Seattle, WA, United States of America

Alister P W Funnell


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Alister P W Funnell: Innovating Animal Pathogen-Derived Genetic Engineering

Introduction: Alister P W Funnell is an accomplished inventor based in Seattle, WA, recognized for his significant contributions to the field of genetic engineering. His innovative work focuses on the development of polypeptides derived from animal pathogens, which have the potential to revolutionize gene regulation and genome editing.

Latest Patents: Alister holds a patent for "Animal pathogen-derived polypeptides and uses thereof for genetic engineering." This invention provides polypeptides, compositions, and methods for genetic and epigenomic engineering. The polypeptides include nucleic acid binding domains that specifically bind to target nucleic acids of interest. The binding domains are derived from repeat units found in proteins from animal pathogens, such as bacteria from the order Legionellales, enhancing the capabilities of genome editing and gene regulation.

Career Highlights: Alister P W Funnell is affiliated with the Altius Institute for Biomedical Sciences, where he engages in cutting-edge research aimed at advancing biomedical technologies. His commitment to innovation has positioned him as a key figure in genetic engineering research.

Collaborations: Throughout his career, Alister has collaborated with notable figures in the field, including Fyodor Urnov and John A Stamatoyannopoulos. These collaborations reflect his dedication to advancing scientific understanding and practical applications in genetic engineering.

Conclusion: Alister P W Funnell's innovative work and unique patent contributions mark him as a significant player in the realm of genetic engineering. His research not only enhances scientific knowledge but also holds promise for future advancements in the field, showcasing the importance of innovation in addressing modern genetic challenges.

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