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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2386871/
May 08, 2008 · Polymer-drug conjugation involving metal-based and other medicinal agents has unquestionably matured to a practical tool to the pharmaceutical scientist, and all indications point to an illustrious career for this nascent drug delivery approach …Author: Eberhard W. Neuse
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3438887/
Modern advances in drug delivery are now predicated upon the rational design of polymers tailored for specific cargo and engineered to exert distinct biological functions. In this review, we highlight the fundamental drug delivery systems and their mathematical foundations and discuss the physiological barriers to drug delivery.Author: William B. Liechty, David R. Kryscio, Brandon V. Slaughter, Nicholas A. Peppas
https://www.mddionline.com/polymers-controlled-drug-delivery
Originally, polylactides and polyglycolides were used as absorbable suture material, and it was a natural step to work with these polymers in controlled drug delivery systems. The greatest advantage of these degradable polymers is that they are broken down into biologically acceptable molecules that are metabolized and removed from the body via normal metabolic pathways.
https://www.scirp.org/journal/PaperInformation.aspx?PaperID=62762
Jan 01, 2016 · Polymer drug conjugates such as Zoladex, Lupron Depot, On Caspar PEG intron are used in treatment of prostate cancer and lymphoblastic leukemia. Polymeric Drug Delivery systems are being utilized for controlled drug delivery assuring patient compliance.Author: Apurva Srivastava, Tejaswita Yadav, Soumya Sharma, Anjali Nayak, Akanksha Akanksha Kumari, Nidhi Mis...
https://www.henkel-adhesives.com/us/en/industries/medical/drug-delivery-polymers.html
Advanced Adhesive Solutions for Drug Delivery Systems. Henkel has been an integral part of the transdermal market since its inception. As a global leader in acrylic polymers for transdermal drug delivery, Henkel’s Duro-Tak and Gelva pressure sensitive adhesives are approved in over 50 unique commercial patches marketed in the Americas, Australia, China, Europe, India, Japan and Korea.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4311717/
Dec 15, 2014 · Nanoparticles manufactured from inert biocompatible polystyrene can be used to explore the effects of different surface properties on various biomedical parameters and enable the rational design of new drug delivery systems and predict functionalization-dependent health hazards that nanoparticles might exhibit.Author: C. Loos, T. Syrovets, Anna Musyanovych, Volker Mailänder, Katharina Landfester, G. U. Nienhaus, T. S...
https://www.sciencedirect.com/science/article/pii/S0169409X20300120
The potential significance of IT drug delivery for the treatment of CNS disease is amplified by deepened understanding of dynamic exchange between CSF, interstitial fluid (ISF), and peripheral tissue sites, which provides an opportunity to alter the distribution of nanomedicine through fluid convection . It is thus not surprising that IT ...Author: M.J. Fowler, J.D. Cotter, B.E. Knight, E.M. Sevick-Muraca, D.I. Sandberg, D.I. Sandberg, R.W. Sirian...
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2527668/
Drug delivery and nanoparticles: Applications and hazards. ... The use of nanotechnology in medicine and more specifically drug delivery is set to spread rapidly. Currently many substances are under investigation for drug delivery and more specifically for cancer therapy. ... but studies with surface modified polystyrene particles do suggest ...Author: Wim H De Jong, Paul Ja Borm
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6848967/
Nov 05, 2019 · A number of advances in drug formulation have been made in the area of sublingual and buccal drug delivery. This review will focus on the physiological aspects that influence buccal and sublingual drug delivery and the advances in nanoparticulate drug delivery approaches for sublingual and buccal administration.Author: Susan Hua
https://directorsblog.nih.gov/tag/drug-delivery/
Sep 12, 2019 · The researchers’ next step will be to test their magnetic approach to drug delivery in a mouse model. Ultimately, they think their innovative strategy holds promise for delivering nanoparticles carrying a wide range of therapeutic payloads right to a tumor, infection, or other diseased tissue.
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