DASbox® Mini Bioreactor

Eppendorf76DS0250ODSS

Small working volumes save valuable material and medium in process development and screening procedures. The Eppendorf DASbox Mini Bioreactor is a fully instrumented mini bioreactor featuring industry standard design and advanced control functionalities.

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Average Rating 5.0

Application Area:

Tissues and samples

Easy to use, optimized results, affordable and quick performance.

Review Date: 3 Oct 2019 | Eppendorf

The DASbox Mini Bioreactor is an industry-standard autoclavable glass vessel featuring a multi port stainless steel head plate and a powerful direct overhead drive. With working volumes of 60 – 250 mL it is perfectly suited for process development in cell culture and microbial applications and ready for use with the Eppendorf DASbox.

  • Industry-standard design for excellent scalability and reproducibility in both cell culture and microbiology
  • Stainless steel head plate, fully instrumented with standard sensors for precise measurement and control of temperature, pH, DO, and level
  • Small working volumes of 60 – 250 mL saving valuable resources
  • Powerful direct overhead drive with marine impeller (cell culture) or two Rushton-type impellers (microbiology)
  • Liquid-free exhaust condenser with easy handling by automatic slide-in activation and slide-out deactivation mode

Tailored solutions for vaccine development

In this application note, Eppendorf provides a detailed overview of its tailored automation solutions to streamline vaccine development workflows. Additionally, Eppendorf discusses the evolution of various vaccine technology platforms, from traditional whole pathogen vaccines to more recent recombinant-protein and nucleic-acid vaccines. These newer platforms are recognized for their ability to accelerate development processes and address a wide range of indications rapidly and cost-effectively, meeting the growing demand for new vaccines.






White PapersLife Sciences

Upstream bioprocessing in food and feed applications

Bioprocessing has been used for decades for industrial food and beverage production to improve product characteristics, ensure consistent quality, and reduce production costs from strain engineering, optimization of process parameters, handling of difficult process conditions, and more. In this white paper, Eppendorf tackles these challenges in food and feed applications, discussing how stirred-tank bioreactor systems have proven their value, offering online control of critical process parameters, and how parallel bioprocess systems help accelerate process development and maximize the reproducibility between runs.


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