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Spiroboronate Si-rhodamine as a near-infrared probe for imaging lysosomes based on the reversible ring-opening process

A cyclic boronate structure was incorporated into Si-rhodamine to design a pH-activatable near-infrared (NIR) probe based on the reversible ring-opening process triggered by H(+). The probe showed general suitability of specific labelling of acidic lysosomes and tracking their pH changes in living c...

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Published in:Chemical communications (Cambridge, England) England), 2015-01, Vol.51 (47), p.9608-9611
Main Authors: Zhu, Weiwei, Chai, Xiaoyun, Wang, Baogang, Zou, Yan, Wang, Ting, Meng, Qingguo, Wu, Qiuye
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Language:English
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cited_by cdi_FETCH-LOGICAL-c386t-7c9a5bf8868f6ff11ef4fe939afc1a49c12e7522c3e5c1261d952d75b7a9ab443
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container_title Chemical communications (Cambridge, England)
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creator Zhu, Weiwei
Chai, Xiaoyun
Wang, Baogang
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description A cyclic boronate structure was incorporated into Si-rhodamine to design a pH-activatable near-infrared (NIR) probe based on the reversible ring-opening process triggered by H(+). The probe showed general suitability of specific labelling of acidic lysosomes and tracking their pH changes in living cells.
doi_str_mv 10.1039/c5cc02496j
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ispartof Chemical communications (Cambridge, England), 2015-01, Vol.51 (47), p.9608-9611
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source Royal Society of Chemistry:Jisc Collections:Royal Society of Chemistry Read and Publish 2022-2024 (reading list)
subjects Animals
Fluorescent Dyes - chemistry
Fluorescent Dyes - metabolism
Hep G2 Cells
Humans
Hydrogen-Ion Concentration
Image Processing, Computer-Assisted - methods
Imaging
Labelling
Lysosomes
Lysosomes - metabolism
Molecular Imaging
PC12 Cells
Rats
Rhodamines - chemistry
Rhodamines - metabolism
Spectrometry, Fluorescence
Spectroscopy, Near-Infrared
Spironolactone - chemistry
Spironolactone - metabolism
Tracking
title Spiroboronate Si-rhodamine as a near-infrared probe for imaging lysosomes based on the reversible ring-opening process
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