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Zwitterionic polymer coating allows long-term dopamine detection and brain activity recording in freely moving mice

Updated

Abstract

Stable dopamine detection and electrophysiological recordings were achieved in freely moving mice over a four-week period.

  • The brain relies on both electrical and chemical signaling, particularly in striatal dopamine circuits, which are vital for movement, reward, learning, and circadian rhythms.
  • Chronic electrochemical sensing of dopamine in freely moving animals faces challenges such as biofouling and electrode instability.
  • Surface grafting and photo crosslinking with zwitterionic poly(sulfobetaine methacrylate) (PSB) were developed to enhance the stability of microelectrode arrays and reference electrodes.
  • The PSB coating effectively reduces protein fouling and inflammatory responses while maintaining a stable reference potential for the electrodes.
  • Weekly electrochemical impedance spectroscopy indicated the long-term stability of the implanted electrodes, facilitating multidimensional analysis of brain function.

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Competing interests

Conflicts of Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
PubMed

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