York, United Kingdom

Deborah J Heath


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2010

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1 patent (USPTO):Explore Patents

Title: Innovations in Medical Implant Materials by Deborah J Heath

Introduction

Deborah J Heath is a notable inventor based in York, GB. She has made significant contributions to the field of medical implant materials, particularly through her innovative patent. Her work focuses on enhancing the biocompatibility of medical implants, which is crucial for patient safety and recovery.

Latest Patents

Deborah J Heath holds a patent for "Medical implant materials containing immobilized transglutaminase." This invention provides a medical implant material that comprises mammalian transglutaminase and a polymer. The transglutaminase is presented in the absence of free divalent metal ions, and the polymer is associated with a transglutaminase binding protein. The invention emphasizes the use of tissue transglutaminase, which can be coated on, impregnated into, or covalently linked to the polymer. The polymer may be either naturally occurring or synthetic, and it can be biodegradable or non-biodegradable. Additionally, the medical implant material may include a reinforcing agent and/or one or more additional polymers. The patent also outlines a method for improving the biocompatibility of medical implant materials using mammalian transglutaminase.

Career Highlights

Deborah J Heath is affiliated with Aston University, where she continues her research and development in the field of medical materials. Her work has garnered attention for its potential to improve patient outcomes through innovative implant technologies.

Collaborations

Deborah collaborates with esteemed colleagues, including Martin Griffin and Paul Christian, who contribute to her research endeavors. Their combined expertise enhances the development of advanced medical solutions.

Conclusion

Deborah J Heath's contributions to medical implant materials represent a significant advancement in the field. Her innovative patent showcases the potential for improved biocompatibility in medical devices, ultimately benefiting patient care.

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