Boulder, CO, United States of America

Laura R Kuck

USPTO Granted Patents = 1 

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Innovations of Laura R Kuck

Introduction

Laura R Kuck is an accomplished inventor based in Boulder, Colorado. She has made significant contributions to the field of influenza research through her innovative patent. Her work focuses on the quantification and stability determination of influenza proteins, which is crucial for vaccine development.

Latest Patents

Laura R Kuck holds a patent for a "Universal capture array for multiplexed subtype-specific quantification and stability determination of influenza proteins." This universal array is designed for the multiplexed quantification of variable hemagglutinin subcomponents found in multivalent annual influenza vaccines. It is robust against variations in proteins, such as mutations, and is capable of quantifying the degradation of these proteins. The universal capture array comprises one or more substrates and a low-density microarray of sub-arrays containing spots. The microarray is contacted with one or more targets at unknown concentrations, forming bound complexes that can be quantified using suitable methods. The quantified signals are then compared to calibration curves to determine unknown concentrations and quantify degradation.

Career Highlights

Laura R Kuck has made a notable impact in her field through her innovative research and development efforts. She is currently associated with Indevr, Inc., where she continues to advance her work on influenza proteins and their quantification.

Collaborations

Laura collaborates with Kathy Lou Rowlen, who is also a prominent figure in the field. Their partnership enhances the research and development efforts at Indevr, Inc.

Conclusion

Laura R Kuck's contributions to influenza research through her innovative patent demonstrate her commitment to advancing medical science. Her work is vital for improving vaccine efficacy and understanding protein stability.

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