Montpellier, France

Laurent Leclercq



 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Innovations of Laurent Leclercq in Controlled Release Systems

Introduction

Laurent Leclercq is a notable inventor based in Montpellier, France, known for his significant contributions to the field of controlled release systems. With a focus on creating advanced methods for the delivery of active principles, his work is renowned in both academic and industry circles.

Latest Patents

Leclercq holds a patent for a "System for controlled release of an active principle and method for preparation," which represents a breakthrough in the domain of drug delivery. This innovative system utilizes a degradable polymer matrix that produces acid compounds, paired with acid-sensitive complexes of the active principle. These complexes feature electrostatic charges and a complexing polyelectrolyte partner that interacts oppositely. This advanced method demonstrates a prolonged release of the active principle over 18 days, specifically noted in the ternary system PMLA/7P/PLAGA, when compared to binary systems.

Career Highlights

Throughout his career, Laurent Leclercq has been associated with prestigious institutions, including the Centre National de la Recherche Scientifique (CNRS) and the Université de Montpellier 1. His involvement with these organizations has established him as a respected figure in the research community.

Collaborations

Leclercq has collaborated with several prominent researchers, including Michel R. Vert and Mahfoud Boustta. These partnerships reflect his commitment to advancing the field of polymer science and drug delivery systems.

Conclusion

Laurent Leclercq's work in the development of controlled release systems demonstrates the intersection of innovative thinking and practical application in the medical field. His patent not only showcases his ingenuity but also contributes to the advancement of pharmaceutical science, ultimately aiming to improve therapeutic outcomes.

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