Winston Salem, NC, United States of America

Capre Denise Mitchell


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 30(Granted Patents)


Company Filing History:


Years Active: 2005

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1 patent (USPTO):Explore Patents

Title: Capre Denise Mitchell: Innovator in Biomolecular Detection

Introduction

Capre Denise Mitchell is a distinguished inventor based in Winston Salem, NC (US). She has made significant contributions to the field of biomolecular detection, showcasing her expertise through her innovative patent. Her work focuses on methods and devices that enhance the analysis of biomolecules, which are crucial for various scientific and medical applications.

Latest Patents

Capre Denise Mitchell holds a patent titled "Methods, devices, arrays and kits for detecting and analyzing biomolecules." This patent describes devices, arrays, kits, and methods for detecting biomolecules in tissue sections or other two-dimensional samples. The technology involves creating 'carbon copies' of biomolecules eluted from samples and visualizing them using detector molecules, such as antibodies or DNA probes. Specific methods are provided for identifying patterns of biomolecules, including proteins and nucleic acids, in samples. The patent also includes various prepared membranes that facilitate the identification and analysis of biomolecules.

Career Highlights

Throughout her career, Capre Denise Mitchell has worked with notable organizations, including Genesystems Inc. and the National Institutes of Health, a component of the US Department of Health & Human Services. Her experience in these institutions has allowed her to develop and refine her innovative approaches to biomolecular detection.

Collaborations

Capre Denise Mitchell has collaborated with esteemed colleagues, including Vladimir Knezevic and Michael R Emmert-Buck. These collaborations have contributed to her research and the advancement of her patented technologies.

Conclusion

Capre Denise Mitchell is a pioneering inventor whose work in biomolecular detection has the potential to impact various fields, including healthcare and research. Her innovative methods and devices represent a significant advancement in the analysis of biomolecules.

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