This inventor holds 2 USPTO granted patents and 3 published patent applications. Top assignee: Washington University. Active years: 2024-2025.
Company Filing History:
Years Active: 2024-2025
Title: Arpita Bose: Innovator in Micro-Bioelectrochemical Cell Technology
Introduction
Arpita Bose is a prominent inventor based in St. Louis, MO (US). She has made significant contributions to the field of bioelectrochemistry, particularly through her innovative designs of micro-bioelectrochemical cell devices. With a total of 2 patents, her work is paving the way for advancements in bioelectrochemical measurements.
Latest Patents
One of her latest patents involves the development of micro-bioelectrochemical cell (μ-BEC) devices and methods for detecting electron flows. This device features between 4 to 96 microfluidically connected chambers, each containing a volume of approximately 1 μL to 2 μL. Each chamber is equipped with a working electrode, reference electrode, and counting electrode that contacts the enclosed volume. The μ-BEC device comprises a support layer coated with a working electrode layer, a microfluidics layer containing multiple wells, and an electrical layer that includes the reference and counter electrodes. The methods associated with this device enable bioelectrochemical measurements of cells, showcasing its potential applications in various scientific fields.
Career Highlights
Arpita Bose is affiliated with Washington University, where she continues to advance her research and innovation in bioelectrochemical technologies. Her work is recognized for its potential impact on the understanding of cellular processes and bioelectrochemical interactions.
Collaborations
She collaborates with notable colleagues, including Michael Binkley and John Mark Meacham, contributing to a dynamic research environment that fosters innovation and discovery.
Conclusion
Arpita Bose's contributions to the field of micro-bioelectrochemical cell technology highlight her role as a leading inventor. Her innovative patents and collaborative efforts are set to influence future research and applications in bioelectrochemistry.
