Fluorescent amphiphilic copolymer-based tumor theranostics for facile DOX-loading and tumor microenvironment-triggered release
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Summary
The fluorescence intensity of the copolymer possessed a reversibly transformation in different pH media, indicating the potential application for intracellular fluorescence imaging of tumors.
- Type
- article
- Published
- 2016-09-05
- Cited by
- 16
- References
- 34
- OpenAlex
- https://openalex.org/W2401934242
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:138887803
Keywords
Copolymer, Amphiphile, Raft, Materials science, Micelle
References
- Enzyme-responsive polymeric assemblies, nanoparticles and hydrogels.
- PLA-PEG Coated Multifunctional Imaging Probe for Targeted Drug Delivery.
- Synthesis of multi-functional nanocapsules via interfacial AGET ATRP in miniemulsion for tumor micro-environment responsive drug delivery.
- Selective modulation of glutathione levels in human normal versus tumor cells and subsequent differential response to chemotherapy drugs.
- Preparation of biodegradable PEGylated pH/reduction dual-stimuli responsive nanohydrogels for controlled release of an anti-cancer drug.
- Nanotheranostics and image-guided drug delivery: current concepts and future directions.
- Characterizing the Structure of pH Dependent Polyelectrolyte Block Copolymer Micelles
- Reversibly stabilized multifunctional dextran nanoparticles efficiently deliver doxorubicin into the nuclei of cancer cells.
- Temperature-responsive polymeric micelles for optimizing drug targeting to solid tumors.
- Functional Polymers from Novel Carboxyl-Terminated Trithiocarbonates as Highly Efficient RAFT Agents
- Dual and multi-stimuli responsive polymeric nanoparticles for programmed site-specific drug delivery.
- Synthesis of an amphiphilic copolymer bearing rhodamine moieties and its self-assembly into micelles as chemosensors for Fe3+ in aqueous solution
- Functionalized graphene oxide nanoparticles for cancer cell-specific delivery of antitumor drug.
- Shell-detachable micelles based on disulfide-linked block copolymer as potential carrier for intracellular drug delivery.
- Recent progress in tumor pH targeting nanotechnology.
- Amphiphilic miktoarm star copolymer (PCL)3-(PDEAEMA-b-PPEGMA)3 as pH-sensitive micelles in the delivery of anticancer drug.
- Higuchi equation: derivation, applications, use and misuse.
- Trigger responsive polymeric nanocarriers for cancer therapy.
- Hg2+-reactive double hydrophilic block copolymer assemblies as novel multifunctional fluorescent probes with improved performance.
- Supramolecular micelles with dual temperature and redox responses for multi-controlled drug release
Cited by
- Independent temperature and pH dual-responsive PMAA/PNIPAM microgels as drug delivery system: Effect of swelling behavior of the core and shell materials in fabrication process
- Heterogeneous dimer peptide-conjugated polylysine dendrimer-Fe3O4 composite as a novel nanoscale molecular probe for early diagnosis and therapy in hepatocellular carcinoma
- Acid-activatable doxorubicin prodrug micelles with folate-targeted and ultra-high drug loading features for efficient antitumor drug delivery
- Synergistic effect of shape-selective silver nanostructures decorating reduced graphene oxide nanoplatelets for enhanced cytotoxicity against breast cancer
- Design of Janus-like PMMA-PEG-FA grafted fluorescent carbon dots and their nanoassemblies for leakage-free tumor theranostic application
- Stimuli-Responsive Nano-polymer Composite Materials Based on the Triazine Skeleton Structure Used in Drug Delivery
- Biodegradable Micelles for NIR/GSH-Triggered Chemophototherapy of Cancer
- Preparation and characterization of redox-sensitive glutenin nanoparticles.
- Nanoconjugation and Encapsulation Strategies for Improving Drug Delivery and Therapeutic Efficacy of Poorly Water-Soluble Drugs
- pH/Reduction dual-responsive comet-shaped PEGylated CQD-DOX conjugate prodrug: Synthesis and self-assembly as tumor nanotheranostics.
- pH and Redox Dual-Responsive MSN-S-S-CS as a Drug Delivery System in Cancer Therapy
- pH-responsive intramolecular FRET-based self-tracking polymer prodrug nanoparticles for real-time tumor intracellular drug release monitoring and imaging.
- Advancements in redox-sensitive micelles as nanotheranostics: A new horizon in cancer management.
- Phase Transition and Fluorescence Emission of Multiresponsive Poly(ethylene glycol-co-siloxane) and Its Application for Uric Acid Detection
- Effects of silver in lanthanum zinc ferrite nanocrystallites of AgxCo0.5−xZn0.5Fe1.95La0.05O4/5% G (x = 0, 0.01, 0.05, 0.1, 0.25, 0.5) on corecivity, antimicrobial, and the MDA-MB-231 breast cancer cell
- Redox- and pH-responsive polymeric nanocarriers
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