ReviewFrontiers in endocrinology2026
Metabolic syndrome and kidney dysfunction: emerging molecular and cellular mechanisms at the metabolic-renal interface.
Review in Frontiers in endocrinology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Metabolic syndrome and chronic kidney disease frequently coexist, acting synergistically to amplify the risk of adverse cardiovascular and renal outcomes. Large epidemiological studies now identify metabolic syndrome as an independent determinant of incident chronic kidney disease, accelerated estimated glomerular filtration rate decline and progression to end-stage kidney disease, even after adjustment for diabetes and hypertension. These observations have driven a conceptual shift away from haemodynamic and glomerular hyperfiltration-centric models towards an integrated paradigm of metabolic dysfunction-associated kidney disease. This framework emphasises systemic insulin resistance, lipotoxicity, chronic low-grade inflammation and disrupted cellular energy homeostasis as central drivers of renal injury. Within the kidney, metabolic syndrome promotes renal microvascular rarefaction, endothelial glycocalyx disruption, podocyte injury and tubular-interstitial inflammation. At the cellular and molecular level, key mechanisms include dysregulated adipokine and hepatokine signalling; ectopic lipid accumulation and renal lipotoxicity; mitochondrial dysfunction; endoplasmic reticulum stress; defective autophagy and mitophagy; oxidative stress and epigenetic remodelling. Importantly, several established therapies including renin-angiotensin-aldosterone system blockade, non-steroidal mineralocorticoid receptor antagonists and sodium-glucose cotransporter-2 inhibitors appear to confer renoprotection through modulation of these metabolic and cellular stress pathways. In this focused narrative review, we summarise the recent advances in the molecular and cellular mechanisms linking metabolic syndrome to kidney dysfunction. We highlight the key knowledge gaps and outline potential future therapeutic opportunities at the metabolic-renal interface.
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