This inventor holds 3 USPTO granted patents. Top assignees: Duke University, Northwestern University, Other. Active years: 2002-2011.
Company Filing History:


Years Active: 2002-2011
Title: Innovations in Angiogenesis: The Contributions of Tammy L Moser
Introduction
Tammy L Moser is a notable inventor based in Durham, NC (US), recognized for her significant contributions to the field of angiogenesis. With a total of 3 patents, her work focuses on the development of compounds and methods that can either promote or inhibit angiogenesis, which is crucial for various medical applications.
Latest Patents
Moser's latest patents include innovative compositions and methods for promoting or inhibiting angiogenesis. These patents disclose compounds that bind to F1 ATP synthase, specifically targeting the alpha and/or beta subunits. The compounds can function as angiostatin agonists, antagonists, partial agonists, inverse agonists, or allosteric modulators. When these compounds mimic or enhance the activity of angiostatin, they effectively inhibit angiogenesis. Conversely, if they inhibit the ability of angiostatin to bind F1 ATP synthase, they may promote angiogenesis. The compounds can take various forms, including antibodies, antibody fragments, enzymes, peptides, nucleic acids such as oligonucleotides, or small molecules. Additionally, these compounds can be conjugated with cytotoxic agents or labeled compounds, providing versatile applications in medical treatments.
Career Highlights
Throughout her career, Moser has worked with prestigious institutions such as Duke University and Northwestern University. Her research has significantly advanced the understanding of angiogenesis and its implications in treating disorders like tumors and autoimmune diseases, including rheumatoid arthritis.
Collaborations
Moser has collaborated with esteemed colleagues, including Salvatore Pizzo and Mary S Stack, contributing to a rich exchange of ideas and innovations in her field.
Conclusion
Tammy L Moser's work in the field of angiogenesis exemplifies the impact of innovative research on medical science. Her patents and collaborations continue to pave the way for advancements in treatments for various disorders.