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Basic research using pluripotent stem cells and stem cell-based models in disease modeling, drug discovery, toxicology testing, regenerative medicine, and exciting new research areas like cultivated meat relies on antiquated manual cell culture techniques. We want to help.
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Stem cell expansion
Pluripotent stem cell expansion using either embryonic stem cells (ES) or induced pluripotent stem cells (iPSC) is a critical technique for producing cells used in disease modeling, drug discovery and therapeutic development. The expansion process involves the proliferation of ES/iPSCs to obtain sufficient quantities for research or translation to the clinic while maintaining the ES/iPSC’s pluripotency and differentiation capacity.
Differentiation
Differentiating any type of cell, be it iPSC or mesenchymal stromal cells, is a crucial workflow for producing the desired end cell type you need for use in basic research or therapeutic. Differentiation protocols generally involve sequentially applying growth factors or small molecules at precise time or event driven points to your cell culture.
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Stem cells

Basic research using pluripotent stem cells and stem cell-based models in disease modeling, drug discovery, toxicology testing, regenerative medicine, and exciting new research areas like cultivated meat relies on antiquated manual cell culture techniques. We want to help.

With the reproducibility crisis in full tilt, it's imperative your protocols are robust, and the data you generate reliable.

That's why we built Emmet - an intelligent machine to automate TC flask-based cell culture protocols. With Emmet you can:

  • Build customized machine protocols—no coding required—to automate and standardise your stem cell expansion and differentiation workflows.
  • Adjust nearly every process parameter on Emmet - from the tilt angle of flasks to the speed at which fluids are transferred into cell culture vessels.
  • Culture up to 18 cell lines or experimental conditions in parallel to perform DOE-style experiments for protocol development & optimization.
  • And beyond - let your imagination run wild.

We welcome the opportunity to learn about your research and discuss how Emmet could help advance your research & development goals - reach out to learn more.

Related Products

Emmet

Emmet is an intelligent machine that automates your TC flask cell culture workflows. With a unified hardware and software stack in a single bench-top instrument, Emmet brings physical AI to the tissue culture lab.
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Related resources

Automated hiPSC expansion: Emmet

Showcasing the efficacy of expanding hiPSCs from a T25 to a T225 in a closed, automated bench-top system (Emmet).
App Notes
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1.17.2025
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Applications

Stem cell expansion

Pluripotent stem cell expansion using either embryonic stem cells (ES) or induced pluripotent stem cells (iPSC) is a critical technique for producing cells used in disease modeling, drug discovery and therapeutic development. The expansion process involves the proliferation of ES/iPSCs to obtain sufficient quantities for research or translation to the clinic while maintaining the ES/iPSC’s pluripotency and differentiation capacity.
Learn More

Differentiation

Differentiating any type of cell, be it iPSC or mesenchymal stromal cells, is a crucial workflow for producing the desired end cell type you need for use in basic research or therapeutic. Differentiation protocols generally involve sequentially applying growth factors or small molecules at precise time or event driven points to your cell culture.
Learn More

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