RSC Advances · 2016 · 38 citations · 29 references
EngineeringBiomedical EngineeringDisulfide LocationNanomedicineIntracellular Drug DeliveryDrug Delivery SystemHydrophobic Pcl BlocksPolymer ChemistryHydrophobic Pcl JunctionsMicelleMolecular EngineeringPharmacologyBiomolecular EngineeringPolyurethane MicellesRelease MechanismPolymer-drug ConjugateDrug Delivery SystemsNano-drug DeliveryAmphiphilic SystemDrug Release ProfileMedicine
Polyurethane micelles with disulfide bonds positioned mainly either at the hydrophobic PCL junctions (PU-SS-C) or at the connections between the hydrophilic PEG and hydrophobic PCL blocks (PU-SS-I) were developed as a antitumor drug carriers.
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Gregory L. Kenausis, János Vörös, Donald L. Elbert et al. · The Journal of Physical Chemistry B · 2000 · 664 citations
Redox-responsive polymers for drug delivery: from molecular design to applications
Meng Huo, Jinying Yuan, Lei Tao et al. · Polymer Chemistry · 2013 · 548 citations
Glutathione measurement in human plasma
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