Institute of Applied Radiation Chemistry, Lodz University of Technology, 90-924, Lodz, Poland.
Aix Marseille Univ, CNRS, ICR, UMR 7273, 13013, Marseille, France.
Sci Rep. 2020 Oct 29;10(1):18626. doi: 10.1038/s41598-020-75373-2.
Hydroethidine (HE) and hydropropidine ([Formula: see text]) are fluorogenic probes used for the detection of the intra- and extracellular superoxide radical anion ([Formula: see text]). In this study, we provide evidence that HE and [Formula: see text] react rapidly with the biologically relevant radicals, including the hydroxyl radical, peroxyl radicals, the trioxidocarbonate radical anion, nitrogen dioxide, and the glutathionyl radical, via one-electron oxidation, forming the corresponding radical cations. At physiological pH, the radical cations of the probes react rapidly with [Formula: see text], leading to the specific 2-hydroxylated cationic products. We determined the rate constants of the reaction between [Formula: see text] and the radical cations of the probes. We also synthesized N-methylated analogs of [Formula: see text] and HE which were used in mechanistic studies. Methylation of the amine groups was not found to prevent the reaction between the radical cation of the probe and the superoxide, but it significantly increased the lifetime of the radical cation and had a substantial effect on the profiles of the oxidation products by inhibiting the formation of dimeric products. We conclude that the N-methylated analogs of HE and [Formula: see text] may be used as a scaffold for the design of a new generation of probes for intra- and extracellular superoxide.
羟乙基噻吩嗪(HE)和羟丙啶([Formula: see text])是用于检测细胞内和细胞外超氧阴离子自由基([Formula: see text])的荧光探针。在这项研究中,我们提供的证据表明,HE 和 [Formula: see text] 通过单电子氧化迅速与生物相关的自由基(包括羟基自由基、过氧自由基、三氧化碳酸盐自由基阴离子、二氧化氮和谷胱甘肽自由基)反应,形成相应的自由基阳离子。在生理 pH 值下,探针的自由基阳离子与 [Formula: see text] 迅速反应,导致产生特定的 2-羟基化的阳离子产物。我们测定了 [Formula: see text] 与探针自由基阳离子之间反应的速率常数。我们还合成了 [Formula: see text] 的 N-甲基化类似物和 HE,用于机理研究。我们发现,胺基的甲基化不会阻止探针的自由基阳离子与超氧自由基之间的反应,但它显著增加了自由基阳离子的寿命,并通过抑制二聚产物的形成对氧化产物的分布产生了实质性影响。我们得出结论,HE 和 [Formula: see text] 的 N-甲基化类似物可以作为设计用于细胞内和细胞外超氧的新一代探针的支架。