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介绍阿尔巴®初级包装平台。第2部分:无机可提取物评估。

Introducing the Alba® Primary Packaging Platform. Part 2: Inorganic Extractables Evaluation.

作者信息

Chillon Alberto, Zuccato Daniele

机构信息

SGLab Advanced Technology, Nuova Ompi S.r.l., via Molinella 17, 35017 Piombino Dese (PD), Italy; and.

Scientific Research Management, Nuova Ompi S.r.l., via Molinella 17, 35017 Piombino Dese (PD), Italy.

出版信息

PDA J Pharm Sci Technol. 2019 May-Jun;73(3):235-246. doi: 10.5731/pdajpst.2018.009423. Epub 2019 Jan 16.

Abstract

Sensitivity of drugs to one or more elements of the primary packaging is a serious concern for the pharmaceutical industry. Biologics in particular are highly sensitive, leading to a higher risk of incompatibility and stability test failure as worst-case scenario.This potential incompatibility-and the consequent formulation instability due to the interactions between the drug and the primary container surface-may have multiple causes: the intrinsic nature of the container surface, leachables coming from the materials used, substances coming from the production process, or silicone oil droplets or other particles.The Alba primary packaging platform was designed to have the same interface between the drug and the glass container surface on the different primary packaging containers in order to minimize the emergence of instabilities at later stages of formulation development. Alba containers are internally treated with an innovative cross-linked coating based on silicone oil lubricant, and the additional rubber components have been selected to minimize the possible differences between the container typologies.This paper shows in great detail the reduction of the inorganic extractables released and the comparability of the performances of the different containers obtained using Alba technology.The improvement has been demonstrated by stressing the containers with different extract solutions; Alba-coated containers show a strong reduction of inorganic extractables and of corrosion degree compared to spray-on siliconized and bulk products. The containers included in the Alba platform present comparable results, and this represents a strong advantage during the drug formulation development by facilitating the transition from one container to another. The sensitivity of drugs to one or more elements of the primary packaging is a serious concern for the pharmaceutical industry. Biologics in particular are highly sensitive, leading to a higher risk of incompatibility and stability test failure worst-case scenario.This potential incompatibility-and the consequent formulation instability due to the interactions between the drug and the primary container surface-may have multiple causes: the intrinsic nature of the container surface, leachables coming from the materials used, substances coming from the production process, or silicone oil droplets or other particles.The Alba primary packaging platform was designed to minimize these problems associated with the interaction between the drug and its primary packaging. This paper shows in great detail and with robust data the inorganic extractables release reduction and the delamination risk mitigation obtained using the Alba technology.

摘要

药物对一级包装中一种或多种成分的敏感性是制药行业严重关切的问题。生物制品尤其敏感,在最坏的情况下,会导致更高的不相容风险和稳定性测试失败。这种潜在的不相容性以及由于药物与一级包装容器表面之间的相互作用而导致的制剂不稳定可能有多种原因:容器表面的固有性质、来自所用材料的可浸出物、来自生产过程的物质,或硅油滴或其他颗粒。Alba一级包装平台的设计目的是使不同一级包装容器上药物与玻璃容器表面之间具有相同的界面,以尽量减少制剂开发后期出现不稳定的情况。Alba容器内部采用基于硅油润滑剂的创新交联涂层进行处理,并且已选择了额外的橡胶组件以尽量减少不同容器类型之间可能存在的差异。本文详细展示了使用Alba技术后无机可浸出物释放量的减少以及不同容器性能的可比性。通过用不同的提取溶液对容器进行强化处理,已证明了这种改进;与喷涂硅化产品和散装产品相比,Alba涂层容器的无机可浸出物和腐蚀程度大幅降低。Alba平台中的容器呈现出可比的结果,这在药物制剂开发过程中通过促进从一种容器向另一种容器的转换体现出强大优势。药物对一级包装中一种或多种成分的敏感性是制药行业严重关切的问题。生物制品尤其敏感,在最坏的情况下,会导致更高的不相容风险和稳定性测试失败。这种潜在的不相容性以及由于药物与一级包装容器表面之间的相互作用而导致的制剂不稳定可能有多种原因:容器表面的固有性质、来自所用材料的可浸出物、来自生产过程的物质,或硅油滴或其他颗粒。Alba一级包装平台旨在最大限度地减少与药物及其一级包装之间相互作用相关的这些问题。本文通过详细且有力的数据展示了使用Alba技术实现的无机可浸出物释放减少以及分层风险降低。

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