Arlington, VA, United States of America

David Rasko




Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Inventor David Rasko**

Introduction

David Rasko is a renowned inventor based in Arlington, VA, whose work has made significant contributions to the field of biochemistry. With a single but impactful patent to his name, Rasko's innovations focus on the synthesis of essential biomolecules that have far-reaching applications in biotechnology and medicine.

Latest Patents

David Rasko holds a patent for the "Synthesis of oligosaccharides, glycolipids, and glycoproteins using bacterial glycosyltransferases." This invention presents nucleic acid and amino acid sequences of fucosyltransferases, providing innovative methods for synthesizing oligosaccharides, glycoproteins, and glycolipids. His work in this area not only enhances our understanding of these complex molecules but also paves the way for new therapeutic approaches.

Career Highlights

Throughout his career, David Rasko has been associated with prominent organizations like Neose Technologies, Inc. and the University of Alberta. His roles in these institutions have allowed him to collaborate with other leading experts in the field and expand his research into practical applications.

Collaborations

Rasko has worked alongside notable colleagues, including Karl Frank Johnson and Daniel James Bezila. These collaborations have enriched his research experience and contributed to the advancement of knowledge in the areas of glycosylation and biochemical synthesis.

Conclusion

David Rasko's inventive spirit and dedication to research have established him as a significant figure in biomedical innovation. With his pioneering patent and collaborative spirit, he continues to inspire future advancements in the synthesis of vital biological molecules. His contributions not only benefit academic research but also hold the potential to influence various applications in the pharmaceutical industry.

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