following 15 posts

PostDoc @Princeton University with Joshua Rabinowitz | Ph.D. in #ChemEng trained @EPFL with Vassily Hatzimanikatis | Working on quantitative analysis and modeling of #Metabolism | Interested in Biotech and Systems Biology | he/him | 🇩🇪~🇺🇸

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Reposted by Daniel R. Weilandt Ph.D.
Cell Metabolism @cp-cellmetabolism.bsky.social · 21/07/2026
Online now: Competitive catabolism drives hyperglycemia and hyperinsulinemia in obesity
dlvr.it
Competitive catabolism drives hyperglycemia and hyperinsulinemia in obesity
The mechanisms coordinating the homeostasis of glucose, lactate, fatty acids, and ketones remain unknown. Through quantitative modeling and experiments, Weilandt et al. reveal that these nutrients compete to be oxidized to meet systemic energy demands. Competitive catabolism normally produces homeostasis but, in obesity, converts increased lipolytic propensity into hyperglycemia and hyperinsulinemia.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
11/11 Play with the model yourself 👇 Simulator: metmodel.princeton.edu Code: github.com/weilandtd/Co... Paper: doi.org/10.1016/j.cm... Deeply grateful to my wonderful co-authors and collaborators across Princeton & Penn 🙏 Special shout-out to co-first author Won Dong Lee 🙏
metmodel.princeton.edu
Competitive Catabolism - Multi-Nutrient Model Simulator
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
10/11 The model predicts which interventions should reverse metabolic syndrome – exercise, weight loss, lipolysis inhibition, and enhanced fat re-esterification – and that insulin alone lowers glucose but not resistance. These predictions line up with how GLP-1 and PPARγ drugs behave clinically.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
9/11 The model captures this relationship quantitatively in humans: parameterized on mouse data, it reproduces fasting glucose, insulin & HOMA-IR across body-fat levels (NHANES) without any parameter changes.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
8/11 What happens in obesity? More fat mass means more lipolysis, releasing fatty acids that outcompete glucose for burning. Glucose rises, so insulin rises, and insulin reins lipolysis back in. A physiological circuit connecting obesity to diabetes.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
7/11 Second consequence: raising ANY major fuel causes acute insulin resistance - not just fat. Lactate does it. Ketones do it too (a prediction we then confirmed in clamp experiments).
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
6/11 A first big consequence: in the fasted state, insulin controls glucose mostly INDIRECTLY. Its main job isn't pushing glucose into cells – it's slowing lipolysis. Fewer circulating fatty acids means less competition, so glucose gets burned, and its circulating concentration comes down.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
5/11 We modeled all the enzyme kinetics explicitly. Even with every regulatory mechanism stripped out, the bare metabolic network still produced competitive catabolism, suggesting nutrient competition is baked into the chemistry itself.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
4/11 We tested it directly. Infusing ¹³C glucose, lactate, or ketones into mice raised oxidation of THAT fuel, but whole-body energy expenditure didn't change. Suggesting, the competing fuels were burned less to compensate. Exactly what the theory predicts.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
3/11 That's competitive catabolism: burn more of one nutrient, and the others get suppressed to keep total energy output constant. It emerges naturally from mass-action kinetics + a fixed energy budget. Structurally, it looks a lot like competitive Michaelis-Menten kinetics.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
2/11 The core idea: energy demand is set by what you're doing, not by how much fuel is in your blood. With total ATP production fixed by demand, the circulating fuels have to compete to be burned.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 21/07/2026
1/11 New paper out today in Cell Metabolism 🧵 We set out to understand how the body keeps its fuels in balance, and discovered competitive catabolism, which provides a physiological explanation for why obesity causes hyperglycemia and hyperinsulinemia. doi.org/10.1016/j.cm...
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Reposted by Daniel R. Weilandt Ph.D.
Phillip White @phillipjwhitephd.bsky.social · 13/01/2026
Excited to announce that registration is officially open for #METPHYS2026! All meeting details can be found here: www.sablesys.com/metphys-the-...
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Reposted by Daniel R. Weilandt Ph.D.
Karishma Bisht @karishmabisht.bsky.social · 05/01/2026
Ever wondered how fever helps fight flu? Our research shows that fever-like temperature tip the scales in the battle between the influenza virus and the immune system by enhancing antiviral responses and altering viral RNA dynamics. Check out the full article here: www.science.org/doi/10.1126/...
science.org
Febrile temperature activates the innate immune response by promoting aberrant influenza A virus RNA synthesis
Fever promotes aberrant influenza A virus RNA synthesis and innate immune activation.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 31/10/2025
Excited to share my latest postdoc work on systemic metabolic homeostasis! We show that nutrient consumption fluxes compete, and this competitive catabolism helps explain why obesity drives diabetes. Explore the model with our interactive web app: compcat.princeton.edu doi.org/10.1101/2025...
Schematic of the competitive catabolism model
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Reposted by Daniel R. Weilandt Ph.D.
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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Reposted by Daniel R. Weilandt Ph.D.
Karishma Bisht @karishmabisht.bsky.social · 20/05/2025
Excited to share our latest preprint in which we integrate mathematical modeling with experimental approaches to investigate how ⬆️ temperature influences aberrant RNA synthesis and innate immunity in flu infection 🦠
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Reposted by Daniel R. Weilandt Ph.D.
Phillip White @phillipjwhitephd.bsky.social · 29/04/2025
Last talk of morning 1 at METPHYS2025 Daniel Weilandt is working to convince us that hyperinsulinemia and hyperglycemia sustain lipid homeostasis in obesity
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 11/04/2025
Exited to present my latest PostDoc work at METPHYS2025. Looking forward to connecting with everyone there.
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Reposted by Daniel R. Weilandt Ph.D.
Eric Topol @erictopol.bsky.social · 03/02/2025
An update with latest data available for graph of life expectancy vs health care expenditures per capita for 20 countries and one outlier.
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 01/02/2025
Elevated lactate is a hallmark of human disease. In our latest work in the Rabinowitz lab, Won Dong Lee and I uncover how multiple mechanisms work in concert to robustly maintain lactate levels. Checkout our work @cp-cellmetabolism.bsky.social www.cell.com/cell-metabol...
cell.com
Lactate homeostasis is maintained through regulation of glycolysis and lipolysis
Lactate elevations are a hallmark of human disease, but the mechanisms regulating lactate levels remain poorly understood. Here, Lee et al. elucidate the mechanisms of lactate homeostasis. These invol...
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Reposted by Daniel R. Weilandt Ph.D.
Caroline Bartman @cbartman.bsky.social · 27/01/2025
lysosome experts! if you are trying to show that a stimulus increases lysosome mass/activity, how would you demonstrate that? (pls reskee)
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Daniel R. Weilandt Ph.D. @danielweilandt.bsky.social · 25/01/2025
This made my day, we need more of this ❤️: “Phase behavior of Cacio and Pepe sauce” arxiv.org/pdf/2501.00536
arxiv.org
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Reposted by Daniel R. Weilandt Ph.D.
htw @heniek-htw.bsky.social · 19/01/2025
Study explores link between people's professions and their genetic predisposition to neuropsychiatric traits medicalxpress.com/news/2025-01...
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