Menlo Park, CA, United States of America

Emma J Chory

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Emma J. Chory in BAF Complex Modulation

Introduction

Emma J. Chory, located in Menlo Park, California, has made significant strides in the field of biochemistry and medicinal chemistry through her innovative work in modulating BAF complexes. With a notable patent to her name, she stands as a prominent figure in advancing treatments for various conditions, particularly in cancer therapy.

Latest Patents

Emma J. Chory is credited with a patent titled "BAF complex modulating compounds and methods of using the same". This invention presents a new paradigm for treating conditions where the modulation of BAF complexes is required. The patent outlines effective compounds and pharmaceutical compositions designed to selectively inhibit BAF complex activity in target cells. It introduces a novel chemical scaffold, including a 12-membered macrolactam core structure, which plays a crucial role in the effectiveness of the compounds. Notably, some of these agents prove particularly effective for treating cancer when used in conjunction with ATR inhibitors.

Career Highlights

Chory's career is anchored at Leland Stanford Junior University, where she has collaborated with some of the leading minds in the field. Her work not only contributes to the academic landscape but also has the potential to enhance clinical outcomes for patients suffering from serious illnesses.

Collaborations

Throughout her career, Emma J. Chory has collaborated with prominent researchers, including Gerald R. Crabtree and Emily Carla Dykhuizen. These partnerships have facilitated the development of innovative strategies and compounds that push the boundaries of current treatments and therapies.

Conclusion

Emma J. Chory’s contributions to the field of BAF complex modulation signify important advancements in therapeutic strategies, particularly for cancer treatment. Her patent and ongoing research efforts promise to enhance understanding and efficacy in managing complex conditions, setting a foundation for future innovations in medical science.

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