Le Rove, France

Claudine Trezzy


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Claudine Trezzy: Innovator in Thermostable Superoxide-Dismutases

Introduction

Claudine Trezzy is a notable inventor based in Le Rove, France. She has made significant contributions to the field of biotechnology, particularly in the production and extraction of thermostable superoxide-dismutases from photosynthetic microorganisms. Her innovative work has the potential to impact various applications in health and environmental science.

Latest Patents

Claudine Trezzy holds a patent for a process that involves the production and extraction of thermostable superoxide-dismutases. This process includes culturing thermophilic microorganisms in a temperature range of 40 to 80 degrees Celsius within a closed photoreactor. The microorganisms, which include microalgae and cyanobacteria, are suspended in a culture medium. The extraction of the thermostable superoxide-dismutases is achieved through cellular crushing, ultrafiltration, and selective precipitation.

Career Highlights

Claudine Trezzy is associated with Heliosynthese S.A., where she continues to advance her research and development efforts. Her work focuses on harnessing the capabilities of photosynthetic microorganisms to produce valuable enzymes that can withstand high temperatures. This innovative approach not only enhances enzyme production but also contributes to sustainable practices in biotechnology.

Collaborations

Claudine collaborates with Claude Gudin, who is also involved in the research and development at Heliosynthese S.A. Their partnership exemplifies the importance of teamwork in driving innovation and achieving scientific breakthroughs.

Conclusion

Claudine Trezzy's contributions to the field of biotechnology through her patented processes highlight her role as an innovator. Her work in the production of thermostable superoxide-dismutases showcases the potential of utilizing photosynthetic microorganisms for sustainable solutions.

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