Chevy Chase, MD, United States of America

Peter Lee

USPTO Granted Patents = 6 

 

Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 19(Granted Patents)


Location History:

  • Reston, VA (US) (2013)
  • Chevy Chase, MD (US) (2021)

Company Filing History:


Years Active: 2013-2025

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6 patents (USPTO):Explore Patents

Title: **The Innovations of Peter Lee: A Trailblazer in Ion Channel Modulation**

Introduction

Peter Lee, an accomplished inventor based in Chevy Chase, MD, has made significant contributions in the field of biomedical research. With a total of six patents to his name, he is known for his pioneering work in modifying ligand-gated ion channels. His groundbreaking inventions have opened new avenues for understanding and treating various channelopathies, highlighting the intricacies of cellular communication.

Latest Patents

Among Peter Lee's latest innovations are his patents pertaining to "Modified ligand-gated ion channels and methods of use." These patents focus on materials and methodologies for modulating ligand-gated ion channel (LGIC) activity. His work includes the development of modified LGICs, featuring at least one LGIC subunit that has a refined ligand binding domain (LBD) and/or ion pore domain (IPD). Furthermore, he provides exogenous LGIC ligands designed to bind and activate these modified channels. His methods extend to controlling ion transport across cell membranes, enhancing excitability in mammalian cells, and treating mammals suffering from channelopathies.

Career Highlights

Peter Lee’s career is defined by his dedication to advancing biomedical sciences. As an inventor at the Howard Hughes Medical Institute, he remains at the forefront of research aimed at unraveling the complexities of cellular ion transport systems. His contributions have not only enriched scientific literature but also have practical implications in developing therapeutic strategies for various diseases.

Collaborations

Throughout his career, Peter has collaborated with notable scientists, including Scott Sternson and Christopher Magnus. These collaborations have fostered an environment of innovation, enabling the cross-pollination of ideas that elevate the standards of research within their field. Together, they contribute to a shared mission of furthering understanding in molecular biology and ion channel function.

Conclusion

Peter Lee’s inventive spirit and commitment to research exemplify the essence of innovation in the biomedical field. His contributions to the understanding and modulation of ion channels provide a valuable foundation for future discoveries that promise to advance medical science. As he continues to pursue his work, the impact of his inventions will likely resonate across various domains of health and disease treatment.

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