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片剂压缩力作为过程分析技术(PAT):片剂重量均匀度的 100%检查和控制。

Tablet Compression Force as a Process Analytical Technology (PAT): 100% Inspection and Control of Tablet Weight Uniformity.

机构信息

Product and Analytical Development, Small Molecule Design and Development, Eli Lilly and Company, Indianapolis, Indiana 46285.

Product and Analytical Development, Small Molecule Design and Development, Eli Lilly and Company, Indianapolis, Indiana 46285.

出版信息

J Pharm Sci. 2019 Jan;108(1):485-493. doi: 10.1016/j.xphs.2018.07.004. Epub 2018 Sep 6.

Abstract

The modern rotary pharmaceutical tablet press is capable of accepting or rejecting individual tablets based on the measured compression force of the tablet. Because during steady operation, each tablet is compressed to the same thickness, a larger compression force implies a heavier tablet. Tablets that are too heavy likely contain more than the desired content of drug substance. The measured compression force thus becomes an important input to the overall control strategy, and variability in the compression force from one tablet to the next corresponds directly with the uniformity of dosage units. This provides an extraordinary opportunity to use the instantaneous compression force signal as a process analytical technology to make product collection decisions on every individual tablet. Only 1 question requires investigation: how to set the main compression force limits to achieve the desired tablet weights? In this work, a small-scale characterization method and associated mathematical model are developed to answer this question.

摘要

现代旋转式制药压片机能够根据片剂的测量压缩力接受或拒绝单个片剂。因为在稳定运行期间,每个片剂都被压缩到相同的厚度,所以较大的压缩力意味着片剂较重。较重的片剂可能含有超过所需药物含量的药物。因此,测量的压缩力成为整体控制策略的重要输入,并且片剂之间的压缩力变化与剂量单位的均匀性直接对应。这为使用瞬时压缩力信号作为过程分析技术提供了极好的机会,以便对每个单独的片剂做出产品收集决策。只有 1 个问题需要调查:如何设置主压缩力限制以达到所需的片剂重量?在这项工作中,开发了一种小规模的特征描述方法和相关的数学模型来回答这个问题。

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