Dual inhibition of ACLY and ACSS2 by EVT0185 reduces steatosis, hepatic stellate cell activation and fibrosis in mouse models of MASH
https://t.co/QsWOWKoyXA
MASH: the nexus of metabolism, inflammation and fibrosis
This review by Gregory R. Steinberg @DrGregSteinberg & colleagues @McMasterU is part of JCI’s ongoing series, Evolving Insights into #MASLD and MASH Pathogenesis and Treatment with series editor Scott Friedman: https://t.co/04FecXeO0i
Our 1st #MODR seminar of 24/25 will feature Dr. Shingo Kajimura @harvardmed . The @KajimuraLab focuses on the molecular basis of bioenergetics in health & disease. Don't miss it on Sep 19, 2024, from 12-1 PM! In-person in HSC 1A5 or on Zoom https://t.co/8mkV6rLMlo
Happy to share the cutting-edge technology Spatial Transcriptomics established recently in @MacMODR at McMaster University recently: https://t.co/A1EtrDA5qK
Introducing DiabetesBio! The inaugural January #DiabetesBio#Podcast is now online.
Topic: Fatty acids on a mission: Boosting GDF15 and cutting down on food intake through the GFRAL signaling axis. #NutritionScience#GDF15
🎙️https://t.co/VOgY9gBnHj
@thewilliamslab
@DarleenSandoval
@wddong1988
The January 2024 issue of Diabetes is live at https://t.co/V4ATwNAQhU, featuring latest scholarly research on #diabetes.
In This Issue:
- LysoPIs are upregulated following human ß-cell loss
- Re-epithelialization of Diabetic Skin and Mucosal Wounds
- and more!
Please join us Friday (3pm Toronto time) for the MHRC Seminar featuring Dr. Irena Rebalka (McMaster U) who will speak on "Muscle metabolism and the effects of exercise in type 1 diabetes". Get the link: https://t.co/XLglHb0yWu
Passcode: 936832
Fatty Acids Increase GDF15 (from the kidney) and Reduce Food Intake (and body weight) Through a GFRAL Signaling Axis.
Equal caloric load of glucose did not suppress food intake or reduce body mass
https://t.co/b2UmdYErmK
Check out our team's work showing that a GLP-1R agonist and Bempedoic Acid have combinatorial benefits to reduce NASH and hepatic fibrosis in mice. @CellRepMed@DrGregSteinberg@MacMODR@EsperionInc https://t.co/2wdgcciRmQ
COMMENT | Led by @DenisPBlondin (@USherbrooke):
Authors argue that skeletal muscle #thermogenesis, rather than the stimulation of thermogenic adipose tissue, is required to elicit these benefits in humans.
👉 https://t.co/5cLIhP5Q8Q
https://t.co/4SM1kZFO3J
Happy to share that my paper with @DrGregSteinberg@TheEndoSociety where we discuss how AMPK coordinates the hormonal responses to cold, exercise, fasting, feeding, and obesity is the Featured Articled of the Week. Check it out!
https://t.co/nwtwOEX8np
#NatMetabPicks | In @Nature led by @DrGregSteinberg (@McMasterU):
GDF15 treatment in mice counteracts compensatory reductions in energy expenditure, resulting in greater #weightloss and reductions in #NAFLD compared to caloric restriction alone.
https://t.co/uHfTrAxO41
Fab new work from @DrGregSteinberg GDF15 promotes weight loss by enhancing energy expenditure in muscle. Great job mate. #obesity#muscle https://t.co/O8LCcHNKkD