Cold Spring Harbor, NY, United States of America

Masumi Hidaka


Average Co-Inventor Count = 11.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 1996-1997

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2 patents (USPTO):Explore Patents

Title: The Innovations of Masumi Hidaka

Introduction

Masumi Hidaka is a notable inventor based in Cold Spring Harbor, NY (US). She has made significant contributions to the field of molecular biology, particularly in the study of the origin of replication complex genes. With a total of 2 patents, her work has implications for understanding cell growth and developing pharmacological agents.

Latest Patents

Hidaka's latest patents focus on the Origin of Replication Complex (ORC) genes. These patents include nucleic acids that encode ORC proteins and hybridization reagents, probes, and primers capable of hybridizing with ORC genes. The methods outlined in her patents involve screening chemical libraries for lead compounds that can be useful in diagnosing or treating diseases associated with undesirable cell growth. An exemplary screening process involves forming a mixture that includes a recombinant ORC protein, a natural intracellular ORC protein binding target, and a candidate pharmacological agent. The mixture is incubated under specific conditions to detect the binding of the ORC protein to the binding target.

Career Highlights

Masumi Hidaka has worked at prestigious institutions such as Cold Spring Harbor Laboratory and the University of California. Her research has contributed to advancements in understanding the molecular mechanisms of cell growth and replication.

Collaborations

Throughout her career, Hidaka has collaborated with esteemed colleagues, including Bruce W. Stillman and Stephen P. Bell. These collaborations have furthered her research and expanded the impact of her innovations.

Conclusion

Masumi Hidaka's contributions to the field of molecular biology through her patents and research have paved the way for advancements in the diagnosis and treatment of diseases related to cell growth. Her work continues to influence the scientific community and holds promise for future innovations.

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