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Invivo2 1000

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Maintain a safe and sterile laboratory environment with expert bio-decontamination services.

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Verify the proper installation and functionality of your equipment with IOQ services.

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Invivo2 1000

The InvivO2 1000dual hypoxia workstation was designed and built to give you the reassurance of reliable, physiologically-relevant results under controlled conditions. It allows you to study the most complex of cell interactions under perfect hypoxic conditions, regulating and maintaining oxygen, carbon dioxide, temperature, and humidity Whether you’re hoping to replicate the environment of blood vessels or lung tissue, the InvivO2 is the best tool for the job. Baker Ruskinn’s InvivO2 1000 hypoxia chamber has two independently controlled chambers each with a 210.3L working volume, 800 x 96 well capacity and a 49L interlock capacity, allowing you to study even the most complex cell interactions under perfect physiological oxygen conditions.

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Features & Benefits

Culture As Nature Intended

Baker Ruskinn’s InvivO2 1000 hypoxia workstation is ideal for routine cell culture experiments. Each chamber has a 210.3L working volume, 800 x 96 well capacity and a 49L interlock capacity, allowing you to study even the most complex cell interactions under perfect physiological oxygen conditions. Whether you’re hoping to replicate the low oxygen environment of blood vessels or lung tissue, the InvivO2 is the best tool for the job. Easy to use and adaptable to meet your needs, especially for cell culture applications that require carefully controlled oxygen regulation, InvivO2 offers accurate and stable user-defined environmental controls, Ezee Sleeve™ port systems for direct access to the inner chamber without compromising the integrity of the internal environment, a Removable Pop-Off™ front cover for easy set-up and cleaning, and Internal HEPA filtration delivers unrivalled air cleanliness ratings within the chamber for optimal growth conditions.
  • O2 control – from 0.1% to 23.0% in 0.1% increments(can be 0.0% with anoxic accessory).
  • Optional Hyperoxia (23% to 100% O2)
  • CO2 control – from 0.1% to 30.0% in 0.1% increments
  • Temperature control – from 7 °C above ambient to 45.0°C in 0.1° C increments
  • Humidity control (using Aquasorb humidity beads)
  • Data log (one data set per minute, each set comprises: time, date, O2 (set/actual), CO2 (set/actual) humidity, temperature.
  • Alarm settings
 – Light control (on/off, dimming function)*
  • Simple O2 calibration sensor, just one touch needed.
  • Removable Pop-Off™ front cover with one touch of a button for easy set-up and cleaning
  • Intelligent Interlock – 41L capacity (automatically sets O2 level to the same level as the main chamber)
  • Fast interlock purge cycle
  • Single Plate Entry System (SPES™) for instant insertion or removal of plates
  • Internal power sockets
  • One narrow and one wide culture rack
  • Option of Internal HEPA Filtration
  • Option of Remote monitoring/remote control hardware module

Additional Resources

Applications of the Baker Ruskinn InvivO2

Baker Ruskinn’s InvivO2 workstation boasts an advanced ergonomic design, ensuring exceptional hand access and swift single plate loading for an efficient workflow. Crucially, the InvivO2 allows researchers to cultivate cells under precise hypoxic (low-oxygen) conditions, mimicking the physiological environment found in various tissues within the body. This controlled environment makes the InvivO2 ideal for diverse applications in fields like:
  • Stem Cell Cultivation: Hypoxia plays a vital role in stem cell function and differentiation. The InvivO2 facilitates research into stem cell therapies by providing the optimal oxygen levels for their growth and manipulation.
  • Tissue Engineering: Recreating functional tissues often requires mimicking the low-oxygen environment present in certain organs. The InvivO2 allows researchers to engineer tissues that more accurately reflect their in vivo counterparts.
  • Cell Culture: Many cell types are sensitive to high oxygen levels, leading to stress and altered function. The InvivO2 enables researchers to study these cells under more physiologically relevant hypoxic conditions, yielding more accurate results.
  • Cell Biology: Understanding how cells respond and adapt to varying oxygen levels is crucial in cell biology research. The InvivO2 provides a platform to investigate these cellular processes under controlled hypoxic conditions.
  • Biotechnology: Hypoxia is a key factor in various biological processes exploited in biotechnology applications. The InvivO2 empowers researchers to develop and optimise these processes by precisely regulating oxygen levels.

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