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药物配方对预充注射器功能和自动注射器性能的影响。

Drug Formulation Impact on Prefilled Syringe Functionality and Autoinjector Performance.

机构信息

West Pharmaceutical Services, Inc.; 530 Herman O. West Drive, Exton, PA 19341; and.

Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, IN 46265

出版信息

PDA J Pharm Sci Technol. 2020 Nov-Dec;74(6):674-687. doi: 10.5731/pdajpst.2020.011627. Epub 2020 Aug 14.

Abstract

Given the surging interest in developing prefilled syringe and autoinjector combination products, investment in an early compatibility assessment is critical to prevent unwarranted drug/container closure interactions and avoid potential reformulation during late stages of drug development. In addition to the standard evaluation of drug stability, it is important to consider container closure functionality and overall device performance changes over time because of drug-container closure component interaction. This study elucidated the mechanisms that cause changes in syringe glide force over time and the impact on the injection duration. It was an expansion of the previous work, which indicated that drug formulation variables such as formulation excipients and pH affect syringe functionality over time. The current study described an investigative process for troubleshooting prolonged and variable autoinjector injection time caused by an increased syringe glide force variability over time. This increase in glide force variability stems from two root causes, namely plunger dimensional variation and syringe silicone oil change over time. The results demonstrated (a) the underlying factors of silicone oil change in the presence of drug formulation matrices, (b) accelerated stability of syringe glide force as a good indicator of long-term, real-time stability, and (c) that buffer matrix-filled syringes can be used to predict the syringe functionality and stability of drug product-filled syringes. Based on the experimental findings of a variety of orthogonal characterization techniques including contact angle, interfacial tension, and calculation of Hansen solubility parameters, it is proposed that silicone oil change is caused by formulation excipients and a complex set of phenomena summarized as "wet, wash, and delube" processes.

摘要

鉴于人们对开发预装注射器和自动注射器组合产品的兴趣日益浓厚,早期进行相容性评估的投资至关重要,这可以防止不必要的药物/容器密封件相互作用,并避免在药物开发的后期阶段进行潜在的重新配方。除了对药物稳定性进行标准评估外,还必须考虑容器密封件的功能和随着时间的推移整体设备性能的变化,因为药物与容器密封件组件的相互作用。本研究阐明了导致注射器滑动力随时间变化的机制,以及对注射持续时间的影响。这是对先前工作的扩展,先前的工作表明药物制剂变量(如制剂赋形剂和 pH 值)会随时间影响注射器的功能。本研究描述了一种故障排除过程,用于解决由于注射器滑动力随时间变化的可变性增加而导致的自动注射器注射时间延长和变化的问题。这种滑动力可变性增加的两个根本原因是柱塞尺寸变化和注射器硅油随时间变化。结果表明:(a) 存在药物制剂基质时硅油变化的根本原因;(b) 注射器滑动力加速稳定性是长期实时稳定性的良好指标;(c) 缓冲基质填充注射器可用于预测药物产品填充注射器的注射器功能和稳定性。基于包括接触角、界面张力和 Hansen 溶解度参数计算在内的多种正交特征描述技术的实验结果,提出硅油变化是由制剂赋形剂和一系列复杂现象引起的,这些现象可以概括为“湿、洗、润滑”过程。

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