Neurodegenerative Disease Management· 2026Q2
Metabolomic-microbiomic integrated analysis reveals the role of intermittent energy restriction in Parkinson’s disease
- 0citations
- Q2SCImago
- 2026year
Short summary
Intermittent energy restriction (IER) delays Parkinson's disease (PD) progression in mice by altering gut microbiota and metabolites, decreasing key proteins Parkin and HIF-1α in both gut and brain tissues.
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Abstract
AIMS: This study aimed to explore the neuroprotective effect of intermittent energy restriction (IER) on Parkinson's disease (PD) mice via multiomics. METHODS: All mice were randomly divided into four groups: the control group, the PD model group, the PD+IER group and the PD+L-Dopa group. A multi-omics strategy combining 16S rRNA sequencing and fecal metabolomics, together with molecular biological validation (Western blotting and immunohistochemistry), was employed to systematically investigate the protective effects of IER against PD in mice and the underlying mechanisms. RESULTS: . Metabolomic analysis further revealed that IER elevated the levels of beneficial intestinal metabolites mainly by regulating the GnRH secretion pathway and the serotonergic synaptic pathway, as well as by modulating signal transduction and amino acid metabolism. Notably, IER simultaneously decreased the expression of Parkin and HIF-1α in both intestinal and brain tissues. CONCLUSIONS: The present study demonstrates that IER exerts neuroprotective effects to delay PD progression by regulating the gut microbiota-metabolite axis and targeting key proteins involved in PD pathogenesis. These findings provide experimental evidence and novel mechanistic insights into dietary intervention for PD.
The authors' abstract, as published at the source. Neurodegenerative Disease Management, 2026 · DOI ↗
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