Guilford, CT, United States of America

Joanne T Trojnacki


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2005

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Joanne T. Trojnacki

Introduction

Joanne T. Trojnacki, based in Guilford, Connecticut, is an accomplished inventor with a notable contribution to the field of neuroscience through her groundbreaking patent. With a focus on potassium channel research, Trojnacki's work has implications for various neurological conditions, showcasing her impact in medical science.

Latest Patents

Trojnacki holds a patent for the "Human KCNQ5 Potassium Channel, Methods and Compositions Thereof." This invention describes an isolated polynucleotide that encodes a novel potassium channel polypeptide, KCNQ5, which is primarily expressed in the brain and skeletal muscle. This discovery has significant potential in diagnostic, therapeutic, and screening applications. The KCNQ5 polypeptide can aid in the development of treatments for a range of neurological diseases, including migraines, dementia, and other neurophysiological disorders.

Career Highlights

Joanne Trojnacki has demonstrated considerable expertise in her field through her research and innovations at Bristol-Myers Squibb Company. Her dedication to advancing understanding in potassium channels and their applications in treating neurological conditions has marked her as a key thinker in modern neuroscience.

Collaborations

Throughout her career, Trojnacki has worked alongside esteemed colleagues including Steven Dworetzky and Chandra S. Ramanathan. These collaborations have likely contributed to the depth and breadth of her research, enhancing the potential impact of her findings in the scientific community.

Conclusion

Joanne T. Trojnacki exemplifies the spirit of innovation in the medical science arena. Her pioneering work on the KCNQ5 potassium channel presents promising avenues for addressing significant neurological challenges. As her research continues to evolve, it will undoubtedly play a crucial role in the advancement of treatments for various mental and neurophysiological disorders.

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