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April 3, 2026Nature Communications0 citationsOpen Access

TNF alpha unmasks enteric malate aspartate shuttle dysfunction bridging Parkinson disease and intestinal inflammation

BGB. GhirottoLGLuís Eduardo GonçalvesVRVivien Ruder

Key Points

  • To investigate how TNF alpha affects α-synuclein accumulation and enteric neuron function related to Parkinson's disease.
  • Induced pluripotent stem cells were used to derive enteric neurons and glia.
  • Tumor Necrosis Factor alpha was applied to assess its impact on α-synuclein accumulation.
  • Metabolic changes were analyzed through assessments of the malate-aspartate shuttle and glutamine oxidation.
  • Transcriptomic and histological analyses were conducted on human gut tissue from inflammatory bowel disease patients.
  • Tumor Necrosis Factor alpha enhanced α-synuclein accumulation in enteric neurons and glia.
  • Malate-aspartate shuttle dysfunction was observed, leading to impaired mitochondrial function.
  • A metabolic shift toward glutamine oxidation was identified in patient cells.
  • The neuroprotective compound Chicago-Sky-Blue 6B partially rescued mitochondrial function in affected cells.

Abstract

Abstract Gastrointestinal dysfunction often precedes motor symptoms in Parkinson’s disease (PD), suggesting the enteric nervous system (ENS) is central to early pathogenesis. How α-synuclein contributes to ENS dysfunction, and how inflammation modulates this, remains unclear. Here we show that Tumor Necrosis Factor alpha enhances α-synuclein accumulation in induced pluripotent stem cell-derived enteric neurons and glia, and impairs the malate-aspartate shuttle, a key pathway for mitochondrial energy production. This drives a metabolic shift toward glutamine oxidation in patient cells. This metabolic impairment reduces overall mitochondrial function, which is partially rescued by the neuroprotective compound Chicago-Sky-Blue 6B. Furthermore, transcriptomic and histological analyses of human gut tissue from inflammatory bowel disease patients reveal that inflammation-associated metabolic suppression and α-synuclein upregulation occur beyond PD, representing general hallmarks of intestinal inflammation. These findings highlight a conserved metabolic vulnerability in the ENS and establish patient-derived enteric lineages as a robust platform to model inflammatory ENS pathology.

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Cite This Study

Ghirotto et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ebc5a333a821460d45ahttps://doi.org/10.1038/s41467-026-71317-y
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