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Syensqo and Emulseo announce strategic partnership for advanced applications in the healthcare sector

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Exploring new opportunities within the fast-growing  market of microfluidics

Syensqo, a leading specialty chemicals company, is pleased to announce a strategic partnership with Emulseo, a French company specialized in formulations for microfluidic technology - the manipulation of liquids at microscopic scale. Under this agreement, Emulseo will include Syensqo’s advanced solution, Galden® PFPE  in its Fluo-Oil range of products to provide its customers with an essential component in creating reliable and performant droplet-based microfluidic analyses. 

Droplet-based microfluidics analysis is a widely used technique for the study and manipulation of liquids at a micro-scale using liquid micro-droplets. It has diverse applications, particularly in healthcare as it is one of the most precise and efficient ways to study DNA strands, cells, chemicals, or drugs using very small amounts of material. For example, it is used for the diagnosis of cancer diseases from blood samples, for the development of antibiotics and therapeutics treatments, and for conducting rapid COVID-19 testing through digital PCR.

The partnership with Emulseo will leverage Syensqo's Galden® PFPE, a family of inert, high-performance, fluorinated fluids with outstanding properties enabling optimal performances of microfluidic systems thanks mainly to their chemical inertness, low viscosity and optical transparency. 

We are thrilled to partner with Emulseo and bring our Galden® PFPE to the forefront of microfluidics technology. This collaboration underscores our commitment to innovation and expanding the applications of our materials to advance humanity, as our PFPE, usually used in the electronics industry, will now contribute to save lives through cancer detection and faster vaccine developments for example.

Peter Browning, President of the Specialty Polymers Global business unit at Syensqo

As a young innovative company, Emulseo is extremely proud to partner with a European industry leader such as Syensqo with a clear ambition to support innovation and to contribute to the development of cutting edge technologies in the health sector. Syensqo’s high performance chemicals combined with our expertise and tailor-made quality controls for microfluidic requirements, will enhance our product offerings to meet our commitments to our scientific and industrial customers worldwide.

Florine Maes, CEO of Emulseo

Syensqo is a science company developing groundbreaking solutions that enhance the way we live, work, travel and play. Inspired by the scientific councils which Ernest Solvay initiated in 1911, we bring great minds together to push the limits of science and innovation for the benefit of our customers, with a diverse, global team of more than 13,000 associates in 30 countries.

Our solutions contribute to safer, cleaner, and more sustainable products found in homes, food and consumer goods, planes, cars, batteries, smart devices and healthcare applications. Our innovation power enables us to deliver on the ambition of a circular economy and explore breakthrough technologies that advance humanity.

Learn more at www.syensqo.com.
 

Emulseo provides innovative and high-performance formulations for microfluidic technology applications worldwide. With a diversified range of high-quality products and cutting-edge expertise, Emulseo is today a reference for users of this technology.

Based in Bordeaux, France, Emulseo's dedicated team supports scientists and industrials on major microfluidic applications. Quality, innovation and customer satisfaction are at the heart of Emulseo's commitments in order to contribute to the development of this key technology, particularly for the healthcare sector.

Learn more at www.emulseo.com

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High performance dielectric heat transfer fluids

Galden® PFPE

A family of inert, high-performance, fluorinated fluids with outstanding properties enabling optimal performances of microfluidic systems thanks mainly to their chemical inertness, low viscosity and optical transparency.