Heat & cool down your cells during live-cell imaging

We developed the world’s fastest heater-cooler for microscopy. Originally designed for ultra-fast qPCR military applications, we improved this temperature control plateform to perfectly fit live-cell imaging experimentations.

CherryTemp enables ultra-fast temperature shifts in the 5-45°C range.
You can now control in real-time your favorite molecular processes, observe dynamic events linked to temperature on live and discover unthought mechanisms.

CherryTemp features

DYNAMIC & FAST
10 seconds temperature shifts

STABLE & PRECISE
Long-term stability

INVERTED & UPRIGHT SCOPES
Custom elements for a perfect integration

Get all in one pack and start imaging immediately!

GET A QUOTE OR TECHNICAL INFORMATION

Heat and cool down your samples in the 5 to 45°C range

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Methods & Scientific notes

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Testimonial

“The Cherry Temp is perfect for use in imaging core facilities.  Its design allows its installation on a wide panel of upright and inverted microscopes and easy training of users thus, promoting development of innovating research project. The customer service is always helpful and responsive”  visit Stephanie Dutertre core facility MRic

Stéphanie Dutertre - Instrument core facility manager

Biosit laboratory, CNRS 3480 - INSERM 018, MRic

“The Cherry system is now in full use in my lab and it is working beautifully on its own. The Cherry system is great for stably maintaining temperature on our microscopes”Visit the Canman Lab 

Dr. Julie Canman

CANMAN LAB, Columbia University Medical Center

Our videos

Publications

Inhibition of microtubule assembly using fast temperature changes

(Development, 2017) Summary | In most species, oocytes lack centrosomes. Accurate meiotic spindle assembly and chromosome segregation – essential to prevent...
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Inhibition of microtubule assembly using fast temperature changes

Medium renewal and temperature control for live-cell imaging

(Open Biology, 2016) Summary | Monitoring cellular responses to changes in growth conditions and perturbation of targeted pathways is integral to...
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Medium renewal and temperature control for live-cell imaging

Real-time qPCR using CherryTemp on-a-chip

(Lab on Chip, 2016) Summary | To control future infectious disease outbreaks, like the 2014 Ebola epidemic, it is necessary to...
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Real-time qPCR using CherryTemp on-a-chip

Temperature control of thermosensitive protein regulation

(Developmental cell, 2009) Summary | The spindle midzone—composed of antiparallel microtubules, microtubule-associated proteins (MAPs), and motors—is the structure responsible for microtubule...
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Temperature control of thermosensitive protein regulation

Fast microfluidic temperature control during high resolution live cell imaging

(Lab on Chip, 2011) Summary | One major advantage of using genetically tractable model organisms such as the fission yeastSchizosaccharomyces pombe is...
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Fast microfluidic temperature control during high resolution live cell imaging

Imaging of mitochondria positioning using fast temperature regulation

(Current Biology, 2011) Summary | Mitochondria form a dynamic tubular network within the cell. Proper mitochondria movement and distribution are critical...
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Imaging of mitochondria positioning using fast temperature regulation

Fast temperature controller for live-cell imaging cytoskeleton studies

(Methods in Cell biology, 2010) Summary | Recent development in soft lithography and microfluidics enables biologists to create tools to control...
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Fast temperature controller for live-cell imaging cytoskeleton studies
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GET A QUOTE OR TECHNICAL INFORMATION

Heat and cool down your samples in the 5 to 45°C range

Your Email (required)

Your Message

captcha

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