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Xiaoyuan Chen

Researcher at National University of Singapore

Publications -  1270
Citations -  115993

Xiaoyuan Chen is an academic researcher from National University of Singapore. The author has contributed to research in topics: Photothermal therapy & Medicine. The author has an hindex of 149, co-authored 994 publications receiving 89870 citations. Previous affiliations of Xiaoyuan Chen include Brown University & University of Southern California.

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Singlet Oxygen "Afterglow" Therapy with NIR-II Fluorescent Molecules.

TL;DR: In this article, three boron dipyrromethene (BODIPY) dyes are synthesized to demonstrate that anthracence-functionalized BODIPy, namely ABDPTPA, is an efficient heavy-atom-free photosensitizer for the reversible capture and release of 1 O2.
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RGD-Human Serum Albumin Conjugates as Efficient Tumor Targeting Probes:

TL;DR: An RGD-based protein conjugate with prolonged circulation half-life for NIRF imaging of tumor integrin αvβ3 expression is developed and may be generalizable for other peptide-based probes to be conjugated with HSA for prolonged tumor contrast and improved pharmacokinetics.
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Novel "Add-On" Molecule Based on Evans Blue Confers Superior Pharmacokinetics and Transforms Drugs to Theranostic Agents

TL;DR: Conjugation of the novel add-on molecule, NMEB or DMEB, to potential tracers or therapeutic agents improved blood half-life and tumor uptake and could transform such agents into theranostic entities.
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Positron emission tomography imaging of poststroke angiogenesis.

TL;DR: In vivo imaging of VEGFR expression could become a significant clinical tool to plan and monitor therapies aimed at improving poststroke angiogenesis in a rat stroke model for the first time.
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Label-Free Visualization of Early Cancer Hepatic Micrometastasis and Intraoperative Image-Guided Surgery by Photoacoustic Imaging.

TL;DR: PAI was able to detect metastases as small as approximately 400 μm at a depth of up to 7 mm in vivo—a size that is smaller than can be detected with ultrasound and MRI, which offers a rapid and effective complementary clinical imaging application to noninvasively detect micrometastases and guide intraoperative resection.