Departamento de Química Inorgánica y Analítica, E.S.C.E.T., Universidad Rey Juan Carlos, Móstoles, Madrid, Spain.
Chirality. 2012 Oct;24(10):860-6. doi: 10.1002/chir.22084. Epub 2012 Jul 9.
A simple high performance liquid chromatography method HPLC-UV for simultaneous enantiomeric determination of propranolol, metoprolol, pindolol, and atenolol in natural water samples was developed and validated, using a molecularly imprinted polymer solid-phase extraction. To achieve this purpose, Lux(®) Cellulose-1/Sepapak-1 (cellulose tris-(3,5-dymethylphenylcarbamate)) (Phenomenex, Madrid, Spain) chiral stationary phase was used in gradient elution and normal phase mode at ambient temperature. The gradient elution program optimized consisted of a progressive change of the mobile phase polarity from n-hex/EtOH/DEA 90/10/0.5 (v/v/v) to 60/40/0.5 (v/v/v) in 13 min, delivered at a flow rate of 1.3 ml/min and a sudden change of flow rate to 2.3 ml/min in 1 min. Critical steps in any molecularly imprinted polymer extraction protocol such as the flow rate to load the water sample in the cartridges and the breakthrough volume were optimized to obtain the higher extraction recoveries for all compounds. In optimal conditions (100 ml breakthrough volume loaded at 2.0 ml/min), extraction recoveries for the four pairs of β-blockers were near 100%. The MIP-SPE-HPLC-UV method developed demonstrates good linearity (R(2) ≥ 0.99), precision, selectivity, and sensitivity. Method limit detection was 3.0 µg/l for propranolol and pindolol enantiomers and 20.0 and 22.0 µg/l for metoprolol and atenolol enantiomers, respectively. The proposed methodology should be suitable for routine control of these emerging pollutants in natural waters for a better understanding of the environmental impact and fate.
一种简单的高效液相色谱法(HPLC-UV),用于同时测定天然水样中普萘洛尔、美托洛尔、吲哚洛尔和阿替洛尔的对映异构体,该方法使用分子印迹聚合物固相萃取进行了开发和验证。为了实现这一目的,使用 Lux(®) Cellulose-1/Sepapak-1(纤维素三-(3,5-二甲苯基氨基甲酸酯))(Phenomenex,马德里,西班牙)手性固定相在环境温度下进行梯度洗脱和正相模式。优化的梯度洗脱程序由流动相极性从 n-己烷/乙醇/DEA90/10/0.5(v/v/v)到 60/40/0.5(v/v/v)的渐进变化组成,在 13 分钟内以 1.3ml/min 的流速输送,然后在 1 分钟内突然将流速改变为 2.3ml/min。分子印迹聚合物萃取方案中的关键步骤,例如以 2.0ml/min 的流速将水样加载到小柱中和穿透体积,进行了优化,以获得所有化合物的更高萃取回收率。在最佳条件下(以 2.0ml/min 的流速加载 100ml 穿透体积),四种β-受体阻滞剂的萃取回收率接近 100%。开发的 MIP-SPE-HPLC-UV 方法表现出良好的线性(R(2)≥0.99)、精密度、选择性和灵敏度。方法检出限分别为 3.0µg/l 用于普萘洛尔和吲哚洛尔对映体,20.0µg/l 和 22.0µg/l 用于美托洛尔和阿替洛尔对映体。所提出的方法应适用于天然水中这些新兴污染物的常规控制,以更好地了解其环境影响和命运。