This inventor holds 1 USPTO granted patent. Top assignees: Macau University of Science and Technology, Southern Medical University. Active years: 2019.
Company Filing History:
Years Active: 2019
Title: Ye-Mei Liang: Innovator in Crystalline Copper-Based Coordination Polymers
Introduction
Ye-Mei Liang is a distinguished inventor based in Guangzhou, China. He has made significant contributions to the field of coordination polymers, particularly in the development of crystalline copper-based coordination polymers. His innovative work has implications for the detection of viral RNA, showcasing his expertise in both chemistry and biotechnology.
Latest Patents
Ye-Mei Liang holds a patent for "Crystalline copper-based coordination polymers and their use." This patent describes a method for preparing a crystalline copper-based coordination polymer by mixing copper ions with a first quaternized carboxylate pyridyl ligand, followed by the addition of a second polypyridyl ligand. The resulting crystals are suitable for creating a sensing platform that can detect target nucleic acid sequences, such as viral RNA from the Dengue virus and Zika virus, with high selectivity and specificity. Additionally, the patent includes a method for detecting Flavivirus RNA in samples and provides a kit that incorporates the crystalline copper-based coordination polymer along with an oligonucleotide probe.
Career Highlights
Throughout his career, Ye-Mei Liang has worked at notable institutions, including the Macau University of Science and Technology and Southern Medical University. His research has focused on the intersection of chemistry and medical diagnostics, leading to advancements in the detection of viral infections.
Collaborations
Ye-Mei Liang has collaborated with esteemed colleagues such as Jin-Xiang Chen and Bao-Ping Xie. These partnerships have contributed to the success of his research and the development of innovative solutions in the field.
Conclusion
Ye-Mei Liang's work in the development of crystalline copper-based coordination polymers represents a significant advancement in the detection of viral RNA. His contributions to science and technology continue to impact the field positively.