Baltimore, MD, United States of America

Sari Izenwasser


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 1998

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1 patent (USPTO):Explore Patents

Title: Sari Izenwasser: Innovator in Tropane Analog Research

Introduction

Sari Izenwasser is a notable inventor based in Baltimore, MD (US). She has made significant contributions to the field of medicinal chemistry, particularly in the development of tropane analogs. Her work focuses on creating compounds that have potential therapeutic applications, especially in treating cocaine abuse and neurodegenerative disorders.

Latest Patents

Sari Izenwasser holds a patent for her invention titled "4' and 4', 4'-substituted-3-.alpha.-(diphenylmethoxy) tropane analogs." This patent describes a family of tropane analogs that exhibit a high affinity for the dopamine transporter. These compounds inhibit dopamine uptake without displaying a cocaine-like behavioral profile. The invention also outlines methods for using these benztropine analogs to treat cocaine abuse, image dopamine transporter/cocaine binding sites, and diagnose or monitor neurodegenerative disorders such as Parkinson's disease.

Career Highlights

Izenwasser's career is marked by her dedication to research and innovation in pharmacology. She has been instrumental in advancing the understanding of dopamine transporters and their role in addiction and neurodegenerative diseases. Her work has implications for developing new therapeutic strategies that can improve patient outcomes.

Collaborations

Sari Izenwasser has collaborated with notable colleagues, including Amy Hauck Newman and Andrew C Allen. These collaborations have enriched her research and contributed to the advancement of knowledge in her field.

Conclusion

Sari Izenwasser's contributions to the field of medicinal chemistry, particularly through her patent on tropane analogs, highlight her role as an innovator in addressing significant health challenges. Her work continues to pave the way for new treatments and understanding of complex disorders.

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