Osaka, Japan

Norihiro Miyazawa

USPTO Granted Patents = 3 


 

Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2013-2015

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3 patents (USPTO):Explore Patents

Title: Norihiro Miyazawa: Innovator in Enzyme Research

Introduction: Norihiro Miyazawa is a prominent inventor based in Osaka, Japan. With a focus on enzymatic processes, he has contributed significantly to the field of biochemistry. Over his career, he has secured three patents that highlight his innovative approach to enzyme synthesis and production.

Latest Patents: One of Miyazawa’s notable inventions is centered around enzymes associated with equol synthesis. The objective of this invention is to provide enzymes linked to equol synthesis and the genes coding for these enzymes. He has developed processes for producing equol and its intermediates using these enzymes. Specifically, this invention encompasses a dihydrodaidzein synthesizing enzyme, a tetrahydrodaidzein synthesizing enzyme, and an equol synthesizing enzyme, along with the respective genes coding for these enzymes. This advancement paves the way for efficient synthesis of dihydrodaidzein, tetrahydrodaidzein, and/or equol.

Career Highlights: Norihiro Miyazawa is an integral member of Otsuka Pharmaceutical Company, Limited, where he has utilized his expertise in enzymatic research. His contributions have supported the company’s commitment to innovative solutions in the pharmaceutical industry.

Collaborations: Throughout his career, Miyazawa has collaborated with esteemed colleagues, including Yoshikazu Shimada and Setsuko Yasuda. These collaborations have fostered a dynamic environment for research and development, resulting in groundbreaking advancements in enzyme technology.

Conclusion: Norihiro Miyazawa's inventive work in enzyme synthesis has made a significant impact not only in his company but also in the broader field of biochemistry. His patents contribute to advancements that may enhance the production processes of valuable compounds, showcasing the potential for innovation in enzyme research.

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