Oxford, United Kingdom

Ruth Moysey

USPTO Granted Patents = 15 

 

 

Average Co-Inventor Count = 4.0

ph-index = 8

Forward Citations = 168(Granted Patents)


Company Filing History:


Years Active: 2015-2025

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15 patents (USPTO):Explore Patents

Title: Ruth Moysey: Innovator in Polynucleotide Characterization

Introduction

Ruth Moysey is a prominent inventor based in Oxford, GB. She has made significant contributions to the field of molecular biology, particularly in the characterization of polynucleotides. With a total of 15 patents to her name, her work has advanced the understanding and manipulation of genetic materials.

Latest Patents

Among her latest innovations is the SSB method, which relates to a technique for characterizing a target polynucleotide using a single-stranded binding protein (SSB). This SSB can either be one that comprises a carboxy-terminal (C-terminal) region without a net negative charge or a modified SSB that includes alterations in its C-terminal region to reduce the net negative charge. Another notable patent involves modified helicases, which introduces a new method for characterizing target polynucleotides. This method utilizes a pore and a Dda helicase to control the movement of the target polynucleotide through the pore, enhancing the sequencing capabilities of polynucleotides.

Career Highlights

Ruth Moysey is currently associated with Oxford Nanopore Technologies Limited, a company known for its innovative approaches to DNA sequencing technology. Her work at this organization has positioned her as a key player in the advancement of genetic research and applications.

Collaborations

Ruth has collaborated with notable colleagues, including Andrew John Heron and Szabolcs Soeroes, contributing to a dynamic research environment that fosters innovation and discovery.

Conclusion

Ruth Moysey's contributions to the field of molecular biology through her patents and work at Oxford Nanopore Technologies Limited highlight her role as a leading inventor. Her innovative methods for characterizing polynucleotides are paving the way for future advancements in genetic research and applications.

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