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January 22, 2026Nature Communications2 citationsOpen Access

C1q-dependent clearance of alpha-synuclein allows macrophages to transiently limit enteric synucleinopathy in male mice

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PMPhillip MackieJKJoanne M. KoshyMBM Bhogade

Key Points

  • To investigate the role of C1q-dependent macrophage clearance in enteric synucleinopathy and associated gut dysfunction.
  • Employed fibrillar injection model of enteric synucleinopathy in male mice.
  • Examined macrophage response to alpha-synuclein pathology.
  • Utilized pharmacologic depletion of ENS-macrophages and genetic deletion of C1q.
  • Assessed effects on enteric neuropathology and gut dysfunction over time.
  • Macrophages upregulated engulfment machinery in response to alpha-synuclein.
  • Depletion of macrophages or deletion of C1q exacerbated enteric neuropathology.
  • C1q deletion improved gut dysfunction initially, indicating a protective role.
  • C1q-dependent clearance diminished over time, correlating with worsening ENS pathology.

Abstract

Deposition of misfolded α-synuclein (αsyn) in the enteric nervous system (ENS) is found in multiple neurodegenerative diseases. It is hypothesized that ENS synucleinopathy contributes to both the pathogenesis and non-motor morbidity in Parkinson's Disease (PD), but the cellular and molecular mechanisms that shape enteric histopathology and dysfunction are poorly understood. Here, we employ a fibrillar injection model of enteric synucleinopathy in male mice and demonstrate that ENS-resident macrophages, which play a critical role in maintaining ENS homeostasis, initially respond to enteric neuronal αsyn pathology by upregulating machinery for complement-mediated engulfment. Pharmacologic depletion of ENS-macrophages or genetic deletion of C1q enhanced enteric neuropathology. Conversely, C1q deletion ameliorated gut dysfunction, indicating that complement partially mediates αsyn-induced gut dysfunction. However, this C1q-dependent clearance mechanism diminished over time and its failure temporally correlated with the further increase in ENS pathology. These findings highlight the importance of enteric neuron-macrophage interactions in removing toxic protein aggregates that putatively shape the gastrointestinal manifestations of PD.

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Cite This Study

Mackie et al. (2026) studied this question.

synapsesocial.com/papers/6971bd90642b1836717e229ehttps://doi.org/10.1038/s41467-026-68641-8
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