模拟单层和多层聚烯烃薄膜中可萃取物的迁移行为,以数学方法预测制药产品中可浸出杂质的浓度。第 2 部分:保守扩散和分配系数测定。

Peter V Mercea, Manfred Ossberger, Regina Wyrwich, Matthias Herburger, Vishal Barge, Rajendra Aluri, Valer Toşa
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引用次数: 0

摘要

在药品包装的开发过程中,一个重要的步骤是证明在药品的保质期和治疗使用期间,从包装材料迁移到药品中的可浸出杂质的可接受水平。在已知扩散系数和分配系数的情况下,理论建模是预测包装药品中可浸出杂质含量的一种可靠、快速且经济有效的方法。上一部分介绍了如何通过实验确定这些参数,随后对一系列聚烯烃材料中的低分子量和高分子量有机化合物(已知可浸出物)进行了理论拟合。对这些结果的解释之一是,只有通过实验确定了扩散/分配/溶解系数并实现了理论拟合的有机化合物和材料,才能进行理论计算。但在实际操作中,可能会出现需要对其他可浸出化合物进行研究的情况。在这种情况下,严格来说,有必要对新化合物进行整个实验和拟合过程,然后才能建立适当的 理论模型。但这样一来,对药品包装材料的浸出过程进行理论计算就会变得繁琐且成本高昂。为了解决这个问题,我们利用扩散系数和分配系数池开发了一种方法,无需额外实验,即可估算出聚烯烃药品包装材料和水溶液中更广泛的潜在沥滤物的所谓 "保守 "扩散系数和分配系数。
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Modeling the Migration Behavior of Extractables from Mono- and Multilayer Polyolefin Films to Mathematically Predict the Concentration of Leachable Impurities in Pharmaceutical Drug Products. Part 2: Conservative Diffusion and Partition Coefficient Determinations.

In the development of a pharmaceutical drug product packaging, an important step is to demonstrate acceptable levels of leachable impurities migrating from the packaging material into the drug product during its shelf life and therapeutic use. Such migration processes can be quantified either by analytical methods (which is often challenging and labor intensive) or (in many cases) through theoretical modeling, which is a reliable, quick, and cost-effective method to forecast the level of leachable impurities in the packaged drug when the diffusion and partition coefficients are known. In the previous part, it was shown how these parameters can be determined experimentally, and subsequent theoretical fitting of the results for a series of low- and high-molecular-weight organic compounds (known leachables) in a series of polyolefin materials was performed. One of the interpretations of these results is that a theoretical calculation can be made only for organic compounds and materials whose diffusion/partition/solubility coefficients were determined experimentally and theoretical fitting was achieved. However, in practice, there will be situations in which other leachable compounds may have to be investigated. In such cases, strictly speaking, it would be necessary to perform the whole experimental and fitting procedure for the new compound before a proper theoretical modeling is possible. But this would make the theoretical calculation of a leaching process from a pharmaceutical packaging material a cumbersome and cost intensive procedure. To address this problem, the pools of diffusion and partition coefficients were used to develop an approach that allows the estimation, without any additional experimentation, of so-called "conservative" diffusion and partition coefficients for a much wider range of potential leachables in the polyolefin pharmaceutical packaging materials and aqueous solutions investigated previously.

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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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