Institute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, Stefanowskiego 16, 90-537, Lodz, Poland.
Department of Biophysics, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI, 53226, United States.
Free Radic Biol Med. 2022 Feb 1;179:34-46. doi: 10.1016/j.freeradbiomed.2021.12.260. Epub 2021 Dec 17.
Peroxynitrite (ONOO) has been implicated in numerous pathologies associated with an inflammatory component, but its selective and sensitive detection in biological settings remains a challenge. Here, the development of a new water-soluble and cationic boronate probe based on a coumarin-imidazolium scaffold (CI-Bz-BA) for the fluorescent detection of ONOO in cells is reported. The chemical reactivity of the CI-Bz-BA probe toward selected oxidants known to react with the boronate moiety was characterized, and the suitability of the probe for the direct detection of ONOO in cell-free and cellular system is reported. Oxidation of the probe results in the formation of the primary hydroxybenzyl product (CI-Bz-OH), followed by the spontaneous elimination of the quinone methide moiety to produce the secondary phenol (CI-OH), which is accompanied by a red shift in the fluorescence emission band from 405 nm to 481 nm. CI-Bz-BA reacts with ONOO stoichiometrically with a rate constant of ∼1 × 10 Ms to form, in addition to the major phenolic product CI-OH, the minor nitrated product CI-Bz-NO, which is not formed by other oxidants tested or via myeloperoxidase-catalyzed oxidation/nitration. Both CI-OH and CI-Bz-NO products were also formed in the presence of cogenerated fluxes of nitric oxide and superoxide radical anion produced during decomposition of a SIN-1 donor. Using RAW 264.7 cells, we demonstrate the ability of the probe to report endogenously produced ONOOvia fluorescence measurements, including plate reader real time monitoring and two-photon fluorescence imaging. Liquid chromatography/mass spectrometry analyses of cell extracts and media confirmed the formation of both CI-OH and CI-Bz-NO in macrophages activated to produce ONOO. We propose the use of a combination of real-time monitoring of probe oxidation using fluorimetry and fluorescence microscopy with liquid chromatography/mass spectrometry-based product identification for rigorous detection and quantitative analyses of ONOO in biological systems.
过氧亚硝酸盐 (ONOO) 与许多与炎症成分相关的病理学有关,但在生物环境中对其进行选择性和敏感的检测仍然是一个挑战。在这里,报告了一种基于香豆素-咪唑鎓支架的新型水溶性和阳离子硼酸酯探针 (CI-Bz-BA) 的发展,用于细胞中 ONOO 的荧光检测。对探针与已知与硼酸酯部分反应的选定氧化剂的化学反应性进行了表征,并报告了探针在无细胞和细胞系统中直接检测 ONOO 的适用性。探针的氧化导致形成主要的羟基苄基产物 (CI-Bz-OH),然后醌甲亚胺部分自发消除生成仲酚 (CI-OH),这伴随着荧光发射带从 405nm 到 481nm 的红移。CI-Bz-BA 与 ONOO 以化学计量比反应,速率常数约为 1×10 Ms,形成除主要酚产物 CI-OH 外,还形成次要的硝化产物 CI-Bz-NO,这不是由其他测试氧化剂或髓过氧化物酶催化氧化/硝化形成的。在 SIN-1 供体分解过程中产生的一氧化氮和超氧自由基阴离子的共生成通量存在的情况下,也形成了 CI-OH 和 CI-Bz-NO 产物。使用 RAW 264.7 细胞,我们通过荧光测量证明了探针报告内源性产生的 ONOO 的能力,包括平板阅读器实时监测和双光子荧光成像。细胞提取物和培养基的液相色谱/质谱分析证实了在激活产生 ONOO 的巨噬细胞中形成了 CI-OH 和 CI-Bz-NO。我们建议使用荧光法实时监测探针氧化与基于液相色谱/质谱的产物鉴定相结合的荧光显微镜,用于在生物系统中严格检测和定量分析 ONOO。