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Ion Beam Analysis and PD-MS As New Analytical Tools for Quality Control of Pharmaceuticals: Comparative Study from Fluphenazine in Solid Dosage Forms

机译:离子束分析和PD-MS作为药物质量控制的新分析工具:来自氟苯哌嗪固体剂型的比较研究

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In order to evaluate the potential of accelerator based analytical techniques ((particle induced X-ray emission (PIXE), particle induced gamma-ray emission (PIGE), and particle desorption mass spectrometry (PD-MS)) for the analysis of commercial pharmaceutical products in their solid dosage form, the fluphenazine drug has been taken as a representative example. It is demonstrated that PIXE and PIGE are by far the best choice for quantification of the active ingredient (AI) (certification with 7percent precision) from the reactions induced on its specific heteroatoms fluorine and sulfur using pellets made from original tablets. Since heteroatoms cannot be present in all types of drugs, the PD-MS technique, which makes easily the distinction between AI(s) and excipients, has been evaluated for the same material. It is shown that the quantification of AI is obtained via the detection of its protonated molecule. However, calibration curves have to be made from the secondary ion yield variations since matrix effects of various nature are characteristics of such mixtures of heterogeneous materials (including deposits from soluble components). From the analysis of solid tablets, (either transformed into pellets and even as received), it is strongly suggested that the physical state of the grains in the mixture is a crucial parameter in the ion emission and accordingly for the calibration curves. As a result of our specific (but not optimized) conditions the resulting precision is <17percent with an almost linear range extending from 0.04 to 7.87 mg of AI in a tablet made under the manufacturer conditions (the commercial drug product is labeled at 5 mg).
机译:为了评估基于促进剂的分析技术((颗粒诱导的X射线发射(PIXE),颗粒诱导的伽马射线发射(PIGE)和颗粒解吸质谱(PD-MS))的潜力,用于分析商业药物产品以固体剂型为代表,以氟奋乃静药物为代表的例子表明,PIXE和PIGE是迄今为止从反应中定量分析活性成分(AI)(精度为7%的认证)的最佳选择使用原始片剂制成的小球,可以检测其特定的杂原子氟和硫,由于杂原子不能存在于所有类型的药物中,因此对PD-MS技术进行了评估,该技术可轻松区分AI和赋形剂结果表明,AI的定量是通过检测其质子化分子而获得的,但是,必须根据次级离子的收率变化来绘制校准曲线。由于各种性质的基质效应是这种异质材料混合物(包括可溶成分的沉积物)的特征。从对固体片剂的分析(无论是转化成颗粒还是均匀的),强烈建议混合物中颗粒的物理状态是离子发射的关键参数,因此对于校准曲线也很重要。由于我们特定的条件(但未优化),在制造商条件下生产的片剂中,所得的精度<17%,几乎线性范围从0.04到7.87 mg的AI延伸(商品药品标记为5 mg) 。

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