Department of Basic Sciences, Sari Agricultural Sciences and Natural Resources University, P.O.Box 578, Sari, Iran.
Department of Basic Sciences, Sari Agricultural Sciences and Natural Resources University, P.O.Box 578, Sari, Iran.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 May 5;292:122367. doi: 10.1016/j.saa.2023.122367. Epub 2023 Jan 13.
Peroxyoxalate chemiluminescence (POCL) systems have received great attention due to their high quantum yield and the ability to emit a wide-range colors by the utilizing different fluorophores. In this research, Pyronin Y (PY) was first introduced as the fluorophore for a POCL system. Our results indicated that the reaction of (2, 4-dinitroophenyl) oxalate (DNPO) with hydrogen peroxide (HO) catalyzed by sodium salicylate (SS) could transfer energy to Pyronin Y via the formation of the dioxetanedione intermediate and emit orange-red light. The relationships between chemiluminescence (CL) intensity and the concentrations of DNPO, fluorophore, HO, and the catalyst were investigated. Moreover, the analytical utilization of the new CL system was evaluated by detecting a drug, cysteamine, in pharmaceuticals. A linear working range for cysteamine concentrations from 3 × 10 to 7.5 × 10 molL (r > 0.9907, n = 5) and a detection limit of 7.8 × 10 molL were obtained, respectively. The relative standard deviation for five repetitive determinations was less than 3.8 %, with estimated recoveries of 100.1 % and 103.4 %. This method shows high sensitivity for the assay of cysteamine.
过氧草酸盐化学发光(POCL)体系因其高量子产率和利用不同荧光团发射宽范围颜色的能力而受到广泛关注。在这项研究中,吡罗红 Y(PY)首次被引入作为 POCL 体系的荧光团。我们的结果表明,(2,4-二硝基苯基)草酸盐(DNPO)与过氧化氢(HO)在水杨酸钠(SS)的催化下反应,通过形成二噁烷二酮中间体,可以将能量传递给吡罗红 Y,并发出橙红色光。研究了化学发光(CL)强度与 DNPO、荧光团、HO 和催化剂浓度之间的关系。此外,还通过检测药物半胱胺来评估新 CL 系统的分析应用。分别得到了半胱胺浓度为 3×10 至 7.5×10 molL(r>0.9907,n=5)的线性工作范围和 7.8×10 molL 的检测限。五次重复测定的相对标准偏差小于 3.8%,估计回收率分别为 100.1%和 103.4%。该方法对半胱胺的测定具有很高的灵敏度。