Company Filing History:
Years Active: 2016-2025
Title: Innovations by Wei Li Lee: Pioneering Therapeutic Delivery Systems
Introduction
Wei Li Lee is an accomplished inventor based in Singapore, known for her significant contributions to the field of therapeutic delivery systems. With a total of 5 patents, she has developed innovative technologies aimed at improving patient care through controlled release mechanisms.
Latest Patents
One of her latest patents is focused on implantable polymer depots for the controlled release of therapeutic agents. This technology involves depot assemblies designed for sustained release of therapeutic agents, utilizing a bioresorbable polymer and a releasing agent that creates diffusion openings when implanted in vivo. The system is engineered to ensure that the therapeutic agent is released at the treatment site for no less than three days.
Another notable patent involves devices, systems, and methods for treating intraluminal cancer through controlled delivery of therapeutic agents. This delivery system includes a therapeutic member designed for endoluminal placement, featuring a film that allows for the controlled release of a chemotherapeutic agent. The design ensures that the treatment portion can be positioned near the treatment site in the esophagus, administering a therapeutically effective dose over a sustained period.
Career Highlights
Wei Li Lee has worked with prominent organizations such as Foundry Therapeutics, Inc. and Nanyang Technological University. Her work in these institutions has been instrumental in advancing research and development in therapeutic technologies.
Collaborations
Throughout her career, Wei Li Lee has collaborated with notable colleagues, including Koon Kiat Teu and Daniel Boon Lim Seet. These partnerships have contributed to her innovative approaches in the field.
Conclusion
Wei Li Lee's contributions to therapeutic delivery systems exemplify her commitment to enhancing medical treatments through innovation. Her patents reflect a deep understanding of the complexities involved in drug delivery, positioning her as a key figure in the field.