Berkeley, CA, United States of America

Kateri Hayashi DuBay



Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2010-2012

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2 patents (USPTO):Explore Patents

Title: Kateri Hayashi DuBay: Innovator in Polypeptide Aggregation Assessment

Introduction

Kateri Hayashi DuBay is a prominent inventor based in Berkeley, CA. She has made significant contributions to the field of biochemistry, particularly in the assessment of polypeptide aggregation. With a total of 2 patents, her work has implications for understanding protein behavior and stability.

Latest Patents

Kateri's latest patents focus on a method and apparatus for assessing polypeptide aggregation. This innovative method involves determining aggregation rate data that predicts the aggregation rate of a polypeptide defined by an amino acid sequence. The process includes determining a hydrophobicity value, a charge value, and at least one shape propensity value for the sequence. Additionally, it identifies aggregation-influencing patterns within the sequence and determines a pattern value responsive to this identification. Ultimately, the aggregation rate data is calculated through a weighted combination of these values along with extrinsic factors.

Career Highlights

Throughout her career, Kateri has worked with notable organizations such as Cambridge University Technical Services Limited and Cambridge Enterprise Limited. Her experience in these institutions has allowed her to refine her expertise in biochemistry and patent innovation.

Collaborations

Kateri has collaborated with esteemed colleagues, including Christopher Martin Dobson and Fabrizio Chiti. These partnerships have further enriched her research and development efforts in the field.

Conclusion

Kateri Hayashi DuBay is a trailblazer in the assessment of polypeptide aggregation, with her innovative methods paving the way for advancements in biochemistry. Her contributions are vital for understanding protein dynamics and stability.

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