Herbeys, France

Sylvie Sauvaigo

USPTO Granted Patents = 8 

 

Average Co-Inventor Count = 2.8

ph-index = 3

Forward Citations = 21(Granted Patents)


Location History:

  • Grenoble, FR (1996 - 2014)
  • Herbeys, FR (2001 - 2017)

Company Filing History:


Years Active: 1996-2017

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8 patents (USPTO):Explore Patents

Title: Sylvie Sauvaigo: Innovator in DNA Repair Technologies

Introduction

Sylvie Sauvaigo is a prominent inventor based in Herbeys, France, known for her significant contributions to the field of DNA repair technologies. With a total of eight patents to her name, she has made remarkable advancements in understanding and assessing DNA repair mechanisms.

Latest Patents

Among her latest patents is a method for the quantitative assessment of global and specific DNA repair capacities of at least one biological medium. This innovative approach allows for the quantitative assessment of base excision repair (BER) and nucleotide excision repair (NER) DNA capacities using supercoiled plasmid DNA. By characterizing lesions on the plasmids relative to a control, this method enhances the understanding of DNA repair processes. Another notable patent is a method for fixing supercoiled DNA, which involves depositing a supercoiled DNA sample on the surface of a porous polymer film. This method fixes the supercoiled DNA through passive diffusion, creating a support that can be used for analyzing DNA distribution.

Career Highlights

Throughout her career, Sylvie has worked with esteemed organizations such as the Commissariat à l'Énergie Atomique and the Centre National de la Recherche Scientifique. Her work in these institutions has been pivotal in advancing research in DNA repair technologies.

Collaborations

Sylvie has collaborated with notable colleagues, including Florence Marciacq and Jean-François Mouret, contributing to various research projects and innovations in her field.

Conclusion

Sylvie Sauvaigo's work in DNA repair technologies exemplifies her dedication to scientific innovation. Her patents and collaborations reflect her commitment to advancing our understanding of genetic repair mechanisms.

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