Patch-clamp Electrophysiology

Patch-clamp electrophysiology is a technique for measuring electrical currents across the membrane of an individual cell, making it essential for studying how neurons communicate. A glass micropipette forms a high-resistance seal with the cell membrane, allowing researchers to control membrane voltage or current and record ion channel activity under defined conditions. In neuroscience, whole-cell, cell-attached, and isolated-membrane configurations reveal how synaptic inputs, action potentials, and neurotransmitter-gated channels shape neuronal signaling. These measurements help characterize circuit function, investigate disease-related changes in excitability, and evaluate how drugs or genetic modifications affect neuronal physiology.

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JoVE Science Education - Advanced Biology

Patch Clamp Electrophysiology

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2023

Neuron cell membranes are populated with ion channels that control the movement of charge into and out of the cell, thereby regulating neuron firing. One extremely useful technique for investigating the biophysical properties of these channels is called patch clamp recording. In this method, neuroscientists place a polished glass micropipette against a cell and apply suction to form a high resistance seal. This process isolates a small “patch” of membrane that contains one or more ion channels.

Research

JoVE Journal - Neuroscience
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Culturing and Electrophysiology of Cells on NRCC Patch-clamp Chips

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Cited by 6 •

2012

We show how planar patch-clamp chips fabricated at the National Research Council of Canada are sterilized, primed, loaded with medium, plated with cells, and used for electrophysiological recordings.

Whole-Cell Patch Clamp Electrophysiology: A Method to Study Electrical Properties of Neurons

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2023

This protocol describes a technique called whole-cell patch clamp electrophysiology, which is a method to study electrical properties of Mauthner neurons and other reticulospinal cells in zebrafish embryos.

Establishing a Whole-Cell Patch Clamp for Electrophysiological Recording from Vomeronasal Sensory Neurons

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2025

The protocol video describes establishing a whole-cell patch clamp for electrophysiological recording from the sensory neurons of the vomeronasal organ (VNO) in mice. A coronal VNO slice with fluorescently labeled sensory neurons is placed in a recording setup. A labeled neuron is patched with a recording pipette in a whole-cell configuration for electrophysiological recording in response to chemical stimuli.

Whole-cell Patch-clamp Recordings for Electrophysiological Determination of Ion Selectivity in Channelrhodopsins

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Cited by 26 •

2017

This article describes how the ion selectivity of channelrhodopsin is determined with electrophysiological whole-cell patch-clamp recordings using HEK293 cells. Here, the experimental procedure for investigating chloride selectivity of an anion-selective channelrhodopsin is demonstrated. However, the procedure is transferable to other channelrhodopsins of distinct selectivity.

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