Oxford, United Kingdom

Elizabeth Jayne Wallace

USPTO Granted Patents = 37 

 

 

Average Co-Inventor Count = 4.7

ph-index = 14

Forward Citations = 516(Granted Patents)


Company Filing History:


Years Active: 2017-2025

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37 patents (USPTO):Explore Patents

Title: Elizabeth Jayne Wallace: Innovator in Nanotechnology and Protein Engineering

Introduction

Elizabeth Jayne Wallace, based in Oxford, UK, is a prolific inventor known for her contribution to the field of nanotechnology and protein engineering. With an impressive portfolio consisting of 33 patents, she has significantly advanced the understanding and practical applications of protein pores in analyte detection.

Latest Patents

Among her latest inventions, Wallace has developed "Mutant Pores," which revolves around mutant forms of CsgG. This innovation focuses on analyte detection and characterization utilizing CsgG technology. Additionally, her patent for "Protein Pores" presents novel protein pores that have vital applications in molecular sensing and nucleic acid sequencing. This particular invention features an isolated pore complex, formed by a CsgG-like pore coupled with a modified CsgF peptide, which incorporates an enhanced channel constriction or reader head in the nanopore design.

Career Highlights

Wallace has made her mark by working with leading companies, including Oxford Nanopore Technologies Limited, a firm well-recognized for its groundbreaking technologies in DNA sequencing. Her experience at Vib Vzw has further enriched her expertise and allowed her to foster innovation in protein engineering.

Collaborations

Throughout her career, Elizabeth has collaborated with notable professionals, including Lakmal Nishantha Jayasinghe and Andrew John Heron. Together, they have contributed to advancements in technology that leverage the functionality of protein pores and molecular sensing techniques.

Conclusion

Elizabeth Jayne Wallace exemplifies the spirit of innovation in scientific research and technological development. Her myriad patents underscore her commitment to enhancing analyte detection methods and protein engineering capabilities. As she continues to push boundaries, her work is likely to inspire future breakthroughs in the field.

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