Niigata, Japan

Kazuto Ikemoto

USPTO Granted Patents = 25 

 

Average Co-Inventor Count = 1.6

ph-index = 6

Forward Citations = 157(Granted Patents)


Location History:

  • Niigata-ken, JP (2002 - 2003)
  • Tokyo, JP (2006)
  • Niigata, JP (1998 - 2021)

Company Filing History:


Years Active: 1998-2021

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25 patents (USPTO):Explore Patents

Title: Kazuto Ikemoto: Innovator in the Field of Biochemical Enhancers

Introduction: Kazuto Ikemoto is a distinguished inventor based in Niigata, Japan, recognized for his substantial contributions to biochemistry and pharmaceuticals. With a remarkable portfolio of 25 patents, he has made notable advancements in the solubilization of crucial compounds, particularly pyrroloquinoline quinone.

Latest Patents: Ikemoto's latest patents include a solubilization enhancer for pyrroloquinoline quinone and methods to improve its solubility in aqueous solvents. His invention features resistant dextrin as an active ingredient that enhances the solubility of the compound. Additionally, he has developed an analysis method involving a sample preparation step that includes mixing a measurement object containing pyrroloquinoline quinone with glycine. This process allows for the quantitative analysis of the compound based on obtained chromatograms.

Career Highlights: Over the years, Kazuto Ikemoto has worked with notable organizations such as Mitsubishi Gas Chemical Company, Inc. and Saitama University. His tenure at these institutions has contributed significantly to his expertise and success in the field of innovative chemical solutions.

Collaborations: Throughout his career, Ikemoto has collaborated with esteemed professionals, including Hitoshi Sakamoto and Hajime Shimizu. These partnerships have facilitated the exchange of knowledge and ideas, further enhancing the quality of his inventions.

Conclusion: Kazuto Ikemoto's innovative work in enhancing the solubility of pyrroloquinoline quinone is a testament to his dedication and expertise in the field of biochemistry. His contributions not only advance scientific understanding but also have potential applications in pharmaceuticals, reflecting the importance of continuous innovation in addressing complex challenges.

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