Amphotericin-b Perforated Patch-clamp

Amphotericin-B perforated patch-clamp is an electrophysiological technique that records ionic currents while preserving much of a cell’s native intracellular environment, making it valuable for studying membrane function in cancer research. In this method, amphotericin B forms small pores in the patch membrane, allowing ions to pass without rupturing the cell or extensively diluting its cytoplasm; voltage control then reveals how ion channels respond to defined conditions. The approach supports analysis of channel activity, membrane potential, and cellular responses to pharmacological compounds. These measurements can clarify how altered ion transport contributes to cancer cell signaling, proliferation, migration, and therapeutic sensitivity.

Amphotericin-b Perforated Patch-clamp - Related Videos

Research

JoVE EoE - Urinary Tract Cancer

Amphotericin-B Mediated Perforated Patch-Clamp Analysis: An Electrophysiological Technique to Study Ionic Currents in Urinary Bladder Cells

0 Views •

2023

This video demonstrates the characterization of cationic currents from transient receptor potential melastatin type 4 (TRPM4) ion channels in detrusor smooth muscle cells using amphotericin-B mediated perforated patch-clamp technique. The technique helps evaluate the biophysical and pharmacological properties of ion channels.

Perforated Patch-Clamp Recordings of Inner Ear Sensory Neuron Cell Bodies

0 Views •

2025

This video demonstrates the patch-clamp technique for measuring ionic currents in inner ear sensory neuron cell bodies. It details the preparation and use of a polished patch-clamp pipette filled with an internal solution containing amphotericin B, which perforates the membrane to allow ion movement while preserving intracellular conditions. Voltage pulses are applied to trigger and record ion channel activity, providing insights into their properties and behavior.

Perforated Patch-Clamp Recording of Olfactory Sensory Neurons in Mice

0 Views •

2025

This video demonstrates electrophysiological recording of olfactory sensory neurons (OSNs) in mice using a perforated patch-clamp technique. The olfactory epithelium, containing OSNs with fluorophore-tagged odor receptors, is isolated from a mouse and secured in a recording chamber. A recording pipette is clamped to the dendritic knob of an OSN, and nystatin within the pipette perforates the membrane to form electrical connectivity with the cell. Finally, another pipette is used to deliver an...

Research

JoVE Journal - Neuroscience
Free Sample

Patch Clamp Recordings in Inner Ear Hair Cells Isolated from Zebrafish

0 Views •

Cited by 9 •

2012

The purpose of this video is to demonstrate procedures for obtaining healthy, intact hair cells from the inner ear organs of adult zebrafish and then using them for patch clamp studies aimed at characterizing the biophysical properties of their voltage-gated channels.

Education

JoVE Science Education - Advanced Biology

Patch Clamp Electrophysiology

0 Views •

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.

View All Results

FAQs

Related Topics