摘要
本文利用吡啶及其衍生物与过氧化氢的加热反应,建立了流动注射荧光分析法。吡啶及其衍生物在5~100ng范围内具有良好的线性关系(r=0.999).异烟肼、乙酰异烟肼和异烟酸在进样25ng时的相对标准偏差(n=10)平均为1.2%。异烟肼、乙酰异烟肼的检出限(S/N=3)为0.5ng,异烟酸的检出限为0.25ng.分析速度为30样/h。
A method for the fluorometric determination of pyridine and its derivatives has been developed by flow injection analysis using hydrogen peroxide at high temperature. The reaction system consists of two pumps to deliver reagent and carrier stream, sample injector, reaction coil (0.5 mm ID×15m, 150℃), cooling coil (0.5mm ID×3m, 30℃), and cooling coil (0.5mm ID×20cm, 0℃). The wavelengths of the fluorometric spectrophotometer were set at Ex 305~350 nm and Em 380~410 nm, the flow rate of each solution was 1.0 ml/min. The carrier stream was deionized water. The reaction solution containing 10 mmol/L hydrogen peroxide in 0.2 mol/L phosphate buffer (pH 6.0) gave the maximum fluorescence intensity for pyridine and its derivatives. Linear calibration curves were obtained from 5 ng up to 100 ng of pyridine and its derivatives. The coefficient of variations for 2.5 ng (n = 10) and 25 ng (n= I0) of isonicotinic acid, isoniazide and acetylisoniazide were 1.8% and 1.1%, 1.6% and 1.2%, 2.1% and 1.4%, respectively. The detection limit (S/N = 3 ) was 250 pg for isonicotinic acid, 500 pg for isoniazide, acetylisoniazide, nicotinamide, isonicotinamide, nicotinic acid, and 2.5 ng for pyridine, nicotine, 2- picoline, 2- picolinamide and picolinic acid. The carrier stream containing organic solvent (methanol, ethanol or acetonitrile)decreased the fluorescence intensity, but in the case of acetonitrile there was less decrease than methanol or ethanol. This method allowed the analysis of 30 samples/h.
出处
《药学学报》
CAS
CSCD
北大核心
1991年第12期928-932,共5页
Acta Pharmaceutica Sinica