2011
DOI: 10.1039/c1cc12174j
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An unprecedented strategy for selective and sensitive fluorescence detection of nitric oxide based on its reaction with a selenide

Abstract: A new strategy that utilizes the interaction between NO and a selenide is reported for fluorescence detection of NO, in which rhodamine B selenolactone serves as a model selenide.

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Cited by 107 publications
(41 citation statements)
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“…Sun et al 72 reported studies on the rhodamine-based fluorescence probe 38 for detecting NO (Scheme 6). The probe itself displays only weak fluorescence because it possesses a less conjugated spirocyclic selenolactone structure.…”
Section: Fluorescent Probes Containing Selenium For Other Significantmentioning
confidence: 99%
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“…Sun et al 72 reported studies on the rhodamine-based fluorescence probe 38 for detecting NO (Scheme 6). The probe itself displays only weak fluorescence because it possesses a less conjugated spirocyclic selenolactone structure.…”
Section: Fluorescent Probes Containing Selenium For Other Significantmentioning
confidence: 99%
“…In addition, as mentioned above, 38 also acts as a NO probe. 72 Inspired by the antitoxic function of selenium toward heavy metal ions, Tang et al 82 designed the organoselenophosphate fluorescent probe 48 for Hg 2+ , which contains a fluorescein fluorophore (Scheme 8). The probe shows high sensitivity and selectivity toward Hg 2+ over other relevant metal ions and bioanalytes.…”
Section: Selenium-containing Fluorescent Probes For Cations and Anionsmentioning
confidence: 99%
“…45 Moreover, RBSe is also an organic-based fluorescent probe that directly reacts with NO. Furthermore, rhodamine B is a more polar zwitterion and thus may be well-retained in cells.…”
Section: Fluorescent Sensors Based On Other Organic Functional Groupsmentioning
confidence: 99%
“…7 Sensitive and selective detection of short lived NO in vitro is a great challenge, which has been developed recently. [8][9][10] Fontijn et al applied gas phase chemiluminescence to detect NO based on the reaction of NO with ozone generating nitrogen dioxide in the excited state. 11 However, the method was not only expensive but also time consuming.…”
Section: Introductionmentioning
confidence: 99%