Richmond, CA, United States of America

Brian R Scott


Average Co-Inventor Count = 4.5

ph-index = 4

Forward Citations = 70(Granted Patents)


Location History:

  • Ontario, CA (2011 - 2016)
  • Richmond, CA (2012 - 2019)

Company Filing History:


Years Active: 2011-2019

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9 patents (USPTO):Explore Patents

Title: Brian R Scott: Pioneering Innovations in Enzyme Technology

Introduction:

Brian R Scott, a prolific inventor based in Richmond, CA, has made significant contributions to the field of enzyme technology. With a remarkable portfolio of 9 patents, Scott's work focuses on developing modified enzymes for improved cellulose-hydrolyzing activity and reduced lignin binding.

Latest Patents:

Scott's latest patents showcase his innovative approach to enzyme modification. In "Cellulase enzymes having a modified linker and reduced lignin binding," he introduces modified cellulase enzymes with enhanced cellulose-hydrolyzing activity in the presence of lignin. Additionally, his patent on "Carbohydrate binding modules with reduced binding to lignin" demonstrates modified Family 1 carbohydrate binding modules with decreased lignin binding and increased hydrolyzing activity.

Career Highlights:

Having worked at Iogen Energy Corporation and Codexis, Inc., Scott has honed his expertise in enzyme engineering and biotechnology. His tenure at these esteemed companies has provided him with valuable insights into developing cutting-edge enzyme technologies for industrial applications.

Collaborations:

Throughout his career, Scott has collaborated with industry experts such as John J Tomashek and Chengsong Liu. Together, they have pursued innovative research initiatives aimed at revolutionizing enzyme technology and advancing sustainable bio-based solutions.

Conclusion:

In conclusion, Brian R Scott stands out as a trailblazer in the field of enzyme technology. His dedication to developing novel enzyme modifications that optimize cellulose-hydrolyzing activity and reduce lignin binding underscores his commitment to driving innovation in the biotechnology industry. Scott's groundbreaking work continues to inspire advancements in sustainable bioprocessing and holds immense promise for the future of enzyme engineering.

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