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High-Throughput Cell Engineering

Electroporation proven principle, reimagined for scalable discovery

Electroporation is a trusted standard for non-viral cellular delivery, serving as the essential gateway for research in cell and gene therapy, functional genomics, and disease modelling.

However, hurdles remain. The high sample requirements and "brute force" nature of conventional systems often require a trade-off between high-throughput scale and the preservation of delicate cell health.

The DropGenie and Revvity integration helps address this challenge. By reimagining this proven electroporation principle into an easily automated, miniaturized microfluidic workflow, we support high-efficiency CRISPR and mRNA delivery with 97% less cellular input than conventional methods. Utilizing a innovative, cell-shielding liquid electrode geometry, this 100x miniaturized platform helps protect your biological samples while providing the scalability your research demands.

Explore how to transition from months of iterative manual optimization to actionable, single-donor resolution data in just five hours—all within a validate workflow, plug-and-play Revvity automation environment.

For research use only. Not for use in diagnostic procedures.
 

High-Throughput Cell Engineering hero
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  • Guide
  • Why it matters?
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Guide

dropgenie workflow


Revvity and DropGenie have collaborated to combine high-throughput automation and delicate biological precision into a user-friendly integrated solution, allowing scientists the opportunity to focus on biological insights rather than manual tasks.

The Revvity + DropGenie Solution

  • Plug-and-Play Integration: The DropGenie platform is SBS-formatted, allowing the Revvity Fontus™ gripper to handle it like any standard plate.
  • Precision Dispensing: Leverage the FlexDrop™ Plus for non-contact, nanoliter payload deposition to help minimize waste and increase experimental throughput.
  • Move from initial setup to high-efficiency transfection in a new automation environment in less than five hours.

Read the app note for the automation study results

Why this automation matters

By miniaturizing the process, you can now run a 96-target screen in triplicate across four different donors using no more than 10 million cells per donor, extracting high-dimensional, multiomic data at a resolution previously reserved for small-scale pilot studies.

Versatility & Parallelization

  • Payload flexibility: established protocols for mRNA, RNP (CRISPR), plasmid DNA, and Transposons.
  • High parallelization: execute 48 independent reactions in parallel on a single microfluidic cartridge.
  • Broad validation: in Primary T-cells (including T-regs), iPSCs, Synoviocytes, Myoblasts, and over 15 cell types.

triDrop, built for speed and gentle cell handling

The core of this technology is the Tri-Droplet Liquid Structure (triDrop). Unlike traditional systems that apply current directly to a bulk cell population in direct contact with the electrodes, our platform uses "liquid electrodes" to buffer cells from damage during electroporation.

  • Thermal Protection: Cells are shielded from the heat and electrolysis byproducts (hydrolysis) that typically compromise viability.
  • Immediate Recovery: Cells are automatically moved into a recovery buffer rapidly after the pulse.
  • Scientific Result: Higher viability and faster recovery, supporting your downstream data reflects healthy biology, not experimental stress.
Researcher Advantage

The DropGenie+Revvity workflow provides a workhorse of discovery.

  • Primary value: discovery and scale-out
  • Cell input requirement: ultra-low (2-3% of standard)
  • Workflow integration: plug-and-play (5-hr setup + calibration)
  • Electroporation method: gentle "liquid electrode"
  • Payload deposition: non-contact with the FlexDrop™ Plus dispenser
  • Hardware flexibility: open SBS / standard deck
  • Target use case: high-dimensional screens, cell engineering, arrayed CRISPR screening
  • Workflow breadth: the Fontus™ workstation may also handle the complex upstream sample prep.

Read the app note for the automation study results

Featured products

For the most complete automation and minimum user intervention (longest walkaway), the Fontus™ NGS workstation includes either a 96 or 384 pipetting head and  a highly flexible variable 8-span pipetting arm (Varispan™).
Fontus Workstation, Dual-Arm, 8-Tip Varispan
Part number: YFM8H01, YFL8H01, YFM8L01, YFL8L01
View details
FlexDrop Plus
FlexDrop Plus Non-Contact Dispenser
Part number: CLS159493
View details
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FAQs

  • How does this system compare to traditional "bulk" electroporation?

    DropGenie enables you to achieve up to a 100x reduction in cell input and >85% CRISPR knockout in as few as 10,000 primary cells, compared to the millions required by conventional cuvette-based systems.

  • Can I use this with my existing Revvity protocol software?

    Yes. The DropGenie module utilizes a REST API, making it natively compatible with the Revvity software environment.

  • Is it effective for CRISPR Knock-ins?

    Absolutely. The platform is optimized for CRISPR-mediated knock-in, such as anti-HER2 CAR-T cell generation, requiring <1% of the cell input typically needed for these complex edits.

  • Does miniaturization affect the "Single Donor Resolution"?

    It enhances it. Because the cell requirement is so low, you can perform extensive multiparametric assays on cells from a single donor, reducing the need to pool donors and mask individual biological variations.

Featured resources

Application note

DropGenie Revvity cell engineering miniaturized electroporation automation

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