Suppr超能文献

开发一种在线拉曼光谱方法,用于在双螺杆湿法造粒过程中连续定量分析 API。

Development of an in-line Raman spectroscopic method for continuous API quantification during twin-screw wet granulation.

机构信息

Institute of Pharmaceutics and Biopharmaceutics, Heinrich Heine University, Universitaetstrasse1, 40225 Duesseldorf, Germany.

Institute of Pharmaceutics and Biopharmaceutics, Heinrich Heine University, Universitaetstrasse1, 40225 Duesseldorf, Germany.

出版信息

Eur J Pharm Biopharm. 2018 Apr;125:169-181. doi: 10.1016/j.ejpb.2018.01.015. Epub 2018 Feb 3.

Abstract

Raman spectroscopy was evaluated as a process analytical technology (PAT) tool for continuous API quantification during twin-screw wet granulation. Therefore, a Raman probe was implemented in front of the granulator barrel. This setup enabled the collection of Raman spectra upon a constant granule flow. To develop an in-line PLS calibration model, eight binary mixtures of the API and lactose monohydrate with API contents between 5 and 50% were pre-blended and granulated in a twin-screw granulator with a screw speed of 150 rpm and a powder feed rate of 40 g/min. Water was used as a granulation liquid with different liquid to solid ratios depending on the API content. Ibuprofen and diclofenac sodium were chosen as model drugs and separated PLS models were built for each API. The predictive performance of the developed PLS models was determined by granulating and monitoring new test samples containing different API concentrations. This evaluation showed that the models were able to predict the API concentration with an RMSEP of 0.59% for ibuprofen and 1.5% for diclofenac sodium. In a second part, the developed in-line Raman spectroscopic method was used to determine the API concentration during a split feeding process. Therefore, the API and lactose monohydrate were added by two independently adjustable feeders into the twin-screw granulator barrel. The in-line spectroscopy analysis which was verified by UV-analysis indicated that the mixing ability of the twin-screw granulator was good for the used settings and all adjusted API concentrations.

摘要

拉曼光谱被评估为一种过程分析技术(PAT)工具,可用于在双螺杆湿法造粒过程中连续定量 API。因此,在造粒机桶前安装了拉曼探头。这种设置使得能够在恒定的颗粒流中采集拉曼光谱。为了开发在线 PLS 校准模型,将 API 和乳糖一水合物的 8 种二元混合物预先混合,并在螺杆速度为 150rpm、粉末进料速度为 40g/min 的双螺杆造粒机中造粒。根据 API 含量的不同,水被用作造粒液体,其液固比也不同。布洛芬和双氯芬酸钠被选为模型药物,并为每种 API 分别建立了分离的 PLS 模型。通过造粒和监测含有不同 API 浓度的新测试样品,确定了所开发 PLS 模型的预测性能。该评估表明,这些模型能够以 0.59%的 RMSEP 预测布洛芬的 API 浓度和 1.5%的双氯芬酸钠的 API 浓度。在第二部分中,开发的在线拉曼光谱方法用于在分段进料过程中确定 API 浓度。因此,API 和乳糖一水合物通过两个独立可调的进料器添加到双螺杆造粒机桶中。通过在线光谱分析(由 UV 分析验证)表明,对于所使用的设置和所有调整的 API 浓度,双螺杆造粒机的混合能力良好。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验