Mumbai, India

Rishikesh Narayan

USPTO Granted Patents = 4 


Average Co-Inventor Count = 9.4

ph-index = 1


Company Filing History:


Years Active: 2020-2025

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4 patents (USPTO):

Title: Rishikesh Narayan: Innovator in Farnesoid X Receptor Modulation

Introduction

Rishikesh Narayan is a prominent inventor based in Mumbai, India. He has made significant contributions to the field of pharmaceutical sciences, particularly in the development of compounds that modulate the farnesoid X receptor (FXR). With a total of 4 patents to his name, Narayan's work is paving the way for innovative treatments for various diseases.

Latest Patents

Narayan's latest patents include groundbreaking compounds that serve as farnesoid X receptor modulators. One of his notable inventions is a series of substituted amide compounds, which are disclosed as useful in modulating FXR activity. These compounds can be utilized in treating conditions associated with FXR dysregulation, such as pathological fibrosis, transplant rejection, cancer, osteoporosis, and inflammatory disorders. Another significant patent involves substituted bicyclic compounds that also act as FXR modulators, demonstrating their potential as agonists in therapeutic applications.

Career Highlights

Rishikesh Narayan is currently employed at Bristol-Myers Squibb Company, where he continues to innovate in the pharmaceutical sector. His work focuses on developing new therapeutic agents that can effectively target and modulate the FXR, contributing to advancements in medical treatments.

Collaborations

Throughout his career, Narayan has collaborated with talented professionals, including Susheel Jethanand Nara and Srinivas Cheruku. These collaborations have enhanced the research and development of his innovative compounds.

Conclusion

Rishikesh Narayan's contributions to the field of pharmaceutical sciences, particularly in the modulation of the farnesoid X receptor, highlight his role as a leading inventor. His patents represent significant advancements in the treatment of various diseases, showcasing the impact of his work on future medical therapies.

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