Cañabate Díaz B, Cruces Blanco C, Segura Carretero A, Fernández Gutiérrez A
Department of Analytical Chemistry, Faculty of Sciences, University of Granada, C/Fuentenueva s/n, E-18071, Granada, Spain.
J Pharm Biomed Anal. 2002 Nov 7;30(4):987-92. doi: 10.1016/s0731-7085(02)00449-1.
The applicability of heavy atom induced room temperature phosphorescence in real samples is demonstrated in this work. In this methodology only two reagents, potassium iodide as heavy atom salt and sodium sulphite as oxygen scavenger, were used to obtain phosphorescent signal of propranolol in solution. Thus a new simple, rapid and selective phosphorimetric method is proposed for propranolol determination in pharmaceutical preparations. The phosphorescence intensity was measured at 492 nm exciting at 294 nm. Phosphorescence was fully developed instantly, obtaining a linear concentration range between 0 and 500 ng ml(-1) with a detection limit of 14.4 ng ml(-1), an analytical sensitivity of 6.7 ng ml(-1) and a standard deviation of 1.4% at a 300 ng ml(-1) concentration level. The method has been successfully applied to the analysis of propranolol in an antidepressive pharmaceutical preparation and it was validated using standard addition methodology.
本工作证明了重原子诱导室温磷光在实际样品中的适用性。在该方法中,仅使用两种试剂,即碘化钾作为重原子盐和亚硫酸钠作为除氧剂,来获得溶液中普萘洛尔的磷光信号。因此,提出了一种用于测定药物制剂中普萘洛尔的新的简单、快速且选择性的磷光分析法。在294nm激发波长下,于492nm处测量磷光强度。磷光可立即充分显现,得到0至500 ng ml⁻¹的线性浓度范围,检测限为14.4 ng ml⁻¹,分析灵敏度为6.7 ng ml⁻¹,在300 ng ml⁻¹浓度水平下的标准偏差为1.4%。该方法已成功应用于一种抗抑郁药物制剂中普萘洛尔的分析,并采用标准加入法进行了验证。