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A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery

Because of profound genetic and histological differences in cancerous tissue, it is challenging to detect a broad range of malignant tumours at high resolution. Here, we report the design and performance of a fluorescent nanoprobe with transistor-like responses (transition pH = 6.9) for the detectio...

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Autores principales: Zhao, Tian, Huang, Gang, Li, Yang, Yang, Shunchun, Ramezani, Saleh, Lin, Zhiqiang, Wang, Yiguang, Ma, Xinpeng, Zeng, Zhiqun, Luo, Min, de Boer, Esther, Xie, Xian-Jin, Thibodeaux, Joel, Brekken, Rolf A., Sun, Xiankai, Sumer, Baran D., Gao, Jinming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5617128/
https://www.ncbi.nlm.nih.gov/pubmed/28966871
http://dx.doi.org/10.1038/s41551-016-0006
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author Zhao, Tian
Huang, Gang
Li, Yang
Yang, Shunchun
Ramezani, Saleh
Lin, Zhiqiang
Wang, Yiguang
Ma, Xinpeng
Zeng, Zhiqun
Luo, Min
de Boer, Esther
Xie, Xian-Jin
Thibodeaux, Joel
Brekken, Rolf A.
Sun, Xiankai
Sumer, Baran D.
Gao, Jinming
author_facet Zhao, Tian
Huang, Gang
Li, Yang
Yang, Shunchun
Ramezani, Saleh
Lin, Zhiqiang
Wang, Yiguang
Ma, Xinpeng
Zeng, Zhiqun
Luo, Min
de Boer, Esther
Xie, Xian-Jin
Thibodeaux, Joel
Brekken, Rolf A.
Sun, Xiankai
Sumer, Baran D.
Gao, Jinming
author_sort Zhao, Tian
collection PubMed
description Because of profound genetic and histological differences in cancerous tissue, it is challenging to detect a broad range of malignant tumours at high resolution. Here, we report the design and performance of a fluorescent nanoprobe with transistor-like responses (transition pH = 6.9) for the detection of the deregulated pH that drives many of the invasive properties of cancer. The nanoprobe amplifies fluorescence signal in the tumour over that in the surrounding normal tissues, resulting in a discretized, binary output signal with spatial resolution smaller than 1 mm. The nanoprobe allowed us to image a broad range of tumours in mouse models using a variety of clinical cameras, and to perform real-time tumour-acidosis-guided detection and surgery of occult nodules (< 1 mm(3)) in mice bearing head-and-neck or breast tumours, significantly lengthening mice survivability. We also show that the pH nanoprobe can be used as a reporter in a fast, quantitative assay to screen for tumour-acidosis inhibitors. The binary delineation of pH achieved by the nanoprobe promises to improve the accuracy of cancer detection, surveillance and therapy.
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spelling pubmed-56171282017-09-27 A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery Zhao, Tian Huang, Gang Li, Yang Yang, Shunchun Ramezani, Saleh Lin, Zhiqiang Wang, Yiguang Ma, Xinpeng Zeng, Zhiqun Luo, Min de Boer, Esther Xie, Xian-Jin Thibodeaux, Joel Brekken, Rolf A. Sun, Xiankai Sumer, Baran D. Gao, Jinming Nat Biomed Eng Article Because of profound genetic and histological differences in cancerous tissue, it is challenging to detect a broad range of malignant tumours at high resolution. Here, we report the design and performance of a fluorescent nanoprobe with transistor-like responses (transition pH = 6.9) for the detection of the deregulated pH that drives many of the invasive properties of cancer. The nanoprobe amplifies fluorescence signal in the tumour over that in the surrounding normal tissues, resulting in a discretized, binary output signal with spatial resolution smaller than 1 mm. The nanoprobe allowed us to image a broad range of tumours in mouse models using a variety of clinical cameras, and to perform real-time tumour-acidosis-guided detection and surgery of occult nodules (< 1 mm(3)) in mice bearing head-and-neck or breast tumours, significantly lengthening mice survivability. We also show that the pH nanoprobe can be used as a reporter in a fast, quantitative assay to screen for tumour-acidosis inhibitors. The binary delineation of pH achieved by the nanoprobe promises to improve the accuracy of cancer detection, surveillance and therapy. 2016-12-19 2016 /pmc/articles/PMC5617128/ /pubmed/28966871 http://dx.doi.org/10.1038/s41551-016-0006 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Zhao, Tian
Huang, Gang
Li, Yang
Yang, Shunchun
Ramezani, Saleh
Lin, Zhiqiang
Wang, Yiguang
Ma, Xinpeng
Zeng, Zhiqun
Luo, Min
de Boer, Esther
Xie, Xian-Jin
Thibodeaux, Joel
Brekken, Rolf A.
Sun, Xiankai
Sumer, Baran D.
Gao, Jinming
A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery
title A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery
title_full A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery
title_fullStr A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery
title_full_unstemmed A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery
title_short A Transistor-like pH Nanoprobe for Tumour Detection and Image-guided Surgery
title_sort transistor-like ph nanoprobe for tumour detection and image-guided surgery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5617128/
https://www.ncbi.nlm.nih.gov/pubmed/28966871
http://dx.doi.org/10.1038/s41551-016-0006
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