St. Louis, MO, United States of America

Kexian Liang

USPTO Granted Patents = 4 

Average Co-Inventor Count = 4.5

ph-index = 2

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 2020-2024

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4 patents (USPTO):Explore Patents

Title: Kexian Liang: Innovating with Near Infrared Fluorescent Dyes

Introduction

Kexian Liang is a notable inventor based in St. Louis, Missouri, recognized for his significant contributions to the field of pharmaceutical compositions and fluorescent dyes. With a total of four patents to his name, Liang's work focuses on advancements that utilize near infrared fluorescent dyes, particularly in identifying biological compounds.

Latest Patents

Among his latest inventions, Liang has developed a pharmaceutical composition that incorporates cypate-Cyclo(Cys-Gly-Arg-Asp-Ser-Pro-Cys)-Lys-OH (LS301) and cypate-Cyclo(Cys-Gly-Arg-Asp-Ser-Pro-Cys)-Tyr-OH (LS838). These compounds can exist in both D and L configurations, alongside a divalent metal ion and a pharmaceutically acceptable carrier. His innovations also include lyophilized products combining dye-conjugates and methodologies for identifying compromised proteins, specifically phosphorylated annexin A2 (pANXA2), in biological samples.

Career Highlights

Kexian Liang is affiliated with Washington University, where he has been at the forefront of research and development in his respective field. His work exemplifies a commitment to pushing the boundaries of science and technology, particularly in the realm of medical diagnoses and treatments.

Collaborations

Liang collaborates with prominent colleagues, including Rui Tang and Samuel I Achilefu, further enhancing his contributions to the scientific community. These partnerships enable the blending of ideas and expertise, fostering innovative solutions that can have a significant impact on healthcare and diagnostics.

Conclusion

Kexian Liang's impressive portfolio of patents in near infrared fluorescent dyes reflects his dedication to advancing pharmaceutical technologies. His work not only holds promise for improving biological identification methods but also showcases the potential for future innovations that may transform medical diagnostics and treatment methodologies.

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