Gold nanoclusters for theranostic applications
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Summary
This review introduces the burgeoning advances on the utilization of gold nanoclusters for disease-related diagnostic (involving biological analysis, and biological imaging), and therapeutic applications, and discusses the future development of functionalized gold nanClusters for theranostic applications.
- Type
- article
- Published
- 2020-12-05
- Cited by
- 131
- References
- 343
- OpenAlex
- https://openalex.org/W3113092110
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:230621458
Keywords
Nanoclusters, Nanotechnology, Biomedicine, Biocompatibility, Chemistry
References
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Cited by
- Self-assembled Au4Cu4/Au25 NCs@liposome tumor nanotheranostics with PT/fluorescence imaging-guided synergetic PTT/PDT.
- The fabrication of transferrin-modified two-photon gold nanoclusters with near-infrared fluorescence and their application in bioimaging.
- Unraveling the Nucleation Process from a Au(I)-SR Complex to Transition-Size Nanoclusters.
- Versatile roles of silver in Ag-based nanoalloys for antibacterial applications
- Copper nanocluster composites for analytical (bio)-sensing and imaging: a review
- Superatomic Au25(SC2H5)18 Nanocluster under Pressure
- Ensuring food safety using fluorescent nanoparticles-based immunochromatographic test strips
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- Weak Interaction-Tailored Catalytic Interface of Ultrasmall Gold Nanoclusters as Enzyme Mimics for Enhanced Colorimetric Biosensing.
- A multifunctional AIE gold cluster-based theranostic system: tumor-targeted imaging and Fenton reaction-assisted enhanced radiotherapy
- Gold Nanoclusters: Imaging, Therapy, and Theranostic Roles in Biomedical Applications
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- Regulation of Surface Structure of [Au9Ag12(SAdm)4(Dppm)6Cl6](SbF6)3 Nanocluster via Alloying
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- Near-Infrared II Gold Nanocluster Assemblies with Improved Luminescence and Biofate for In Vivo Ratiometric Imaging of H2S.
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- Recent progress in the applications of gold-based nanoparticles towards tumor-targeted imaging and therapy
- Establishing bilateral modulation of radiation induced redox damage via biocatalytic single atom engineering at Au clusters
- Engineering Gold Nanostructures for Cancer Treatment: Spherical Nanoparticles, Nanorods, and Atomically Precise Nanoclusters
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