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https://www.sciencedirect.com/science/article/pii/S2211383514000252
Smart polymers are becoming increasingly important in the fields of controlled drug delivery, biomedical applications, and tissue engineering, and it is often beneficial to employ polymers that can respond to stimuli which are inherently present in natural systems.Author: Honey Priya James, Rijo John, Anju Alex, K.R. Anoop
https://link.springer.com/chapter/10.1007%2F978-3-319-20206-8_7
Sep 20, 2015 · The changes in the environment that have been exploited for biopharmaceutical applications are exemplified by pH, ionic strength, temperature, light,and magnetic or electric field. This chapter will highlight most popular smart polymers used in drug delivery.Author: Sushant Lakkadwala, Sanko Nguyen, Jerry Nesamony, Ajit S. Narang, Sai Hs. Boddu
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4649785/
Temperature responsive polymers in nasal drug delivery: This type of polymers exhibit sol to gel transition upon exposure to the nasal temperature, for example poloxamer 407, which is a thermosensitive polymer frequently used for in situ gelation. It is a nonionic surfactant consists of polyoxyethylene-polyoxypropylene copolymers.
https://www.sciencedirect.com/science/article/pii/B978085709695150011X
11.5. Smart polymeric carriers for drug delivery: temperature-responsive nanocarriers. Another type of SRNs comprises the temperature-responsive polymers (Chilkoti et al., 2002, Liu et al., 2009, Talelli and Hennink, 2011). The stimuli-responsiveness of these systems is conceptually very different; in most cases it does not serve to enable drug release, but to facilitate self-assembly.Author: M. Talelli, A. Duro-Castaño, G. Rodríguez-Escalona, M.J. Vicent
https://www.polymersolutions.com/blog/smart-polymer-nanofibers-for-drug-delivery/
Jun 04, 2014 · Fiber has been used for drug delivery for at least 15 years, starting with the delivery of tetracycline to gingival tissues in periodontal treatment. Polymer fibers for drug delivery are prepared using a variety of biocompatible and biodegradable polymers , including polylactide, polglycolide, chitosan , hyaluronic acid, heparin, chondroitin sulfate, and many others.
https://www.intechopen.com/books/application-of-nanotechnology-in-drug-delivery/polymer-nanoparticles-for-smart-drug-delivery
The smart drug delivery systems should possess some important feature such as pre-scheduled rate, self controlled, targeted, pre-determined time and monitor the delivery. The smart drug delivery system enhances the polymer nanoparticle better stage to their therapy regimen.Author: Devasier Bennet, Sanghyo Kim
https://www.hindawi.com/journals/jnm/2019/3702518/
Polymers are widely used for drug delivery systems because of their biocompatibility and biodegradability as well as ease in the design and preparation and efficient delivery of the therapeutic active agents to the diseased tissues.Author: Domenico Lombardo, Mikhail A. Kiselev, Mikhail A. Kiselev, Maria Teresa Caccamo
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3438887/
POLYMER THERAPEUTICS FOR DRUG DELIVERY. Polymer therapeutics is a term used to describe an increasingly important area of biopaharmaceutics in which a linear or branched polymer chain behaves either as the bioactive (a polymeric drug) or, more commonly, as the inert carrier to which a therapeutic is covalently linked, as in the case of polymer-drug conjugates, polymer-protein conjugates, polymeric micelles…Author: William B. Liechty, David R. Kryscio, Brandon V. Slaughter, Nicholas A. Peppas
https://www.thoughtco.com/smart-polymers-375577
Jun 25, 2019 · Currently, the most prevalent use o f smart polymers in biomedicine is for specifically targeted drug delivery. Classification and Chemistry of Smart Polymers Since the advent of timed-release pharmaceuticals , scientists have been faced with the problem of finding ways to deliver drugs to a particular site in the body without having them first degrade in the highly acidic stomach environment.
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