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Cellular level cryo-neuromodulation using rapid and localized cooling device combined with microelectrode array.

Jaehyun Kim1, Jong Seung Lee2, Soyeon Noh3

  • 1Department of Mechanical Engineering, Sogang University, 35 Baekbeom-ro, Mapo-gu, Seoul, 04107, Republic of Korea.

Biosensors & Bioelectronics
|February 20, 2025
PubMed
Summary

This study introduces a cryo-neuromodulation platform for precise temperature control in cryotherapy research. The device enables investigation of neuronal responses to cooling, advancing potential clinical applications.

Keywords:
CoolingCryo-neuromodulationCryotherapyMicroelectrode arrayNerve transmission

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Area of Science:

  • Neuroscience
  • Biomedical Engineering
  • Cryobiology

Background:

  • Cryotherapy's clinical adoption is limited by poor understanding of its mechanisms and efficacy.
  • Lack of precise spatiotemporal temperature control and real-time quantitative analysis hinders cryotherapy research.
  • Existing methods fail to provide localized cooling and assess cellular responses effectively.

Purpose of the Study:

  • To develop a novel cryo-neuromodulation platform for precise, localized, and real-time control of cryotherapy.
  • To investigate the cellular-level modulation of neuronal activity by controlled cooling.
  • To establish a framework for advancing research in cryotherapy and neuromodulation.

Main Methods:

  • Integration of a high-speed precision cooling device with a microelectrode array (MEA) system.
  • Application of controlled cooling rates (e.g., -20°C/s) to neuronal networks.
  • Real-time monitoring and analysis of neuronal recovery and network activity post-cooling.

Main Results:

  • Neurons demonstrated full recovery within 1 minute following rapid cooling.
  • Silenced neurons were observed to influence distant cells through network communication.
  • Extended cooling durations (10 minutes) led to altered neuronal dynamics, including delayed recovery and reduced burst activity.

Conclusions:

  • The developed cryo-neuromodulation platform enables precise, reversible neural control.
  • Findings highlight the critical importance of precise cooling parameter control for cryotherapy efficacy.
  • The platform shows potential for research and clinical applications in anesthesia, pain management, and neurological disorder treatment.