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April 17, 2026ACS Chemical Neuroscience0 citations

Tracking ClO – Dynamics during the Progression of Parkinson’s Disease in MPTP Mouse Model Using In Vivo Brain Microdialysis

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YCYuqi ChengCJCuicui JiangZZZhenhui Zhang

Key Points

  • This research aims to investigate the dynamic changes in chlorite (ClO-) levels during the progression of Parkinson's disease.
  • Developed a new method combining in vivo microdialysis with fluorescence detection.
  • Synthesized N,P-doped carbon dots for real-time tracking of ClO-.
  • Measured ClO- levels in the striatum of MPTP-induced acute PD model mice over time.
  • Sustained elevation of the ClO- level in the striatum observed for up to 11 hours.
  • Increased expression of the microglia-specific protein IBA1 noted.
  • Pro-inflammatory cytokines IL-1β, IL-6, and TNF-α were also elevated.

Abstract

Oxidative stress induced by hypochlorite (ClO-) is significant in Parkinson's disease (PD) pathogenesis, yet the dynamic variation in the brain's ClO- level during PD progression remains unclear. Herein, we developed a new reliable method combining in vivo microdialysis brain sampling with fluorescence detection for accurate and real-time tracking of local ClO- levels in the striatum. In the strategy, N,P-co-doped fluorescent carbon dots (N,P-CDs+) with a high positive charge (22.33 mV) and an average particle size (4.4 nm) were synthesized, exhibiting membrane-impermeability, fast response, high selectivity, and good sensitivity toward ClO-. Leveraging the electrostatic attraction between N,P-CDs+ and ClO-, an N,P-CDs+-functionalized microdialysis perfusate for rapid capture of ClO- was constructed, yielding a 6.13-fold enhancement in the microdialysis recovery compared with artificial cerebrospinal fluid (aCSF). Importantly, this is the first report of a sustained elevation of the ClO- level in the striatum of MPTP-induced acute PD model mice for up to 11 h, accompanied by increased expression of the microglia-specific protein IBA1 and the pro-inflammatory cytokines IL-1β, IL-6, and TNF-α. Overall, this work provides a powerful analytical method for in vivo detection of ClO-, and simultaneously reveals the variation pattern of the ClO- level in PD pathogenesis.

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Cite This Study

Cheng et al. (2026) studied this question.

synapsesocial.com/papers/69e1cfcb5cdc762e9d858c0ahttps://doi.org/10.1021/acschemneuro.5c00886
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