Port Moody, Canada

Kathleen Lisaingo

USPTO Granted Patents = 1 

 


Average Co-Inventor Count = 11.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Innovations of Kathleen Lisaingo in Microfluidic Technology

Introduction

Kathleen Lisaingo is a prominent inventor based in Port Moody, Canada. She has made significant contributions to the field of microfluidic devices, particularly in the development of methods for multicellular assays of secretion. Her innovative work has the potential to advance research in cellular interactions and effects.

Latest Patents

Kathleen Lisaingo holds a patent for her invention titled "Microfluidic devices and methods for use thereof in multicellular assays of secretion." This patent describes methods and devices for identifying a cell population that includes an effector cell capable of exerting an extracellular effect. The method involves retaining a cell population in a microreactor, incubating it with a readout particle population, and assaying for the presence of the extracellular effect. If an effect is detected, the cell population can be further analyzed to identify the responsible cells. This innovative approach enhances the understanding of cellular behavior and interactions.

Career Highlights

Kathleen is affiliated with the University of British Columbia, where she continues to engage in groundbreaking research. Her work has garnered attention for its potential applications in various scientific fields, including biotechnology and medicine. With a focus on microfluidic technology, she is paving the way for new methodologies in cellular assays.

Collaborations

Kathleen collaborates with notable colleagues, including Marketa Ricicova and Kevin Albert Heyries. These partnerships enhance her research efforts and contribute to the advancement of knowledge in her field.

Conclusion

Kathleen Lisaingo's contributions to microfluidic technology and her innovative patent demonstrate her commitment to advancing scientific research. Her work not only highlights her expertise but also opens new avenues for understanding cellular interactions.

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