Micropipette Control

Micropipette control is the engineering of precise liquid aspiration and dispensing at microliter to nanoliter scales, where small volume errors can affect experimental results. Manual or automated systems regulate piston displacement, air pressure, or positive displacement to move fluid through a narrow tip, while calibrated settings and controlled plunger motion help maintain accuracy and repeatability. Micropipette control supports liquid handling in microfluidics, analytical chemistry, molecular biology, and cell-based experiments. Improved control reduces contamination, limits sample loss, and enables reliable preparation of small-volume reactions, serial dilutions, and automated laboratory workflows.

Micropipette Control - Related Videos

Research

JoVE Journal - Bioengineering

Micropipette Aspiration of Substrate-attached Cells to Estimate Cell Stiffness

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Cited by 30 •

2012

Here we describe a quick and simple method to measure cell stiffness. The general principle of this approach is to measure membrane deformation in response to well-defined negative pressure applied through a micropipette to the cell surface. This method provides a powerful tool to study biomechanical properties of substrate-attached cells.

Fluorescence Micropipette Aspiration Assay to Investigate Red Blood Cell Mechanosensing

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Cited by 1 •

2024

The exploration of cellular behavior under mechanical stress is pivotal for advances in cellular mechanics and mechanobiology. We introduce the Fluorescence Micropipette Aspiration (fMPA) technique, a novel method combining controlled mechanical stimulation with comprehensive analysis of intracellular signaling in single cells. This technique investigates new in-depth studies of live-cell mechanobiology.

Use of Micropipette-Guided Drug Administration as an Alternative Method to Oral Gavage in Rodent Models

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Cited by 6 •

2024

Here, we describe micropipette-guided drug administration (MDA) as an alternative method to oral gavage that incentivizes the research animal to ingest treatments readily with minimal stress and discomfort.

Obtention of Giant Unilamellar Hybrid Vesicles by Electroformation and Measurement of their Mechanical Properties by Micropipette Aspiration

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Cited by 6 •

2020

The goal of the protocol is to reliably measure membrane mechanical properties of giant vesicles by micropipette aspiration.

Research

JoVE Journal - Biology
Free Sample

Multifunctional, Micropipette-based Method for Incorporation And Stimulation of Bacterial Mechanosensitive Ion Channels in Droplet Interface Bilayers

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Cited by 8 •

2015

Bacterial mechanosensitive channels can be used as mechanoelectrical transducers in biomolecular devices. Droplet interface bilayers (DIBs), cell-inspired building blocks to such devices, represent new platforms to incorporate and stimulate mechanosensitive channels. Here, we demonstrate a new micropipette-based method of forming DIBs, allowing the study of mechanosensitive channels under mechanical stimulation.

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