Research Center Pharmaceutical Engineering (RCPE) GmbH, Graz, Austria.
MG2, Bologna, Italy.
Drug Dev Ind Pharm. 2023 Jul;49(7):448-455. doi: 10.1080/03639045.2023.2226213. Epub 2023 Jul 4.
To demonstrate the applicability of a novel micro-dosing system for precisely filling low powder doses (down to a few mg) into capsules along with weighing the filled powder mass accurately.
Ten commonly used pharmaceutical powders, ranging from cohesive to free-flowing, were selected and filled at three target fill weights (0.5, 1, and 10 mg), to investigate the effect of distinct powder properties on the filling performance. The fill weight and variability, filling speed and yield (% and number of conforming capsules out of all capsules collected), as well as the system's long-term performance were assessed.
The filling accuracy was found to be good for all investigated powders. In particular, the results demonstrate that the tested powders, including the challenging cohesive ones, could be dosed at standard deviations within 0.23 mg at a 10 mg target weight, within 0.07 mg at a 1 mg target weight, and within 0.05 mg at a 0.5 mg target weight. In all cases, free-flowing powders showed lower standard deviations. Intermediate and cohesive powders had slightly higher standard deviations but were still within an acceptable range.
The study shows the suitability of the tested micro-dosing system for filling low powder doses into capsules, which is of particular importance for dosing active pharmaceutical ingredients (APIs) directly in capsules, i.e. an API-in-capsule (AIC) approach for clinical trials (often in conjunction with highly potent APIs), and for low-dose powder filling for inhalation applications.
展示一种新型微剂量系统的适用性,该系统可精确地将低剂量粉末(低至几毫克)填充到胶囊中,并准确称量填充粉末的质量。
选择了十种常用的药用粉末,从粘性到自由流动,分别在三个目标填充重量(0.5、1 和 10mg)下进行填充,以研究不同粉末性质对填充性能的影响。评估了填充重量和变异性、填充速度和收率(%和所有收集的胶囊中符合要求的胶囊数量)以及系统的长期性能。
发现所有研究粉末的填充精度都很好。特别是,结果表明,包括具有挑战性的粘性粉末在内的测试粉末可以在 10mg 目标重量下以 0.23mg 的标准偏差进行定量,在 1mg 目标重量下以 0.07mg 的标准偏差进行定量,在 0.5mg 目标重量下以 0.05mg 的标准偏差进行定量。在所有情况下,自由流动的粉末显示出较低的标准偏差。中等粘性和粘性粉末的标准偏差略高,但仍在可接受范围内。
该研究表明,所测试的微剂量系统适用于将低剂量粉末填充到胶囊中,这对于直接在胶囊中对活性药物成分(API)进行定量,即临床试验中的 API 胶囊化(AIC)方法(通常与高活性 API 结合使用)以及用于吸入应用的低剂量粉末填充非常重要。