Location History:
- Farmingdale, NY (US) (2010)
- San Diego, CA (US) (2011 - 2024)
Company Filing History:
Years Active: 2010-2025
Title: Heather Renee Coate - Innovator in Pharmacological Patents
Introduction
Heather Renee Coate is a prominent inventor based in San Diego, California, known for her significant contributions to the field of pharmacology. With an impressive portfolio of 31 patents, she has dedicated her career to the development of innovative compounds aimed at advancing medical treatments.
Latest Patents
Among her latest patents, Coate has focused on the creation of "Substituted pyrazolo-pyrazines and their use as GluN2B receptor modulators." These compounds hold potential as GluN2B receptor ligands and can be utilized in pharmaceutical compositions and methods for treating various disease states and disorders linked to GluN2B receptor activity. Furthermore, her invention titled "P2X7 modulators" involves compounds defined by specific formulas, which are also incorporated into pharmaceutical compositions. The methods associated with the creation and use of these compounds expand the horizons of medical science.
Career Highlights
Coate's career has been marked by her work with distinguished companies in the pharmaceutical industry, particularly Janssen Pharmaceutica and OSI Pharmaceuticals. Her expertise has greatly contributed to the development of innovative therapeutic solutions, impacting the way certain medical conditions are addressed.
Collaborations
Throughout her career, Heather has had the opportunity to collaborate with notable professionals such as Curt A. Dvorak and Christine Fang Gelin. These collaborative efforts have enabled her to enhance her research and development endeavors, leading to advancements in pharmaceutical sciences.
Conclusion
Heather Renee Coate exemplifies the spirit of innovation in the pharmaceutical industry. Her extensive patent portfolio, combined with her impactful collaborations and career accomplishments, positions her as a significant figure in the landscape of medical treatments. Her work continues to inspire advancements that may one day transform patient care and improve health outcomes.