Martinsried, Germany

Nasser Yehia

USPTO Granted Patents = 4 

 

Average Co-Inventor Count = 5.2

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2016-2025

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4 patents (USPTO):Explore Patents

Title: Nasser Yehia: Innovator in Kinase Modulation

Introduction

Nasser Yehia is a prominent inventor based in Martinsried, Germany. He has made significant contributions to the field of medicinal chemistry, particularly in the development of kinase modulators. With a total of four patents to his name, his work focuses on innovative compounds that have the potential to treat various diseases.

Latest Patents

Yehia's latest patents include the development of 1,4-dihydrobenzo[d]pyrazolo[3,4-f][1,3]diazepine derivatives and related compounds. These compounds serve as modulators for kinases such as LRRK2, NUAK1, and TYK2, which are crucial in the treatment of autoimmune diseases. The invention details compounds capable of modulating these kinases, offering therapeutic potential for a wide range of conditions, including inflammatory diseases, neurological disorders, and cancer. An exemplary compound from his research is 5-(2,6-difluorophenyl)-8-methoxy-1,4-dihydrobenzo[d]pyrazolo[3,4-f][1,3]diazepine.

Career Highlights

Yehia is currently associated with Origenis GmbH, where he continues to push the boundaries of drug discovery and development. His work has been instrumental in synthesizing and characterizing novel compounds, contributing valuable pharmacological data to the scientific community.

Collaborations

Throughout his career, Nasser Yehia has collaborated with notable colleagues, including Michael Almstetter and Michael Thormann. These partnerships have enhanced the research and development efforts at Origenis GmbH, fostering innovation in the field.

Conclusion

Nasser Yehia stands out as a key figure in the realm of kinase modulation, with a focus on developing compounds that address critical health challenges. His contributions to medicinal chemistry are paving the way for new therapeutic options in treating complex diseases.

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