Aprile Silvio, Canavesi Rossana, Bianchi Michele, Grosa Giorgio, Del Grosso Erika
Department of Pharmaceutical Sciences and Drug and Food Biotechnology Center, Università del Piemonte Orientale, Largo Donegani 2, 28100 Novara, Italy.
Department of Pharmaceutical Sciences and Drug and Food Biotechnology Center, Università del Piemonte Orientale, Largo Donegani 2, 28100 Novara, Italy.
J Pharm Biomed Anal. 2017 Jan 5;132:66-71. doi: 10.1016/j.jpba.2016.09.037. Epub 2016 Sep 26.
A stability indicating high performance liquid chromatography method has been developed for the determination of thiocolchicoside (TCC) and its main degradation products thiocolchicoside S-oxide (D1SO) and 3-O-demethylthiocolchicine (D3) in liquid and solid formulations. The method was developed based on a previous forced degradation study showing that TCC underwent chemical degradation by acid/base catalyzed hydrolysis and oxidation being the main degradation products D3 and D1SO respectively. The analytes separation and quantification were achieved on a Synergi™ 4μm Polar-RP 80Å, column 150×4.6mm (Phenomenex) using the mobile phase constituted (flow rate 1mLmin) of eluant A: 20mM sodium acetate buffer (pH 5.0) and eluant B: MeOH:CHCN (20:80); the elution was performed in gradient mode detecting the analytes at 254nm. The method showed linearity for TCC assay in the 5-15μgmL, range and for unknown (TCC) and known (D1SO and D3) degradation products assay, in the 0.5-10μgmL range: all the square of the correlation coefficients were greater than 0.999. The precision, determined in terms of intra-day and inter-day were expressed as RSDs and resulted to be 1.19, 1.10, 1.37 and 1.04% and 0.95, 0.83, 1.30 and 0.72 for TCC, TCC, D1SO and D3, respectively. The method demonstrated also to be accurate; indeed, the average recoveries were 102.1/102.0% for TCC (ampoules and hard capsules respectively), 101.3/100.3% for TCC, 101.7/100.2% for D1SO, and 101.4/101.4% for D3. The robustness was also evaluated by variations of mobile phase composition and pH. Finally, the applicability of the method was evaluated by analysis of commercial liquid and solid dosage forms.
已开发出一种稳定性指示高效液相色谱法,用于测定液体制剂和固体制剂中的硫代秋水仙苷(TCC)及其主要降解产物硫代秋水仙苷S-氧化物(D1SO)和3-O-去甲基硫代秋水仙碱(D3)。该方法是基于先前的强制降解研究开发的,该研究表明TCC通过酸/碱催化水解进行化学降解,氧化分别是主要降解产物D3和D1SO。使用由洗脱液A:20mM醋酸钠缓冲液(pH 5.0)和洗脱液B:甲醇:乙腈(20:80)组成的流动相(流速1mL/min),在Synergi™ 4μm Polar-RP 80Å、150×4.6mm柱(菲罗门公司)上实现分析物的分离和定量;洗脱以梯度模式进行,在254nm处检测分析物。该方法在5-15μg/mL范围内对TCC测定呈线性,在0.5-10μg/mL范围内对未知(TCC)和已知(D1SO和D3)降解产物测定呈线性:所有相关系数的平方均大于0.999。以日内和日间测定的精密度表示为相对标准偏差(RSD),TCC、TCC、D1SO和D3的RSD分别为1.19%、1.10%、1.37%和1.04%以及0.95%、0.83%、1.30%和0.72%。该方法也证明是准确的;实际上,TCC(安瓿剂和硬胶囊剂)的平均回收率分别为102.1%/102.0%,TCC为101.3%/100.3%,D1SO为101.7%/100.2%,D3为101.4%/101.4%。还通过流动相组成和pH值的变化评估了方法的稳健性。最后,通过分析市售液体制剂和固体制剂评估了该方法的适用性。