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Updated: Dec 16, 2025

Assessing Whole-Body Lipid-Handling Capacity in Mice
Published on: November 24, 2020
Targeting the Liver-Brain Axis with Hop-Derived Flavonoids Improves Lipid Metabolism and Cognitive Performance in
Ines L Paraiso1,2, Johana S Revel1,2,3, Jaewoo Choi1
1Linus Pauling Institute, Oregon State University, Corvallis, OR, 97331, USA.
Scope:
Sphingolipids including ceramides are implicated in the pathogenesis of obesity and insulin resistance. Correspondingly, inhibition of pro-inflammatory and neurotoxic ceramide accumulation prevents obesity-mediated insulin resistance and cognitive impairment. Increasing evidence suggests the farnesoid X receptor (FXR) is involved in ceramide metabolism, as bile acid-FXR crosstalk controls ceramide levels along the gut-liver axis. The authors previously reported that FXR agonist xanthohumol (XN), the principal prenylated flavonoid in hops (Humulus lupulus), and its hydrogenated derivatives, α,β-dihydroxanthohumol (DXN), and tetrahydroxanthohumol (TXN), ameliorated obesity-mediated insulin resistance, and cognitive impairment in mice fed a high-fat diet.
Methods And Results:
To better understand how the flavonoids improve both, lipid and bile acid profiles in the liver are analyzed, sphingolipid relative abundance in the hippocampus is measured, and linked them to metabolic and neurocognitive performance. XN, DXN, and TXN (30 mg kg-1 BW per day) decrease ceramide content in liver and hippocampus; the latter is linked to improvements in spatial learning and memory. In addition, XN, DXN, and TXN decrease hepatic cholesterol content by enhancing de novo synthesis of bile acids.
Conclusion:
These observations suggest that XN, DXN, and TXN may alleviate obesity-induced metabolic and neurocognitive impairments by targeting the liver-brain axis.
Insights
Flavonoids like xanthohumol (XN) and its derivatives (DXN, TXN) reduce ceramide accumulation in the liver and brain, improving metabolic and cognitive health in obesity. These compounds target the liver-brain axis to alleviate impairments.
Area of Science:
- Metabolic disease research
- Neuroscience
- Pharmacology
Background:
- Sphingolipids, particularly ceramides, are linked to obesity and insulin resistance.
- Ceramide accumulation contributes to insulin resistance and cognitive decline.
- Farnesoid X receptor (FXR) plays a role in ceramide metabolism via bile acid crosstalk.
Purpose of the Study:
- To investigate how xanthohumol (XN) and its derivatives (DXN, TXN) impact lipid and bile acid profiles.
- To determine the effect of these flavonoids on sphingolipid levels in the hippocampus.
- To correlate these biochemical changes with metabolic and neurocognitive outcomes.
Main Methods:
- Analysis of liver lipid and bile acid profiles in mice.
- Measurement of sphingolipid abundance in the hippocampus.
- Assessment of metabolic and spatial learning/memory performance.
Main Results:
- XN, DXN, and TXN reduced ceramide levels in both the liver and hippocampus.
- Hippocampal ceramide reduction correlated with improved spatial learning and memory.
- Flavonoids enhanced de novo bile acid synthesis, decreasing hepatic cholesterol.
Conclusions:
- XN, DXN, and TXN alleviate obesity-induced metabolic and cognitive deficits.
- These flavonoids act by modulating the liver-brain axis.
- Targeting ceramide metabolism via FXR agonists shows therapeutic potential.
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