Framingham, MA, United States of America

Kumkum Saxena


Average Co-Inventor Count = 4.6

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2009-2014

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4 patents (USPTO):Explore Patents

Title: Innovator Kumkum Saxena: Pioneering Advances in JAK3 Kinase Research

Introduction: Kumkum Saxena, based in Framingham, MA, is a notable inventor with a remarkable portfolio of four patents. His contributions primarily focus on the intricate structures and functionalities of human Janus Kinase 3 (JAK3) and its binding pockets, which play an essential role in various biomedical applications.

Latest Patents: Among Kumkum Saxena's most significant patents is his groundbreaking work on the "Crystal structure of human JAK3 kinase domain complex and binding pockets thereof." This invention encodes structure coordinates that are pivotal for understanding JAK3 and JAK3-like binding pockets. The innovative methods provided in this patent facilitate the determination of homologous proteins' structures and allow for the screening and design of compounds that can inhibit or interact with JAK3 protein and its homologues. Furthermore, the invention addresses crystallizable compositions that include JAK3 kinase domain and complexes with AMP-PNP.

Career Highlights: Kumkum Saxena has had an illustrious career, working with leading companies such as Vertex Pharmaceuticals, Inc. His rich experience in the field of biotechnology and pharmaceuticals has significantly contributed to advancements in understanding protein complexes and their potential therapeutic targets.

Collaborations: Throughout his career, Kumkum has worked alongside distinguished colleagues, including Lovorka Swenson and Harmon J Zuccola. These collaborations have fostered a productive environment for innovation and research in the realm of kinase structures and functions.

Conclusion: Kumkum Saxena's contributions to the field of biotechnology, particularly through his pioneering patents on JAK3 kinase, reflect his commitment to advancing scientific knowledge and potential therapeutic applications. His work continues to inspire future innovations in the study of protein interactions and drug design.

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