Marlow, United Kingdom

Anthony Leonard Riley


Average Co-Inventor Count = 2.7

ph-index = 6

Forward Citations = 115(Granted Patents)


Location History:

  • Amersham, EN (1976 - 1978)
  • Amersham, GB (1979 - 1996)
  • Marlow, GB (1998 - 1999)

Company Filing History:


Years Active: 1976-1999

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11 patents (USPTO):Explore Patents

Title: The Innovations of Anthony Leonard Riley: A Pioneer in Radiopharmaceutical Chemistry

Introduction: Anthony Leonard Riley, an accomplished inventor hailing from Marlow, Great Britain, has made significant contributions to the field of radiopharmaceutical chemistry. With a commendable total of 11 patents to his name, his innovations highlight his expertise in developing metal chelating compounds and their applications in medical science.

Latest Patents: Among Riley's latest groundbreaking patents are intriguing advancements in the realm of metal chelating compounds, particularly designed for radiopharmaceutical use. These ligands are capable of chelating radiometal species while bonding to biological targeting molecules. His innovative formulas include specific configurations where components such as A, A', B, and others combine to form complex structures that are foundational for the efficacy of targeted radiotherapy. Another notable invention is the development of metal-oxime chelates, which serve as critical agents in radiopharmaceutical applications, further underscoring the potential of his research in enhancing diagnostic and therapeutic methodologies.

Career Highlights: Riley's career has been marked by tenure at notable firms, including The Radiochemical Centre Limited and Amersham International Plc. These institutions provided a fertile ground for his research and development efforts, aligning perfectly with his interests in nuclear chemistry and its medical applications. His commitment to advancing the science of radiopharmaceuticals demonstrates his relentless pursuit of innovation in this critical field.

Collaborations: Throughout his career, Riley has worked alongside esteemed colleagues such as Reginald Monks and Colin M. Archer. These collaborations fostered a creative environment that allowed for the exchange of ideas and collective problem-solving, driving forward the boundaries of what is possible in radiopharmaceutical technology.

Conclusion: Anthony Leonard Riley's contributions to the field of radiopharmaceutical chemistry through his patents and collaborative efforts have paved the way for future innovations. His work not only reflects individual brilliance but also highlights the importance of collaboration in advancing scientific frontiers. As the landscape of medical technology continues to evolve, Riley’s inventions remain crucial in shaping the future of targeted therapies.

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