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May 13, 2026Brain Research Bulletin0 citationsOpen Access

Exosomes from joints mediate depressive-like behaviors in MIA arthritis mice

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ZLZonghao LiYGYiming GaoHMH Ma

Key Points

  • The research aims to explore how exosomes from inflamed joints affect mood and contribute to depressive-like behaviors in mice with arthritis.
  • Utilized mono-iodoacetate (MIA) to induce arthritis in mice and study exosome effects.
  • Inhibited exosome production with GW4869 and transferred purified exosomes between mice.
  • Conducted proteinase-K assays to assess HMGB1 localization on exosomes.
  • Mice with MIA arthritis exhibited reduced sucrose preference and increased neuronal pp65 and senescence markers.
  • Exosome inhibition prevented the behavioral and molecular changes associated with depression (p<0.05).
  • Neutralization of HMGB1 reversed neuronal activation and improved behavioral performance without affecting joint damage.

Abstract

Arthritis-related mood disturbances suggest pathogenic communication between inflamed joints and the brain, yet the causal mediators remain unclear. Here we show that exosomes released from mono-iodoacetate (MIA)-injured knees transmit surface-displayed high mobility group box 1 (HMGB1) to the brain, where they activate neuronal NF-κB and senescence programs that culminate in depressive-like behavior. In mice with MIA arthritis, depressive-like behaviours (reduced sucrose/saccharin preference) coincided with increased neuronal pp65 and senescence markers. Pharmacologic exosomes inhibition (GW4869) prevented both molecular and behavioral phenotypes, while intravenous transfer of purified joint-derived exosomes from MIA donors recapitulated them in naïve recipients. A proteinase-K protection assay localized HMGB1 to the exosomes exterior, and neutralizing HMGB1 with 2G7 abrogated exosome-induced neuronal pp65/senescence and restored behavioral performance without altering joint histopathology. In vitro, joint-derived exosomes triggered HMGB1-dependent NF-κB activation and senescence signatures in primary neurons, supporting neuron-intrinsic responsiveness to vesicular DAMP signaling. These data identify a joint-to-brain exosome/HMGB1 axis as both necessary and sufficient to drive affective dysfunction after MIA. Our findings propose a tractable therapeutic framework-intercepting exosomes biogenesis/trafficking or neutralizing circulating HMGB1-to mitigate mood symptoms associated with arthritis. More broadly, the work illustrates how tissue-restricted inflammation can remodel distant neural circuits via vesicle-borne danger signals, offering biomarker and intervention opportunities for inflammatory disorders complicated by affective disturbances.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6a0414cc79e20c90b4444b59https://doi.org/10.1016/j.brainresbull.2026.111929
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