Molecular mechanism of ion-pair releasing from acrylic pressure sensitive adhesive containing carboxyl group: Roles of doubly ionic hydrogen bond in the controlled release process of bisoprolol ion-pair
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Pharmaceutical Science
Reference39 articles.
1. Transdermal drug delivery: 30+ years of war and still fighting!;Wiedersberg;J. Control. Release,2014
2. Effect of counter-ions and penetration enhancers on the skin permeation of flurbiprofen;Ma;J. Pharm. Sci.,2010
3. Toxicological implications of the delivery of fentanyl from gel extracted from a commercial transdermal reservoir patch;Oliveira;Toxicol. in Vitro,2012
4. Drug-in-cyclodextrin-in-liposomes: a promising delivery system for hydrophobic drugs;Chen;Expert Opin. Drug Deliv.,2014
5. The control of skin-permeating rate of bisoprolol by ion-pair strategy for long-acting transdermal patches;Song;AAPS PharmSciTech,2012
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