This inventor holds 1 USPTO granted patent. Top assignee: The University of North Carolina at Chapel Hill. Active years: 2008.
Company Filing History:
Years Active: 2008
Title: Innovations of Elizabeth Merricks in Calcium Channel Research
Introduction
Elizabeth Merricks is a prominent inventor based in Chapel Hill, NC (US). She has made significant contributions to the field of biomedical research, particularly in the area of platelet calcium channels. Her work has implications for therapeutic and diagnostic methods, showcasing her innovative spirit and dedication to advancing medical science.
Latest Patents
Elizabeth Merricks holds a patent for "Purified and isolated platelet calcium channel nucleic acids and polypeptides and therapeutic and screening methods using same." This patent includes isolated and purified platelet voltage-dependent calcium channel (VDCC) α-subunit polypeptides and nucleic acid molecules encoding the same. Additionally, it discloses recombinant host cells, recombinant nucleic acids, and recombinant proteins, along with methods of producing each. The patent also covers isolated and purified antibodies to platelet VDCC α-subunit polypeptides and methods of producing them. The biological activity of platelet VDCC α-subunit polypeptides in calcium transport is highlighted, along with therapeutic and diagnostic methods involving this activity.
Career Highlights
Elizabeth Merricks is affiliated with the University of North Carolina at Chapel Hill, where she continues her research and innovation. Her work has garnered attention for its potential applications in medical treatments and diagnostics, making her a valuable asset to the academic and scientific community.
Collaborations
Some of her notable coworkers include Timothy C. Nichols and Nadia Malouf. Their collaborative efforts contribute to the advancement of research in the field of calcium channels and their therapeutic applications.
Conclusion
Elizabeth Merricks exemplifies the spirit of innovation in the realm of biomedical research. Her contributions, particularly in the area of platelet calcium channels, have the potential to impact therapeutic and diagnostic methods significantly. Her work continues to inspire future advancements in medical science.
