New Product Introduction, Global Manufacturing and Supply, GlaxoSmithKline, Harmire Road, Barnard Castle DL12 8DT, UK.
Biopharmaceutical Product Sciences, GlaxoSmithKline, 1250 S Collegeville Road, Collegeville, Pennsylvania 19425.
J Pharm Sci. 2019 Mar;108(3):1130-1138. doi: 10.1016/j.xphs.2018.10.031. Epub 2018 Oct 29.
This article summarizes experimental, theoretical, and computational assessments performed to understand the effect of filling and suck-back cycle factors on fluid behaviors that increase the propensity for filling needle clogging. Product drying under ambient conditions decreased considerably when the liquid front was altered from a droplet or meniscus at the needle tip to a point approximately 5 mm inside the needle. Minimizing the variation in size of product droplet formed after the fill cycle is critical to achieve a uniform meniscus height after the suck-back cycle. Several factors were found to contribute to droplet size variability, including filling and suck-back pump speed, suck-back volume, and product temperature. Filling trials and the computational fluid dynamics simulations showed that product meniscus stability during the suck-back cycle can be improved by reducing the suck-back flow rate. The computational fluid dynamics simulations also showed that a decrease in contact angle had the greatest effect in reducing meniscus stability. As the number of filling line stoppages increases, the product buildup at the needle increases. The interaction between stoppages and the number of dispenses between stoppages was established to minimize product buildup at the filling needle. Improved suck-back control was shown to improve process capability of large-scale batches.
本文总结了为理解填充和回吸循环因素对增加填充针堵塞倾向的流体行为的影响而进行的实验、理论和计算评估。当液体前缘从针尖处的液滴或弯月面变为大约 5 毫米内的针尖时,产品在环境条件下的干燥程度大大降低。在填充循环之后形成的产品液滴的尺寸变化最小化对于在回吸循环之后实现均匀的弯月面高度至关重要。发现有几个因素会导致液滴尺寸的变化,包括填充和回吸泵的速度、回吸体积和产品温度。填充试验和计算流体动力学模拟表明,通过降低回吸流速可以提高回吸循环期间产品弯月面的稳定性。计算流体动力学模拟还表明,接触角的减小对降低弯月面稳定性的影响最大。随着填充线停止次数的增加,针上的产品堆积增加。建立了停止次数之间的相互作用和分配次数之间的相互作用,以将填充针上的产品堆积最小化。改进的回吸控制被证明可以提高大规模批次的过程能力。