Chicago, IL, United States of America

Ashty Stephen Karim

USPTO Granted Patents = 2 

Average Co-Inventor Count = 2.7

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2020-2024

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2 patents (USPTO):Explore Patents

Title: Ashty Stephen Karim: Innovator in Cell-Free Protein Synthesis

Introduction

Ashty Stephen Karim is a prominent inventor based in Chicago, IL. He has made significant contributions to the field of metabolic engineering, particularly through his work on cell-free protein synthesis. With a total of 2 patents, Karim is recognized for his innovative approaches to optimizing chemical production processes.

Latest Patents

Karim's latest patents include groundbreaking systems and methods for cell-free metabolic engineering. One of his patents focuses on "Cell-free protein synthesis driven metabolic engineering," which discloses systems and kits designed to prepare chemical and natural products. These systems allow for the optimization of conditions necessary for producing these products. Another notable patent is for "Cell-free protein synthesis driven metabolic engineering for the production of 1-butanol," which similarly outlines methods and kits for enhancing chemical production through cell-free systems.

Career Highlights

Karim is affiliated with Northwestern University, where he continues to advance research in metabolic engineering. His work has implications for various industries, including pharmaceuticals and biofuels, showcasing the versatility of cell-free systems in producing valuable chemical products.

Collaborations

Karim collaborates with esteemed colleagues such as Michael Christopher Jewett and Jian Li. These partnerships enhance the research and development of innovative solutions in metabolic engineering.

Conclusion

Ashty Stephen Karim stands out as a key figure in the field of metabolic engineering, with his patents paving the way for advancements in cell-free protein synthesis. His contributions are vital for the future of chemical production and optimization.

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