Seoul, South Korea

Ji Hoon Jung

USPTO Granted Patents = 1 

Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Ji Hoon Jung and His Groundbreaking Patent

Introduction: Ji Hoon Jung is a notable inventor based in Seoul, South Korea, recognized for his significant contribution to the field of bioinformatics and molecular design. With one patented invention to his name, he demonstrates the potential for innovation in predicting activation energy, which is crucial for understanding metabolic processes.

Latest Patents: Ji Hoon Jung holds a patent titled "Method for predicting activation energy using atomic fingerprint descriptor or atomic descriptor." This invention provides a systematic approach for constructing a database of atomic fingerprint descriptors. The method includes steps for calculating the atomic fingerprint descriptor of a substrate, comparing it with an established database, and predicting activation energy for specific metabolic reactions. This patent highlights the application of atomic descriptors in predicting activation energy in cytochrome P450-mediated phase I metabolism.

Career Highlights: Ji Hoon Jung is currently associated with the Bioinformatics and Molecular Design Research Center, where he engages in pioneering research aimed at enhancing the understanding of molecular interactions. His expertise lies in utilizing advanced computational methods to derive insights into chemical processes, contributing valuable knowledge to the scientific community.

Collaborations: Throughout his career, Ji Hoon Jung has worked alongside talented researchers, including Ky Youb Nam and Kyoung Tai No. These collaborations foster an environment of innovation, driving the progress of research in bioinformatics and molecular design.

Conclusion: Ji Hoon Jung stands out as a committed inventor whose work in predicting activation energy through innovative methodologies has the potential to revolutionize the field of molecular design. His contributions, backed by relevant collaborations and a solid career foundation, position him as an influential figure in advancing the scientific understanding of metabolic pathways.

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