Rashan Joseph, Chen Raymond
Analytical R/D, Pharmaceutical Sciences, Pfizer Global Research and Development, Groton Laboratories, Groton, CT 06340, USA.
J Pharm Biomed Anal. 2007 May 9;44(1):23-8. doi: 10.1016/j.jpba.2007.01.015. Epub 2007 Jan 16.
Liquid chromatography combined with evaporative light scattering detection is a powerful tool for analyzing polymeric excipients used in pharmaceutical formulations. A versatile, gradient elution liquid chromatographic method utilizing evaporative light scattering detection (ELSD) has been developed for analyzing several types of cellulose ether and ester derivatives in pharmaceutical formulations. This single method was proven to be capable of differentiating six types of cellulose ether and ester derivatives. The influence of ELSD instrument parameters on the detector response and sensitivity has been studied by a statistical design of experiments. It was found that lowering gas flow rate increased peak area response significantly. Increasing nebulizer temperature also increased peak area response. In contrast, evaporator temperature has very minor impact on peak area response, but had a significant impact on noise level. Thus, signal to noise ratio was significantly lower for low evaporator temperature setting. Despite the logarithmic relationship between peak area responses versus concentrations, sufficient selectivity, precision and accuracy were achieved. The method has been validated for assaying hypromellose acetate succinate (HPMCAS) polymer in a pharmaceutical formulation.
液相色谱结合蒸发光散射检测是分析药物制剂中使用的聚合物辅料的有力工具。已开发出一种通用的梯度洗脱液相色谱方法,利用蒸发光散射检测(ELSD)来分析药物制剂中的几种纤维素醚和酯衍生物。事实证明,这种单一方法能够区分六种纤维素醚和酯衍生物。通过实验的统计设计研究了ELSD仪器参数对检测器响应和灵敏度的影响。发现降低气体流速会显著增加峰面积响应。提高雾化器温度也会增加峰面积响应。相比之下,蒸发器温度对峰面积响应的影响非常小,但对噪声水平有显著影响。因此,低蒸发器温度设置下的信噪比显著较低。尽管峰面积响应与浓度之间存在对数关系,但仍实现了足够的选择性、精密度和准确度。该方法已被验证用于测定药物制剂中的醋酸羟丙甲纤维素琥珀酸酯(HPMCAS)聚合物。