Research Center Pharmaceutical Engineering GmbH, 8010 Graz, Austria.
Department of Health Studies-Biomedical Science, FH JOANNEUM, 8020 Graz, Austria.
Molecules. 2021 Oct 31;26(21):6597. doi: 10.3390/molecules26216597.
A novel and efficient stability-indicating, reverse phase ultra-performance liquid chromatographic (UPLC) analytical method was developed and validated for the determination of hexoprenaline in an injectable dosage form. The development of the method was performed using analytical quality by design (AQbD) principles, which are aligned with the future requirements from the regulatory agencies using AQbD principles. The method was developed by assessing the impact of ion pairing, the chromatographic column, pH and gradient elution. The development was achieved with a Waters Acquity HSS T3 (50 × 2.1 mm i.d., 1.8 µm) column at ambient temperature, using sodium dihydrogen phosphate 5 mM + octane-1-sulphonic acid sodium salt 10 mM buffer pH 3.0 (Solution A) and acetonitrile (Solution B) as mobile phases in gradient elution (t = 0 min, 5% B; t = 1 min, 5% B; t = 5 min, 50% B; t = 7 min, 5% B; t = 10 min, 5% B) at a flow rate of 0.5 mL/min and UV detection of 280 nm. The linearity was proven for hexoprenaline over a concentration range of 3.50-6.50 µg/mL (R = 0.9998). Forced degradation studies were performed by subjecting the samples to hydrolytic (acid and base), oxidative, and thermal stress conditions. Standard solution stability was also performed. The proposed validated method was successfully used for the quantitative analysis of bulk, stability and injectable dosage form samples of the desired drug product. Using the AQbD principles, it is possible to generate methodologies with enhanced knowledge, which can eventually lead to a reduced regulatory risk, high quality data and lower operational costs.
开发并验证了一种新颖且高效的反相超高效液相色谱(UPLC)分析方法,用于测定注射剂中盐酸克伦特罗的含量。该方法的开发采用分析质量源于设计(AQbD)原理,符合监管机构未来采用 AQbD 原理的要求。通过评估离子对、色谱柱、pH 值和梯度洗脱对方法的影响来开发方法。在环境温度下,使用 Waters Acquity HSS T3(50×2.1mm i.d.,1.8μm)柱,以 5mM 磷酸二氢钠+10mM 辛烷-1-磺酸钠盐缓冲液 pH 3.0(溶液 A)和乙腈(溶液 B)为流动相,在梯度洗脱(t=0min,5%B;t=1min,5%B;t=5min,50%B;t=7min,5%B;t=10min,5%B)下,以 0.5mL/min 的流速和 280nm 的紫外检测进行分离。在 3.50-6.50μg/mL 的浓度范围内,盐酸克伦特罗的线性关系良好(R=0.9998)。通过对样品进行水解(酸和碱)、氧化和热应激条件的强制降解研究来证明方法的耐用性。还进行了标准溶液稳定性研究。所提出的验证方法成功用于原料药、稳定性和注射剂样品的定量分析。采用 AQbD 原理,可以生成具有增强知识的方法,最终可以降低监管风险、提高数据质量和降低运营成本。