Robotic Liquid Handler

A robotic liquid handler is an automated laboratory instrument that aspirates and dispenses liquids, enabling reproducible sample preparation and high-throughput workflows with less manual pipetting. Guided by programmed protocols, its pipetting head moves between tubes, microplates, or other labware, using disposable or fixed tips to transfer defined volumes while controlling liquid-handling sequence and mixing. In neuroscience, these systems support reagent distribution, cell-based assay preparation, nucleic acid workflows, and screening experiments, helping standardize measurements, reduce handling errors, and increase experimental throughput. Automation also improves scalability when studies require many samples or repeated experimental conditions.

Robotic Liquid Handler - Related Videos

Research

JoVE Journal - Developmental Biology
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Scalable 96-well Plate Based iPSC Culture and Production Using a Robotic Liquid Handling System

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Cited by 23 •

2015

The protocols described allow laboratories to perform scalable, adherent stem cell culture in high throughput with minimal labor, experience and equipment investment cost using a programmable liquid handling robot and 96-well plates. iPSCs passaged more than 20 times on this system maintained pluripotency, normal karyotypes and differentiated into cardiomyocytes.

High-throughput, Automated Extraction of DNA and RNA from Clinical Samples using TruTip Technology on Common Liquid Handling Robots

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Cited by 13 •

2013

TruTip is a simple nucleic acid extraction technology whereby a porous, monolithic binding matrix is inserted into a pipette tip. Consequently, the sample preparation format is compatible with most liquid handling instruments, and can be used for many medium to high-throughput clinical applications and sample types.

Research

JoVE Journal - Bioengineering

Robotic Production of Cancer Cell Spheroids with an Aqueous Two-phase System for Drug Testing

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Cited by 37 •

2015

A protocol for robotic printing of cancer cell spheroids in a high throughput 96-well plate format using an aqueous two-phase system is presented.

A Robotic Platform for High-throughput Protoplast Isolation and Transformation

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Cited by 21 •

2016

A high-throughput, automated, tobacco protoplast production and transformation methodology is described. The robotic system enables massively parallel gene expression and discovery in the model BY-2 system that should be translatable to non-model crops.

Research

JoVE Journal - Biology
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Optimization of the Ugi Reaction Using Parallel Synthesis and Automated Liquid Handling

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Cited by 5 •

2008

The Ugi reaction has proved to be a convenient way to quickly create diverse libraries of compounds. It involves the reaction of an amine, an aldehyde, a carboxylic acid and an isonitrile typically in methanol at room temperature. In this video, we utilize a 48-slot Mettler-Toledo MiniBlock equipped with filtration tubes and a Mettler-Toledo MiniMapper automated liquid handler was used to deliver the reagents and solvent. The parameters of interest were the concentration, the solvent...

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