Angewandte Chemie International Edition · 2019 · 101 citations · 31 references
Depression is intimately linked with oxidative stress. As one of the most reactive and oxidative reactive oxygen species that is overproduced during oxidative stress, the hydroxyl radical (<sup>.</sup> OH) can cause macromolecular damage and subsequent neurological diseases. However, due to the high reactivity and low concentration of <sup>.</sup> OH, precise exploration of <sup>.</sup> OH in brains remains a challenge. The two-photon fluorescence probe MD-B was developed for in situ <sup>.</sup> OH imaging in living systems. This probe achieves exceptional selectivity towards <sup>.</sup> OH through the one-electron oxidation of 3-methyl-pyrazolone as a new specific recognition site. MD-B can be used to map <sup>.</sup> OH in mouse brain, thereby revealing that increased <sup>.</sup> OH is positively correlated with the severity of depression phenotypes. Furthermore, <sup>.</sup> OH has been shown to inactivate deacetylase SIRT1, thereby leading to the occurrence and development of depression phenotypes. This work provides a new strategy for the future treatment of depression.
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Joseph S. Beckman, ThomasJ Beckman, Jake Y. Chen et al. · Proceedings of the National Academy of Sciences · 1990 · 7K citations · Full text
Inflammation, Peroxynitrite Decomposition, Redox Signaling +15
<i>In vivo</i> two-photon calcium imaging of neuronal networks
Christoph Stosiek, Olga Garaschuk, Knut Holthoff et al. · Proceedings of the National Academy of Sciences · 2003 · 1.3K citations · Full text