Maryland Heights, MO, United States of America

Deborah W McCarthy


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 69(Granted Patents)


Company Filing History:


Years Active: 2000

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Deborah W. McCarthy

Introduction: Deborah W. McCarthy, hailing from Maryland Heights, MO, is a notable inventor with a focus on the production of radionuclides. With a groundbreaking patent to her name, she has made significant contributions to the field of radiopharmaceuticals, particularly in diagnostic and therapeutic applications.

Latest Patents: Deborah W. McCarthy holds a patent titled "Production of .sup.64 Cu and other radionuclides using a charged-particle beam." This innovative method allows for the production of radionuclides at commercially significant yields. The process is designed for the creation of isotopes suitable for use in radiodiagnostic agents, such as Positron Emission Tomography (PET) imaging agents and radiotherapeutic agents. The invention involves electroplating an isotopically enriched target layer on an inert substrate, which is then irradiated by a charged-particle beam generated by an accelerator, achieving efficient separation of the desired products.

Career Highlights: Deborah's patent explains a sophisticated system for producing .sup.64 Cu, demonstrating a specific activity exceeding 300 mCi/µg Cu using an accelerator, particularly a biomedical cyclotron. Additionally, she has contributed to the recycling of unreacted target materials, further enhancing the efficiency of the radionuclide production process. Her research shows promise for practical applications in radiopharmaceutical therapies.

Collaborations: At Washington University, where Deborah McCarthy is employed, she has collaborated with esteemed colleagues Michael John Welch and Ruth E. Shefer. Their partnership exemplifies the synergy between innovative minds dedicated to advancing the fields of medicine and scientific research.

Conclusion: Deborah W. McCarthy's contributions to the field of radionuclide production are invaluable. Through her innovative patent and collaborative efforts at Washington University, she has paved the way for enhanced diagnostic and therapeutic tools in medicine. Her work continues to inspire fellow inventors and researchers in the pursuit of advancements in healthcare.

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