Litcius/Paper detail

Stepwise-Enhanced Tumor Targeting of Near-Infrared Emissive Au Nanoclusters with High Quantum Yields and Long-Term Stability

Hui Zhu, Yue Zhou, Yu Wang, Suying Xu, Tony D. James, Leyu Wang

2022Analytical Chemistry18 citationsDOIOpen Access PDF

Abstract

= 810 nm) with good stability and high quantum yields (27.7%), far higher than those previously reported for NIR AuNCs (>800 nm). Based on the stepwise enhancements including long blood circulation-induced passive tumor targeting, fluoro-enhanced tumor permeation, and tumor microenvironment (weak acid)-induced aggregation retention in cells, these AuNCs demonstrated bright and stable NIR fluorescence imaging ability in tumors. Additionally, the AuNCs@PF were capable of fluorine magnetic resonance imaging and computed tomographic imaging. The multimodal imaging of tumor-bearing mice clearly implied the potential of AuNCs@PF in biomedical fields.

Topics & Concepts

NanoclustersChemistryFluorescenceInfraredPolymerQuantum yieldNuclear magnetic resonanceNanotechnologyOpticsOrganic chemistryPhysicsMaterials scienceNanocluster Synthesis and ApplicationsAdvanced Nanomaterials in CatalysisNanoplatforms for cancer theranostics