Advanced Functional Materials · 2015 · 80 citations · 26 references
The rapid development of fluorescence imaging technologies requires concurrent improvements in the performance of fluorescent probes. Quantum dots have been extensively used as an imaging probe in various research areas because of their inherent advantages based on unique optical and electronic properties. However, their clinical translation has been limited by the potential toxicity especially from cadmium. Here, a versatile bioimaging probe is developed by using highly luminescent cadmium-free CuInSe<sub>2</sub>/ZnS core/shell quantum dots conjugated with CGKRK (Cys-Gly-Lys-Arg-Lys) tumor-targeting peptides. This probe exhibits excellent photostability, reasonably long circulation time, minimal toxicity, and strong tumor-specific homing property. The most important feature of this probe is that it shows distinctive versatility in tumor-targeted multimodal imaging including near-infrared, time-gated, and two-photon imaging in different tumor models. In a glioblastoma mouse model, the targeted probe clearly denotes tumor boundaries and positively labels a population of diffusely infiltrating tumor cells, suggesting its utility in precise tumor detection during surgery. This work lays a foundation for potential clinical translation of the probe.
26
Renal clearance of quantum dots
Hak Soo Choi, Wenhao Liu, Preeti Misra et al. · Nature Biotechnology · 2007 · 4.3K citations · Full text
Noninvasive Imaging of Quantum Dots in Mice
Byron Ballou, B. Christoffer Lagerholm, Lauren A. Ernst et al. · Bioconjugate Chemistry · 2003 · 1.1K citations
Liang Li, Anshu Pandey, D. J. Werder et al. · Journal of the American Chemical Society · 2011 · 752 citations
Materials Science, Gram Quantities, Nanocrystalline Material +12
Design considerations for tumour-targeted nanoparticles
Hak Soo Choi, Wenhao Liu, Fangbing Liu et al. · Nature Nanotechnology · 2009 · 736 citations