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Smart Hydrogels for Advanced Drug Delivery Systems
by
Gasik, Michael
, Bordbar-Khiabani, Aydin
in
Biomedical materials
/ Drug delivery systems
/ Drug Delivery Systems - methods
/ Drug therapy
/ Hydrogels
/ Hydrogels - chemistry
/ Hydrogen-Ion Concentration
/ Inflammation
/ Magnetic Fields
/ Nanoparticles
/ Phase transitions
/ Physicochemical properties
/ Polymers
/ Review
/ Temperature
/ Transplants & implants
2022
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Smart Hydrogels for Advanced Drug Delivery Systems
by
Gasik, Michael
, Bordbar-Khiabani, Aydin
in
Biomedical materials
/ Drug delivery systems
/ Drug Delivery Systems - methods
/ Drug therapy
/ Hydrogels
/ Hydrogels - chemistry
/ Hydrogen-Ion Concentration
/ Inflammation
/ Magnetic Fields
/ Nanoparticles
/ Phase transitions
/ Physicochemical properties
/ Polymers
/ Review
/ Temperature
/ Transplants & implants
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Smart Hydrogels for Advanced Drug Delivery Systems
by
Gasik, Michael
, Bordbar-Khiabani, Aydin
in
Biomedical materials
/ Drug delivery systems
/ Drug Delivery Systems - methods
/ Drug therapy
/ Hydrogels
/ Hydrogels - chemistry
/ Hydrogen-Ion Concentration
/ Inflammation
/ Magnetic Fields
/ Nanoparticles
/ Phase transitions
/ Physicochemical properties
/ Polymers
/ Review
/ Temperature
/ Transplants & implants
2022
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Journal Article
Smart Hydrogels for Advanced Drug Delivery Systems
2022
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Overview
Since the last few decades, the development of smart hydrogels, which can respond to stimuli and adapt their responses based on external cues from their environments, has become a thriving research frontier in the biomedical engineering field. Nowadays, drug delivery systems have received great attention and smart hydrogels can be potentially used in these systems due to their high stability, physicochemical properties, and biocompatibility. Smart hydrogels can change their hydrophilicity, swelling ability, physical properties, and molecules permeability, influenced by external stimuli such as pH, temperature, electrical and magnetic fields, light, and the biomolecules’ concentration, thus resulting in the controlled release of the loaded drugs. Herein, this review encompasses the latest investigations in the field of stimuli-responsive drug-loaded hydrogels and our contribution to this matter.
Publisher
MDPI AG,MDPI
Subject
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