Two-photon fluorescent probe for cellular peroxynitrite: Fluorescence detection, imaging, and identification of peroxynitrite-specific products

被引:22
|
作者
Grzelakowska, Aleksandra [1 ]
Zielonka, Monika [2 ]
Debowska, Karolina [3 ]
Modrzejewska, Julia [1 ]
Szala, Marcin [1 ]
Sikora, Adam [3 ]
Zielonka, Jacek [2 ]
Podsiadly, Radoslaw [1 ]
机构
[1] Lodz Univ Technol, Fac Chem, Inst Polymer & Dye Technol, Stefanowskiego 12-16, PL-90924 Lodz, Poland
[2] Med Coll Wisconsin, Dept Biophys, 8701 Watertown Plank Rd, Milwaukee, WI 53226 USA
[3] Lodz Univ Technol, Fac Chem, Inst Appl Radiat Chem, Zeromskiego 116, PL-90924 Lodz, Poland
关键词
Two-photon fluorescent probe; Naphthalene-based probe; Peroxynitrite; Fluorometric high throughput analyses; Fluorescence imaging; Mass spectrometry; HIGHLY SELECTIVE DETECTION; SENSITIVE DETECTION; LIVING CELLS; ENDOGENOUS PEROXYNITRITE; BIOLUMINESCENT DETECTION; BIOLOGICAL-SYSTEMS; HYDROGEN-PEROXIDE; REACTIVE OXYGEN; OXIDANTS; CYSTEINE;
D O I
10.1016/j.freeradbiomed.2021.04.011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A new naphthalene-based boronate probe, NAB-BE, for the fluorescence-based detection of inflammatory oxidants, including peroxynitrite, hypochlorous acid, and hydrogen peroxide, is reported. The chemical reactivity and fluorescence properties of the probe and the products are described. The major, phenolic oxidation product, NAB-OH, is formed in case of all three oxidants tested. This product shows green fluorescence, with a maximum at 512 nm, and can be excited either at 340 nm or in the near infrared region (745 nm) for two-photon fluorescence imaging. Peroxynitrite is the fastest of the oxidants tested and, in addition to the phenolic product, leads to the formation of a nitrated product, NAB-NO2, which can serve as a fingerprint for peroxynitrite. The probe was applied to detect peroxynitrite in activated macrophages using fluorimetry and two-photon fluorescence microscopy, and both NAB-OH and NAB-NO2 products were detected in cell extracts by liquid chromatographymass spectrometry. The combined use of fluorometric high-throughput analyses, fluorescence imaging, and liquid chromatography-mass spectrometry-based product identification and quantitation is proposed for most comprehensive and rigorous characterization of oxidants in biological systems.
引用
收藏
页码:24 / 35
页数:12
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