Zhang Chi, Zhang Tao, Oyler Nathan A, Youan Bi-Botti C
Department of Chemistry, University of Missouri-Kansas City, Kansas City, Missouri 64110.
Laboratory of Future Nanomedicines and Theoretical Chronopharmaceutics, Division of Pharmaceutical Science, University of Missouri-Kansas City, Kansas City, Missouri 64108.
J Pharm Sci. 2014 Apr;103(4):1170-1177. doi: 10.1002/jps.23886.
In vitro drug release evaluation is a very important step toward the quality control of nano- or micro-particular drug delivery systems. However, most quantitative techniques such as high-performance liquid chromatography requires a dialysis membrane to separate the released free drug from these delivery systems, thus are not capable of direct detection and real-time quantification of the drug release kinetics. This study describes, for the first time, a rapid, specific, and direct method for the real-time quantification of in vitro tenofovir (TNF) release from pH-sensitive microparticles using a Varian 400 MHz (1)H nuclear magnetic resonance ((1)H-NMR) spectrometer. Various analytical performance parameters such as linearity, precision, accuracy, limit of quantification, limit of detection, and robustness were validated according to International Conference on Harmonization (ICH) guidelines. The in vitro release of TNF from microparticles in both simulated vaginal fluid (VFS) and the mixture of VFS and simulated semen fluid was monitored and quantified in real time using (1)H-NMR. The capability of real-time quantification of in vitro drug release from microparticles not only provides a more accurate prediction of its biological behavior in vivo, but is also independent of potential interference from the dialysis membrane.
体外药物释放评估是纳米或微粒药物递送系统质量控制的非常重要的一步。然而,大多数定量技术,如高效液相色谱法,需要透析膜将释放的游离药物与这些递送系统分离,因此无法直接检测和实时定量药物释放动力学。本研究首次描述了一种使用瓦里安400 MHz氢核磁共振(¹H-NMR)光谱仪实时定量体外替诺福韦(TNF)从pH敏感微粒中释放的快速、特异且直接的方法。根据国际协调会议(ICH)指南验证了各种分析性能参数,如线性、精密度、准确度、定量限、检测限和稳健性。使用¹H-NMR实时监测和定量了TNF在模拟阴道液(VFS)以及VFS与模拟精液液混合物中从微粒的体外释放。微粒体外药物释放的实时定量能力不仅能更准确地预测其体内生物学行为,而且不受透析膜潜在干扰的影响。