Cambridge, United Kingdom

Ulrich Keyser

USPTO Granted Patents = 4 

 

Average Co-Inventor Count = 2.9

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2019-2025

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4 patents (USPTO):Explore Patents

Title: Ulrich F. Keyser: Innovator in Cell Membrane Modulation

Introduction

Ulrich F. Keyser, a prominent inventor based in Cambridge, GB, has made significant contributions to the field of cell membrane modulation. His innovative approaches leverage advanced compositions and methods that facilitate the transfer of molecules within cellular membranes, demonstrating a keen understanding of biochemistry and nanotechnology.

Latest Patents

Keyser holds a patent for "Nucleic acid and other compositions and methods for the modulation of cell membranes." This invention provides intriguing solutions for transferring phospholipids and other important molecules between the leaflets of a cell membrane. The core of his invention is a composition that forms a nanostructure capable of creating a toroidal pore in a lipid membrane. These compositions include a nucleic acid or a compound with a hydrophilic region that allows for the integration of the nanostructure into the lipid membrane. Furthermore, Keyser's invention introduces methods for scrambling lipids, which can dramatically alter cell functionality or trigger cell death. Notably, the synthetic scramblases developed by Keyser outperform previously known enzymatically active DNA nanostructures and naturally occurring scramblases by significant margins.

Career Highlights

Throughout his career, Ulrich F. Keyser has collaborated with esteemed institutions, including the University of Illinois and Cambridge Enterprise Limited. His work has not only contributed to academic research but has also led to practical applications in biotechnology, emphasizing the importance of innovation in life sciences.

Collaborations

Keyser has worked alongside Aleksei Aksimentiev, a fellow researcher whose expertise has complemented Keyser's innovative endeavors. Their collaboration has likely fostered advancements in understanding the complexities of cellular behavior and membrane dynamics.

Conclusion

Ulrich F. Keyser's contributions to the field of cell membrane modulation exemplify the critical role of innovation in advancing scientific knowledge and technology. With his patent and collaborations, Keyser continues to pave the way for exciting developments in cellular biotechnology and nanomedicine. His work not only reflects a deep understanding of biological systems but also opens new avenues for research and application in cellular manipulation and therapy.

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