Arlington, MA, United States of America

Li-yun A Kung

USPTO Granted Patents = 8 

 

Average Co-Inventor Count = 5.3

ph-index = 5

Forward Citations = 122(Granted Patents)


Company Filing History:


Years Active: 2016-2023

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8 patents (USPTO):

Title: **The Innovative Journey of Li-yun A Kung**

Introduction

Li-yun A Kung is a notable inventor based in Arlington, MA, known for her significant contributions to the field of nucleic acid synthesis. With a remarkable portfolio of 8 patents, her work has impacted the way polynucleotides are synthesized and utilized in various applications. Her innovations showcase her dedication to advancing molecular biology techniques.

Latest Patents

Among her most notable patents are methods and devices for nucleic acids synthesis. This invention relates to synthesizing polynucleotides with predefined sequences on a support. The assembly methods utilize primer extension to create overlapping construction oligonucleotides, enabling the assembly of the desired polynucleotides onto anchor support-bound oligonucleotides. Another recent patent includes compositions and methods for multiplex nucleic acid synthesis, focusing on methods and compositions used to design and produce target nucleic acids. This aspect of her work highlights the efficiency and effectiveness of multiplex synthesis of target polynucleotides.

Career Highlights

Li-yun A Kung has made significant strides in her career, working with innovative companies such as Gen9, Inc. and Ginkgo Bioworks, Inc. Her experience in these organizations has provided her with a strong foundation for developing her groundbreaking inventions.

Collaborations

Collaboration has played a vital role in Li-yun's career. She has worked alongside esteemed colleagues such as Joseph M Jacobson and Daniel Schindler. These partnerships have fostered a creative environment, allowing her to explore and expand on innovative ideas in nucleic acid synthesis.

Conclusion

Li-yun A Kung exemplifies the spirit of innovation through her impactful patents and collaborations in the field of molecular biology. Her contributions continue to pave the way for advancements in nucleic acid synthesis, inspiring future inventors and researchers to push the boundaries of scientific discovery.

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