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https://nanoinstitute.utah.edu/news-events/nanobytes-newsletter/vol-1-iss-2/biomed-polymers.php
On Friday and Saturday, March 26-27, over 170 people attended theSymposium on Biomedical Polymers for Drug Delivery to honor Dr. Jindrich Kopecek's 70th Birthday. Dr Kopecek, Distinguished Professor of Pharmaceutics and Bioengineering and TheraTarget, Inc. Board Member, is a world renowned expert in polymeric biomaterials and drug delivery systems.
https://www.mddionline.com/polymers-controlled-drug-delivery
Table I. Environmentally sensitive polymers for drug delivery. 4. ENVIRONMENTALLY RESPONSIVE SYSTEMS. It is also possible for a drug delivery system to be designed so that it is incapable of releasing its agent or agents until it is placed in an appropriate biological environment.
https://mrm2019.jmru.org/program/symposium/i3.html
Even cells could be printed at a predetermined position with biodegradable polymers by 3D bio-printing techniques. This symposium focuses on recent progress in biodegradable polymers and related technologies to be applied not only for medical devices but also for drug delivery systems, regenerative medicine and 3D bio-printing.
Innovative Delivery Symposium (SIPCD), held biennially since 2010, has been established as a high-level conference in the fields of biomedical polymers and controlled delivery. The delivery system is central to nearly all emerging healthcare technologies including nanomedicines, targeted therapy, personalized medicines, gene therapy, molecular ...
https://pubs.acs.org/doi/pdf/10.1021/mp1001813
from the Symposium on Biomedical Polymers for Drug Delivery held in Salt Lake City, Utah, on March 26-27, 2010. I am very pleased that I was asked to write this perspective, since the symposium was organized by my former students to celebrate my 70th birthday. It provides me the opportunity to thank the organizers of the symposium,
https://www.biomaterials.org/sigs-and-committees-sigs-and-committees-overview/drug-delivery
The Drug Delivery Special Interest Group will deal with the science and technology of controlled release of active agents from delivery systems. Controlled drug release is achieved by the use of diffusion, chemical reactions, dissolutions or osmosis, used either singly or in combination.
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