深度冷藏条件下预填充注射器的功能和物理性能评估。

Q3 Medicine PDA Journal of Pharmaceutical Science and Technology Pub Date : 2023-07-01 Epub Date: 2023-04-21 DOI:10.5731/pdajpst.2022.012746
Eloise Perrin, Nestor Rodriguez, Kylie E Van Meter, Guillaume Lehee, Brandon A Krick, Erwan Chabert
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引用次数: 1

摘要

最近出现的新药物技术,如为抗击新冠肺炎全球大流行而开发的信使核糖核酸疫苗,推动了对能够承受低温至-50°C甚至-80°C的深层冷藏条件的递送解决方案的需求增加。尽管有大量关于小瓶深度冷藏的数据,但几乎没有证据表明预填充注射器。由于预填充注射器既是储存容器又是输送机构,因此必须评估性能的额外风险,如柱塞滑动性能、注射器润滑、硅树脂层稳定性和容器闭合完整性(CCI)。在本研究中,在环境温度和各种温度循环(包括-40°C、-50°C或-80°C)之间的一个或多个冷冻/解冻(F/T)循环后,对预充注射器(注水PFS)的功能和物理性能进行了全面评估,其中包括“桩针”和“路厄锁”配置。实验以ISO 11040-4和USP等历史规范方法为指导,并结合顶部空间气体分析进行桶塞密封性测试。此外,他们还补充了一种新的方法,即现场实时光学成像,以跟踪F/T循环期间柱塞止动器的运动。研究结果表明,从F/T降至-80°C对功能性能没有显著影响,而在F/T降至-50°C后没有发现CCI风险。
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Assessment of Functional and Physical Performances of Pre-filled Syringes in Deep Cold Storage Conditions.

The recent emergence of new drug technologies such as messenger ribonucleic acid-based vaccines developed to fight the outbreak of the COVID-19 global pandemic has driven increased demand for delivery solutions capable of withstanding deep cold storage conditions down to -50°C, and even down to -80°C. Although significant data exist for deep cold storage in vials, little evidence is available for pre-filled syringes. Because pre-filled syringes serve as both the storage container and the delivery mechanism, there are additional risks to performance that must be evaluated, such as plunger gliding performance, syringe lubrication, silicone layer stability, and container closure integrity (CCI). In the present study, a comprehensive assessment of functional and physical performances of pre-filled syringes (PFS filled with water) was performed after one or multiple freeze/thaw (F/T) cycles between ambient temperature and various temperature cycles including -40°C, -50°C or -80°C for both 'staked needle' and 'luer lock' configurations. The experiments were guided by historical normative methods such as ISO 11040-4 and USP <1207> and combined with headspace gas analysis for barrel-stopper tightness testing. In addition, they were complemented with a novel approach, namely in situ real-time optical imagery, to track plunger stopper movement during the F/T cycle. The findings indicated that there is no significant impact on the functional performances from F/T down to -80°C, whereas no CCI risk was found after F/T down to -50°C.

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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
34
期刊最新文献
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