| Literature DB >> 31674770 |
Francesco Tampieri1, Gabriele Cabrellon1, Andrea Rossa1, Antonio Barbon1, Ester Marotta1, Cristina Paradisi1.
Abstract
Recently, a new water-soluble, fluorescein-based probe for the detection of superoxide radical anion in aqueous media was developed by Lu et al. (ACS Sens. 2018, 3, 59-64). The probe was proven to be selective for superoxide and was used successfully also in cells and zebrafish embryos. To characterize the response of the probe to superoxide, Lu et al. used KO2 dissolved in deionized water as a surrogate. In testing this probe in different applications, we repeated some of these experiments and came to realize that the fluorescence signal observed by the Authors in their experiments with KO2 was incorrectly attributed to the reaction of the probe with superoxide and is due instead to its reactions with HO- and HO2-. We show that indeed under the conditions used in these assays KO2 undergoes very fast reaction with water to form HO- and HO2-. On the other hand, by using a proper surrogate, namely, KO2 dissolved in DMSO, and spin trapping experiments, we confirmed the ability of the probe to detect superoxide.Entities:
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Year: 2019 PMID: 31674770 DOI: 10.1021/acssensors.9b01358
Source DB: PubMed Journal: ACS Sens ISSN: 2379-3694 Impact factor: 7.711