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Oxysterol Signaling Within the Microbiome-Regulated Gut-Liver-Brain Axis: Implications for Metabolic Homeostasis and
Nila Ganamurali1, Sarvesh Sabarathinam1
1Helix Research Lab, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences (SIMATS), Saveetha University, Chennai, Tamil Nadu, India.
Abstract:
The gut-liver-brain axis integrates metabolic and inflammatory signals that influence systemic homeostasis and cognitive function. While current models emphasize short-chain fatty acids and bile acids, they do not fully explain lipid-driven neurodegenerative processes. Oxysterols, oxidized derivatives of cholesterol, are emerging as key signaling molecules that bridge peripheral metabolism and brain function. Generated at the gut-liver interface through enzymatic and oxidative pathways, oxysterols regulate lipid and glucose metabolism via nuclear receptors, including liver X receptors and farnesoid X receptor. Importantly, specific oxysterols cross the blood brain barrier, enabling bidirectional communication between the periphery and central nervous system. By modulating neuroinflammation and synaptic function, oxysterols provide a mechanistic link between metabolic dysfunction and cognitive decline.
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