Location History:
- Stony Brook, NY (US) (1991 - 1996)
- Salt Lake City, UT (US) (1997 - 2016)
Company Filing History:
Years Active: 1991-2016
Title: **Cynthia J Burrows: Pioneer in Nucleic Acid Detection**
Introduction
Cynthia J Burrows, based in Salt Lake City, UT, is a renowned inventor with a significant contribution to the field of nucleic acid research. With nine registered patents to her name, she is recognized for her innovative methods in detecting nucleic acid lesions and modifications.
Latest Patents
Her latest patent focuses on the "Detection of nucleic acid lesions and adducts using nanopores." This innovative method describes systems and compounds designed to detect modified nucleic acid bases. The technique involves directing a nucleic acid adduct containing a lesion into a channel. A current modulating compound is coupled to the nucleic acid at the lesion, enabling detection of the lesion by measuring changes in current through the channel. Additionally, the patent discusses methods for identifying repeat nucleotides, assigning registration markers within nucleic acids, and obtaining sequencing information.
Career Highlights
Cynthia J Burrows has had a notable career, significantly impacting the scientific community. She has worked with esteemed organizations, including the Research Foundation of the State University of New York and the University of Utah Research Foundation. Her dedication to advancing our understanding of nucleic acids has earned her recognition as a leader in her field.
Collaborations
Throughout her career, Burrows has collaborated with notable colleagues such as Steven E Rokita and Heungsik Yoon. These collaborations have led to significant advancements in the research and development of nucleic acid detection methods.
Conclusion
Cynthia J Burrows is a distinguished inventor whose cutting-edge work in the detection of nucleic acid modifications has opened new avenues in molecular biology and genetics. Her innovative patents and collaborations highlight her commitment to scientific discovery and her lasting impact on the field.