Rueil-Malmaison, France

Farida Gueniche



Average Co-Inventor Count = 11.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2013-2018

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3 patents (USPTO):Explore Patents

Title: Farida Gueniche: Innovator in Tissue Regeneration

Introduction

Farida Gueniche is a prominent inventor based in Rueil-Malmaison, France. She has made significant contributions to the field of tissue regeneration through her innovative research and patents. With a total of three patents to her name, Gueniche is recognized for her work involving marine-derived polysaccharides.

Latest Patents

One of her latest patents focuses on sulfated depolymerized derivatives of exopolysaccharides (EPS) from mesophilic marine bacteria. This invention details a method for preparing low-molecular weight sulfated polysaccharide derivatives, which can be utilized in tissue regeneration. The process involves free radical depolymerization of native EPSs followed by sulfation of the resulting derivatives. These derivatives have shown potential as wound-healing agents, particularly in the treatment of connective tissue diseases affecting skin and gum tissues. The research demonstrates that the polysaccharide derivative GY 785 DRS can stimulate fibroblast proliferation in reconstructed connective tissues at a concentration of 10 µg/mL.

Career Highlights

Throughout her career, Farida Gueniche has worked with esteemed organizations such as the Institut Français de Recherche pour l'Exploitation de la Mer (IFREMER) and Université René Descartes Paris 5. Her work in these institutions has allowed her to advance her research and contribute to the scientific community.

Collaborations

Some of her notable coworkers include Karim Senni and Myriam Yousfi, who have collaborated with her on various projects related to her research.

Conclusion

Farida Gueniche's innovative work in the field of tissue regeneration highlights the importance of marine-derived compounds in medical applications. Her contributions continue to pave the way for advancements in wound healing and connective tissue treatment.

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