Giant Patch Technique

The giant patch technique is an electrophysiological method that records ion-channel activity from an exceptionally large section of cell membrane, enabling detailed analysis of membrane transport and signaling. A patch pipette seals onto the membrane, and the attached patch is excised or expanded to increase the recording area; researchers can then control the solution bathing each membrane surface while measuring ion currents under defined voltage conditions. In biology, this approach supports studies of channel kinetics, ionic selectivity, pharmacological regulation, and intracellular modulation. Its large membrane area also facilitates biochemical manipulation and repeated solution exchange, providing a powerful bridge between single-channel recordings and whole-cell physiology.

Giant Patch Technique - Related Videos

Research

JoVE Journal - Biology

Giant Liposome Preparation for Imaging and Patch-Clamp Electrophysiology

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Cited by 23 •

2013

Reconstituting functional membrane proteins into giant liposomes of defined composition is a powerful approach when combined with patch-clamp electrophysiology. However, conventional giant liposome production may be incompatible with protein stability. We describe protocols for producing giant liposomes from pure lipids or small liposomes containing ion channels.

Reconstitution of a Transmembrane Protein, the Voltage-gated Ion Channel, KvAP, into Giant Unilamellar Vesicles for Microscopy and Patch Clamp Studies

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Cited by 42 •

2015

The reconstitution of the transmembrane protein, KvAP, into giant unilamellar vesicles (GUVs) is demonstrated for two dehydration-rehydration methods — electroformation, and gel-assisted swelling. In both methods, small unilamellar vesicles containing the protein are fused together to form GUVs that can then be studied by fluorescence microscopy and patch-clamp electrophysiology.

Research

JoVE Journal - Neuroscience
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Electrophysiological Recordings from the Giant Fiber Pathway of D. melanogaster

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Cited by 17 •

2011

The Giant Fiber System is a simple neuronal circuit of adult Drosophila melanogaster containing the largest neurons in the fly. We describe the protocol for monitoring synaptic transmission through this pathway by recording post synaptic potentials in dorsal longitudinal (DLM) and tergotrochanteral (TTM) muscles following direct stimulation of the Giant Fiber interneurons.

Research

JoVE Journal - Neuroscience
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Slice Patch Clamp Technique for Analyzing Learning-Induced Plasticity

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Cited by 20 •

2017

The slice patch clamp technique is an effective method for analyzing learning-induced changes in the intrinsic properties and plasticity of excitatory or inhibitory synapses.

Single-Cell Culture of Bacteria Within Giant Vesicles

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2025

Source: Morita, M., et al. Bacterial Cell Culture at the Single-cell Level Inside Giant Vesicles. J. Vis. Exp. (2019).This video demonstrates a method for culturing and observing individual bacterial cells encapsulated inside giant vesicles anchored to a supported lipid bilayer. The system enables stable, long-term imaging of single-cell growth dynamics in a confined, physiologically relevant microenvironment.

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