Liquid HandlingBioprintingAutomated pipettingCurated metadata

Principles of computer-controlled linear motion applied to an open-source affordable liquid handler for automated micropipetting

Not a bioprinter, but relevant open automation tool for biofabrication/bioprinting workflows. | Canonical open-source liquid handling robot paper; good baseline against newer modular tools like digital pipette.

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Publication data

Crossref and OpenAlex

Publication record

Matched by doi · retrieved 2026-07-21

Abstract

OTTO is an open-source automated liquid handler that can be fabricated at a cost of $1,500 using off-the-shelf and 3D-printable parts as an alternative to commercial devices. Open-source approaches have been applied to build syringe pumps, centrifuges, and other laboratory equipment. These devices are affordable but generally rely on a single motor to perform simple operations and thus do not fully utilize the potential of the Maker Movement. Open-source linear actuators and microcontrollers enable the fabrication of more complex laboratory instruments that rely on 3D positioning and accurate dispensing of fluids, such as automated liquid handlers. These instruments can be built rapidly and affordably, thereby providing access to highly reproducible sample preparation for common biological assays such as qPCR. We applied the design principles of speed and accuracy, unattended automation, and open-source components to build an automated liquid handler that controls micropipetting of liquids in 3D space at speeds and positional resolutions required for qPCR. In benchmarking studies, OTTO showed accuracy and sample preparation times comparable to manual qPCR. The ability to control linear motion and liquid dispensing using affordable off-the-shelf and 3D-printable parts can facilitate the adoption of open-source automated liquid handlers for qPCR, bioplotting, and other bioinstrumentation applications.

Bibliographic details

Published
2020-08-12
Journal/source
Scientific Reports
Publisher
Springer Science and Business Media LLC
DOI
10.1038/s41598-020-70465-5
Type
journal-article
Language
en
Volume / issue
10 / 1
Pages
Not supplied
ISSN
2045-2322

Access and metrics

Open access
Yes
OA status
gold
License
cc-by
Version
publishedVersion
Cited by
40
References
32
Retracted
No

Authors and affiliations

  1. David C. FlorianVanderbilt University · Vanderbilt University Medical Center
  2. Mateusz OdziomekVanderbilt University
  3. Cerie L. OckVanderbilt University
  4. Hannah ChenVanderbilt University
  5. Scott A. GuelcherVanderbilt University · Vanderbilt University Medical Center

Topics and keywords

Microfluidic and Bio-sensing TechnologiesViral Infectious Diseases and Gene Expression in InsectsNeuroscience and Neural EngineeringOpen sourceComputer scienceMotion (physics)Operating systemArtificial intelligenceSoftware

Funding

  • National Science Foundation
  • Vanderbilt University