Palo Alto, CA, United States of America

Josephine Lee

USPTO Granted Patents = 17 

 

 

Average Co-Inventor Count = 5.6

ph-index = 3

Forward Citations = 26(Granted Patents)


Location History:

  • Palo Alto, CA (US) (2016 - 2022)
  • Hayward, CA (US) (2019 - 2023)

Company Filing History:


Years Active: 2016-2025

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17 patents (USPTO):

Title: The Innovations of Josephine Lee: A Pioneer in Nucleic Acid Amplification

Introduction

Josephine Lee is an accomplished inventor based in Palo Alto, California, known for her significant contributions to the field of nucleic acid amplification. With 15 patents to her name, Josephine has demonstrated exceptional innovation and expertise in developing methods and compositions that enhance the understanding and applications of nucleic acids.

Latest Patents

Josephine's recent patents focus on nucleic acid amplification, specifically providing methods and compositions for the amplification of nucleic acids and the generation of concatemers. These innovative amplification methods can be performed under isothermal conditions, which is crucial for various practical applications in biotechnology. The methods outlined in her patents incorporate essential reagents, such as nucleic acid polymerases and primers, which are fundamental in the amplification process.

Career Highlights

Throughout her career, Josephine Lee has made substantial contributions to her field while working for prominent companies, including Theranos, Inc. and Labrador Diagnostics LLC. Her work in these organizations has not only advanced her career but also significantly influenced the landscape of nucleic acid research and diagnostics.

Collaborations

Josephine has collaborated with talented professionals in her field, including her notable coworkers Pranav Patel and Scott M. Tabakman. Their combined expertise has undoubtedly contributed to the success of her innovative projects and patents.

Conclusion

Josephine Lee stands out as a prominent inventor making strides in nucleic acid amplification technology. Her commitment to innovation and collaboration continues to push the boundaries of research and practice in biotechnology. As she develops new methods and compositions, her work may pave the way for future advancements in the fields of genetics and molecular biology.

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