High-Contrast Fluorescence Detection of Metastatic Breast Cancer Including Bone and Liver Micrometastases via Size-Controlled pH-Activatable Water-Soluble Probes
Hu Xiong
1
,
Hao Zuo
2
,
Yunfeng Yan
1
,
Gino Occhialini
1
,
Kejin Zhou
1
,
Yihong Wan
2
,
Daniel J Siegwart
1
Publication type: Journal Article
Publication date: 2017-05-31
scimago Q1
wos Q1
SJR: 8.851
CiteScore: 39.4
Impact factor: 26.8
ISSN: 09359648, 15214095
PubMed ID:
28563903
General Materials Science
Mechanical Engineering
Mechanics of Materials
Abstract
Breast cancer metastasis is the major cause of cancer death in women worldwide. Early detection would save many lives, but current fluorescence imaging probes are limited in their detection ability, particularly of bone and liver micrometastases. Herein, probes that are capable of imaging tiny (<1 mm) micrometastases in the liver, lung, pancreas, kidneys, and bone, that have disseminated from the primary site, are reported. The influence of the poly(ethylene glycol) (PEG) chain length on the performance of water-soluble, pH-responsive, near-infrared 4,4'-difluoro-4-bora-3a,4a-diaza-s-indacene (BODIPY) probes is systematically investigated to demonstrate that PEG tuning can provide control over micrometastasis tracking with high tumor-to-background contrast (up to 12/1). Optimized probes can effectively visualize tumor boundaries and successfully detect micrometastases with diameters <1 mm. The bone-metastasis-targeting ability of these probes is further enhanced by covalent functionalization with bisphosphonate. This improved detection of both bone and liver micrometastases (<2 mm) with excellent tumor-to-normal contrast (5.2/1). A versatile method is thus introduced to directly synthesize modular water-soluble probes with broad potential utility. Through a single intravenous injection, these materials can image micrometastases in multiple organs with spatiotemporal resolution. They thus hold promise for metastasis diagnosis, image-guided surgery, and theranostic PEGylated drug therapies.
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Xiong H. et al. High-Contrast Fluorescence Detection of Metastatic Breast Cancer Including Bone and Liver Micrometastases via Size-Controlled pH-Activatable Water-Soluble Probes // Advanced Materials. 2017. Vol. 29. No. 29. p. 1700131.
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Xiong H., Zuo H., Yan Y., Occhialini G., Zhou K., Wan Y., Siegwart D. J. High-Contrast Fluorescence Detection of Metastatic Breast Cancer Including Bone and Liver Micrometastases via Size-Controlled pH-Activatable Water-Soluble Probes // Advanced Materials. 2017. Vol. 29. No. 29. p. 1700131.
Cite this
RIS
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TY - JOUR
DO - 10.1002/adma.201700131
UR - https://doi.org/10.1002/adma.201700131
TI - High-Contrast Fluorescence Detection of Metastatic Breast Cancer Including Bone and Liver Micrometastases via Size-Controlled pH-Activatable Water-Soluble Probes
T2 - Advanced Materials
AU - Xiong, Hu
AU - Zuo, Hao
AU - Yan, Yunfeng
AU - Occhialini, Gino
AU - Zhou, Kejin
AU - Wan, Yihong
AU - Siegwart, Daniel J
PY - 2017
DA - 2017/05/31
PB - Wiley
SP - 1700131
IS - 29
VL - 29
PMID - 28563903
SN - 0935-9648
SN - 1521-4095
ER -
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@article{2017_Xiong,
author = {Hu Xiong and Hao Zuo and Yunfeng Yan and Gino Occhialini and Kejin Zhou and Yihong Wan and Daniel J Siegwart},
title = {High-Contrast Fluorescence Detection of Metastatic Breast Cancer Including Bone and Liver Micrometastases via Size-Controlled pH-Activatable Water-Soluble Probes},
journal = {Advanced Materials},
year = {2017},
volume = {29},
publisher = {Wiley},
month = {may},
url = {https://doi.org/10.1002/adma.201700131},
number = {29},
pages = {1700131},
doi = {10.1002/adma.201700131}
}
Cite this
MLA
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Xiong, Hu, et al. “High-Contrast Fluorescence Detection of Metastatic Breast Cancer Including Bone and Liver Micrometastases via Size-Controlled pH-Activatable Water-Soluble Probes.” Advanced Materials, vol. 29, no. 29, May. 2017, p. 1700131. https://doi.org/10.1002/adma.201700131.