Related Experiment Video
Updated: Sep 3, 2026

Double-barreled and Concentric Microelectrodes for Measurement of Extracellular Ion Signals in Brain Tissue
Published on: September 5, 2015
Nano-needle Electrode System for Recording Membrane Potentials in AUTS2-Deficient Neurons
Zuokun Yin1,2, Haiyan Zhang3, Chunlai Gao3
1School of Mechanical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan250353, China.
Abstract:
Investigating spontaneous membrane potentials in neurons harboring Autism Susceptibility Candidate 2 (AUTS2) defects is pivotal for elucidating the pathophysiological mechanisms of neurodevelopmental disorders and for guiding targeted therapeutic strategies. Conventional electrophysiological techniques have substantially advanced understanding of neuronal function. However, they encounter limitations in capturing transient paroxysmal depolarization shifts (PDS) in AUTS2-deficient neurons, primarily owing to ion imbalances and signal attenuation. To address these constraints, we developed a nano-needle electrode system that integrates a nano-needle electrode, a 3D surface profiling device, and a neuro-electrophysiological recording device. This minimally invasive platform enables nondestructive submicron cellular scanning, and electrophysiological recording with a signal-to-noise ratio exceeding 50 dB. Employing this system, we revealed the occurrence of PDS events and a 100-fold enhancement (surpassing 1 kHz) in neuronal firing activity with AUTS2 defects. These findings enhance the understanding of AUTS2's impact on neuronal excitability and highlight our system's potential to guide future therapies for epilepsy and neuropsychiatric disorders.

