Location History:
- Liaoning, CN (2011)
- Shenyang, CN (2016 - 2017)
Company Filing History:
Years Active: 2011-2017
Title: Yanfang Zhao: Innovator in Quinoline Derivatives
Introduction
Yanfang Zhao is a notable inventor based in Shenyang, China. He has made significant contributions to the field of medicinal chemistry, particularly through his work on quinoline derivatives. With a total of three patents to his name, Zhao's innovations focus on compounds that have potential applications in cancer treatment.
Latest Patents
Zhao's latest patents include "Quinoline derivatives and their applications." This invention relates to a series of quinoline derivatives of general formula I, along with their pharmaceutically acceptable salts, hydrates, solvates, or prodrugs. The compounds demonstrate potent inhibitory activity against c-Met kinase, which is crucial for the treatment and prevention of diseases caused by abnormal expression of this kinase, especially cancer. Another significant patent is "Quinoline and cinnoline derivatives and their applications." Similar to his previous work, this invention also focuses on a series of quinoline and cinnoline derivatives that exhibit potent inhibitory activity against c-Met kinase, further emphasizing their potential in developing medicaments for cancer treatment.
Career Highlights
Yanfang Zhao has worked at Shenyang Pharmaceutical University and Shenyang Pharmaceutical University (Benxi) Pharmaceutical Science and Technology Co., Ltd. His academic and professional experiences have greatly influenced his research and innovations in the pharmaceutical field.
Collaborations
Zhao has collaborated with notable colleagues, including Ping Gong and Yajing Liu, who have contributed to his research endeavors.
Conclusion
Yanfang Zhao's work in developing quinoline derivatives showcases his commitment to advancing medicinal chemistry and providing potential solutions for cancer treatment. His contributions are significant in the ongoing fight against diseases caused by abnormal kinase expression.