Cambridge, United Kingdom

Ahuva Nissim


Average Co-Inventor Count = 6.2

ph-index = 3

Forward Citations = 242(Granted Patents)


Company Filing History:


Years Active: 1999-2002

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3 patents (USPTO):Explore Patents

Title: Ahuva Nissim: Innovator in Biochemical Engineering

Introduction

Ahuva Nissim is a prominent inventor based in Cambridge, GB. She has made significant contributions to the field of biochemical engineering, particularly in the development of methods for producing specific binding pairs. With a total of 3 patents to her name, her work has had a substantial impact on the scientific community.

Latest Patents

Ahuva Nissim's latest patents include innovative methods for producing members of specific binding pairs. These methods involve the use of recombinant host cells and kits for the production of antibodies and other binding proteins. One of her notable patents describes a process where recombination occurs between vectors that encode polypeptide chains, resulting in a library of diverse binding proteins. This process can take place either in vitro or intracellularly and may utilize site-specific recombination techniques. Another patent focuses on DNA constructs that facilitate the production of peptides or polypeptides, incorporating self-splicing introns and site-specific recombination sequences.

Career Highlights

Throughout her career, Ahuva Nissim has worked with esteemed organizations such as the Medical Research Council and Cambridge Antibody Technology Limited. Her work in these institutions has allowed her to advance her research and contribute to significant scientific breakthroughs.

Collaborations

Ahuva has collaborated with notable scientists, including Andrew David Griffiths and Gregory Paul Winter. These collaborations have further enriched her research and expanded the impact of her inventions.

Conclusion

Ahuva Nissim's innovative work in biochemical engineering and her contributions to the field through her patents highlight her as a leading figure in the scientific community. Her dedication to advancing technology in the production of specific binding pairs continues to inspire future research and development.

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