Boulder, CO, United States of America

Deanna Church

USPTO Granted Patents = 12 

Average Co-Inventor Count = 3.0

ph-index = 6

Forward Citations = 52(Granted Patents)


Company Filing History:


Years Active: 2019-2023

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12 patents (USPTO):Explore Patents

Title: Deanna Church: Innovator in Peptide Engineering

Introduction

Deanna Church is a prominent inventor based in Boulder, Colorado, known for her significant contributions to the field of peptide engineering. With a total of 12 patents to her name, she has made remarkable strides in identifying selective binding pairs and developing automated instrumentation for T-cell receptor peptide libraries.

Latest Patents

One of her latest patents is focused on methods for identifying selective binding pairs. This patent describes innovative techniques for using cell surface display libraries, where engineered peptides are displayed on cell surfaces to identify those that bind to specific targets. The engineered peptides are expressed under conditions that allow for both secretion and display, facilitating the identification of potential binding pairs. Another notable patent involves automated instrumentation for the production of T-cell receptor peptide libraries. This invention provides automated methods for creating cell surface display libraries that help identify antigens binding to T-cell receptors, enhancing the understanding of immune responses.

Career Highlights

Deanna Church has established herself as a key figure in her field through her work at Inscripta, Inc. Her expertise in peptide engineering has not only led to numerous patents but has also positioned her as a leader in innovative research and development.

Collaborations

Throughout her career, Deanna has collaborated with notable colleagues, including Stephen Federowicz and Michael Graige. These partnerships have contributed to her success and the advancement of her research initiatives.

Conclusion

Deanna Church's work in peptide engineering exemplifies innovation and dedication to scientific advancement. Her contributions through patents and collaborations continue to impact the field significantly.

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