Emerging strategies in near-infrared light triggered drug delivery using organic nanomaterials.
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Summary
This work highlights emerging near-infrared light-triggered drug delivery using organic nanomaterials, as well as new photocleavage reactions mediated by near- Infrared light.
- Type
- review
- Published
- 2017-07-26
- Cited by
- 20
- References
- 118
- OpenAlex
- https://openalex.org/W2619374746
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206056067
Keywords
Drug delivery, Nanomaterials, Infrared, Nanotechnology, Chemistry
References
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- Far-red light-mediated programmable anti-cancer gene delivery in cooperation with photodynamic therapy.
- Gas‐Stabilizing Gold Nanocones for Acoustically Mediated Drug Delivery
- Mechanistic insight into the singlet oxygen-triggered expansion of hypoxia-responsive polymeric micelles.
- Noninvasive rapid bacteria-killing and acceleration of wound healing through photothermal/photodynamic/copper ion synergistic action of a hybrid hydrogel.
- Click and photo-release dual-functional nucleic acid nanostructures
- Co-delivery of chlorin e6 and doxorubicin using PEGylated hollow nanocapsules for 'all-in-one' tumor theranostics.
- Physically stimulated nanotheranostics for next generation cancer therapy: Focus on magnetic and light stimulations
- Stimuli-Responsive Materials for Tissue Engineering and Drug Delivery
- Biomaterial-assisted photoimmunotherapy for cancer.
- Advanced micro/nanomotors for enhanced bioadhesion and tissue penetration
- NIR light-responsive nanocarriers for controlled release
- Hydrogel Coating Enabling Mechanically Friendly, Step‐Index, Functionalized Optical Fiber
- The Advances and Biomedical Applications of Imageable Nanomaterials
- Caging and photo-triggered uncaging of singlet oxygen by excited state engineering of electron donor–acceptor-linked molecular sensors
- Wound microenvironment‐responsive peptide hydrogel with multifunctionalities for accelerating wound healing
- Charge-Reversal Nano-Drug Delivery Systems in the Tumor Microenvironment: Mechanisms, Challenges, and Therapeutic Applications
- Advances in light-controllable PROTACs: Design strategies, therapeutic applications and current challenges.
- Fabrication and characterization of TiO2 nanoparticles conjugated luminescence upconversion nanoparticles
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