Chicago, IL, United States of America

Kristen Stoltz


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: Kristen Stoltz: Innovating Cancer Therapy through Transcription Regulation

Introduction: Kristen Stoltz, an accomplished inventor based in Chicago, IL, has made significant strides in the field of cancer therapy through her innovative research. With expertise in biochemistry and molecular biology, she has focused on the transcription regulation mechanisms that play a critical role in various diseases, particularly cancer.

Latest Patents: Kristen Stoltz holds a patent for "Small molecules for disrupting the super elongation complex and inhibiting transcription elongation for cancer therapy". This innovative patent discloses compounds designed to inhibit transcription by RNA Polymerase II (Pol II). Specifically, her patented compounds aim to disrupt the Super Elongation Complex (SEC), offering potential new methods for treating diseases and disorders linked to high levels of gene expression that depend on SEC. Such conditions include various types of cancers that require a deeper understanding of transcription regulation.

Career Highlights: Kristen Stoltz's career has been marked by a strong commitment to scientific research and innovation. As a dedicated researcher at Northwestern University, she has been instrumental in advancing our understanding of transcriptional processes and their implications for cancer therapy. Her work is not only groundbreaking but also integrates novel approaches to drug development.

Collaborations: Throughout her career, Kristen has collaborated with notable scientists, including Ali Shilatifard and Kaiwei Liang. Together, they have shared insights and experiences that have undoubtedly enriched their research outputs and contributed to the advancement of cancer therapies.

Conclusion: Kristen Stoltz exemplifies the spirit of innovation in the scientific community, with her patented work paving the way for new therapeutic techniques in cancer treatment. Her collaboration with distinguished colleagues and her role at Northwestern University highlight the importance of teamwork and shared knowledge in tackling complex medical challenges. With her ongoing research, she continues to inspire future generations of inventors and scientists.

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