Smart drug release systems based on stimuli-responsive polymers.

Guangyan Qing, Minmin Li, Lijing Deng, Ziyu Lv, Peng Ding, Taolei Sun
Author Information
  1. Guangyan Qing: State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, 430070 Wuhan, PR China.

Abstract

Stimuli-responsive polymers could respond to external stimuli, such as temperature, pH, photo-irradiation, electric field, biomolecules in solution, etc., which further induce reversible transformations in the structures and conformations of polymers, providing an excellent platform for controllable drug release, while the accuracy of drug delivery could obtain obvious improvement in this system. In this review, recent progresses in the drug release systems based on stimuli-responsive polymers are summarized, in which drugs can be released in an intelligent mode with high accuracy and efficiency, while potential damages to normal cells and tissues can also be effectively prevented owing to the unique characteristics of materials. Moreover, we introduce some smart nanoparticles-polymers conjugates and drug release devices, which are especially suitable for the long-term sustained drug release.

MeSH Term

Drug Carriers
Drug Delivery Systems
Pharmacokinetics
Polymers

Chemicals

Drug Carriers
Polymers

Word Cloud

Created with Highcharts 10.0.0drugreleasepolymersaccuracysystemsbasedstimuli-responsivecanStimuli-responsiverespondexternalstimulitemperaturepHphoto-irradiationelectricfieldbiomoleculessolutionetcinducereversibletransformationsstructuresconformationsprovidingexcellentplatformcontrollabledeliveryobtainobviousimprovementsystemreviewrecentprogressessummarizeddrugsreleasedintelligentmodehighefficiencypotentialdamagesnormalcellstissuesalsoeffectivelypreventedowinguniquecharacteristicsmaterialsMoreoverintroducesmartnanoparticles-polymersconjugatesdevicesespeciallysuitablelong-termsustainedSmart

Similar Articles

Cited By