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Xiaorong Song

Researcher at Fuzhou University

Publications -  38
Citations -  2293

Xiaorong Song is an academic researcher from Fuzhou University. The author has contributed to research in topics: In vivo & Photothermal therapy. The author has an hindex of 20, co-authored 34 publications receiving 1475 citations. Previous affiliations of Xiaorong Song include Harvard University & National University of Singapore.

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Co₉ Se₈ nanoplates as a new theranostic platform for photoacoustic/magnetic resonance dual-modal-imaging-guided chemo-photothermal combination therapy.

TL;DR: The new theranostic platform based on biocompatible poly(acrylic acid) (PAA)-Co9 Se8 nanoplates shows pH-responsive chemotherapy and enables the combination of photothermal therapy and chemotherapy to receive superior antitumor efficacy.
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Functionalization of metal nanoclusters for biomedical applications

TL;DR: This review introduces the functionalization strategies for the metalNCs developed in the past few years, followed by highlighting some biomedical applications of these functionalized metal NCs, and discusses the difference of in vitro and in vivo fate as well as toxicity between various functionalizedMetal NCs.
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High-resolution X-ray luminescence extension imaging

TL;DR: In this article, the authors demonstrate ultralong-lived X-ray trapping for flat-panel-free, high-resolution, three-dimensional imaging using a series of solution-processable, lanthanide-doped nanoscintillators.
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Topological insulator bismuth selenide as a theranostic platform for simultaneous cancer imaging and therapy

TL;DR: It is shown that Bi2Se3 nanoplates can absorb near-infrared (NIR) laser light and effectively convert laser energy into heat and photothermal conversion property may be due to the unique physical properties of topological insulators.
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A New Class of NIR-II Gold Nanocluster-Based Protein Biolabels for In Vivo Tumor-Targeted Imaging.

TL;DR: The renal-clearable and host-guest recognition-based NIR-II biolabels developed in this study provide a promising platform to monitor the physiological behaviors of biomolecules in living organisms.