Micro Pipette Pulling

Micro pipette pulling is a fabrication method that transforms glass capillary tubing into fine, tapered micropipettes for precise handling and measurement at the cellular scale. A pipette puller locally heats the glass until it softens, then applies controlled force to separate the capillary; heat, pull strength, velocity, and cooling conditions determine the tip diameter, shape, and resistance. In neuroscience, pulled pipettes support patch-clamp recording, intracellular stimulation, and microinjection by providing stable interfaces with individual neurons. Reproducible pipette geometry improves seal formation, electrical measurements, and experimental consistency, making the technique essential for studying neuronal signaling and membrane properties.

Micro Pipette Pulling - Related Videos

Research

JoVE Journal - Biology

Pull-down of Calmodulin-binding Proteins

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Cited by 19 •

2012

Calmodulin (CaM) pull-down assay is an effective way to investigate the interaction of CaM with various proteins. This method uses CaM-sepharose beads for efficient and specific analysis of CaM-binding proteins. This provides an important tool to explore CaM signaling in cellular function.

Making Patch-pipettes and Sharp Electrodes with a Programmable Puller

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Cited by 22 •

2008

This video shows how to use a programmable puller to make patch pipettes and sharp electrodes for electrophysiology. The same procedure can be used to make a variety of glass tools, including injection needles.

Education

JoVE Science Education - Chemistry

Co-Immunoprecipitation and Pull-Down Assays

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2023

Co-immunoprecipitation (CoIP) and pull-down assays are closely related methods to identify stable protein-protein interactions. These methods are related to immunoprecipitation, a method for separating a target protein bound to an antibody from unbound proteins. In CoIP, an antibody-bound protein is itself bound to another protein that does not bind with the antibody, this is followed by a separation process that preserves the protein-protein complex. The difference in pull-down assays is that...

Pulling Membrane Nanotubes from Giant Unilamellar Vesicles

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Cited by 42 •

2017

Many proteins in the cell sense and induce membrane curvature. We describe a method to pull membrane nanotubes from lipid vesicles to study the interaction of proteins or any curvature-active molecule with curved membranes in vitro.

Pressure-polishing Pipettes for Improved Patch-clamp Recording

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Cited by 13 •

2008

This is a guide to modifying the shape of glass micropipettes. Specifically, by using heat and air pressure the taper is widened without increasing the tip opening, leading to lower pipette resistance. This is critical to obtain low noise recordings of small cells but is useful in many applications.

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