Company Filing History:
Years Active: 2025
Title: Ju Hyeon Kim: Innovator in Antibiotic Resistance Detection
Introduction
Ju Hyeon Kim is a prominent inventor based in Boryeong-si, South Korea. He has made significant contributions to the field of biomedical research, particularly in the detection of antibiotic-resistant bacteria. His innovative work aims to address the growing concern of antibiotic resistance, which poses a serious threat to public health.
Latest Patents
Ju Hyeon Kim holds a patent for a "Probe for detecting carbapenem-resistant bacteria and use thereof." This patent describes a compound represented by Chemical Formula 1, which serves as a probe for detecting antibiotic-resistant bacteria. The compound includes a linker and a fluorophore, enabling it to detect beta-lactamase or carbapenemase with high sensitivity. This technology can be applied in various biochemical research settings and is particularly useful for the clinical detection of carbapenemase-producing antibiotic-resistant bacteria. The probe allows for molecular diagnosis of antibiotic-resistant bacterial infectious diseases and analysis of antibiotic-resistant bacteria from target samples with high sensitivity. Therefore, it can be effectively utilized for medicinal purposes, such as in-vitro diagnosis. Ju Hyeon Kim has 1 patent to his name.
Career Highlights
Ju Hyeon Kim is affiliated with the Industry-University Cooperation Foundation at Hanyang University. His role in this institution allows him to engage in cutting-edge research and collaborate with other experts in the field. His work is crucial in advancing the understanding and detection of antibiotic resistance.
Collaborations
Some of his notable coworkers include Sun Joon Min and Yeon Joon Park. Their collaborative efforts contribute to the ongoing research and development in the area of antibiotic resistance detection.
Conclusion
Ju Hyeon Kim's innovative work in developing a probe for detecting carbapenem-resistant bacteria highlights the importance of addressing antibiotic resistance in modern medicine. His contributions are vital for improving diagnostic methods and ultimately enhancing public health outcomes.