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A critical quality parameter in quantitative fused-core chromatography: The injection volume
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作者 Jente Boonen Matthias D’hondt +3 位作者 Lieselotte Veryser Kathelijne Peremans Christian Burvenich Bart De Spiegeleer 《Journal of Pharmaceutical Analysis》 SCIE CAS 2013年第5期330-334,共5页
As part of the method development, the injection volume as a critical quality attribute in fast fused-core chromatography was evaluated. Spilanthol, a pharmaceutically interesting N- alkylamide currently under investi... As part of the method development, the injection volume as a critical quality attribute in fast fused-core chromatography was evaluated. Spilanthol, a pharmaceutically interesting N- alkylamide currently under investigation in our laboratory, was chosen as the model compound. Spilanthol was dissolved in both PBS and MeOH/H20 (70/30, v/v) and subsequently analyzed using a fused-core system hereby selecting five chromatographic characteristics (retention time, area, height, theoretical plates and symmetry factor) as responses. We demonstrated that the injection volume significantly influenced both the qualitative and quantitative performance of fused-core chromatography, a phenomenon which is confounded with the nature of the used sample solvent. From 2 ~tL up to 100 laL injection volume with PBS as solvent, the symmetry factor decreased favorably by 20%. Moreover, the theoretical plates and the quantitative parameters (area and height) increased up to 30%. On the contrary, in this injection volume range, the theoretical plates for the methanol-based samples decreased by more than 60%, while the symmetry factor increased and the height decreased, both by 30%. The injection volume is thus a critical and often overlooked parameter in fused-core method description and validation. 展开更多
关键词 Spilanthol Fused-core (pore-shell Halo) HPLC superficially porousparticles (spp Injection volume ToPical patch Critical quality method-attribute (CQA)
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表面多孔型Poroshell色谱柱在鱼腥草配方颗粒定性定量快速分析中的应用 被引量:1
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作者 雷启福 吴霞 +3 位作者 周妙霞 钱正明 李文庆 李华 《今日药学》 CAS 2022年第6期426-430,共5页
目的利用表面多孔型的色谱柱对鱼腥草的特征图谱和含量测定方法进行快速分析,在常规液相色谱仪器系统中,实现高效、快速的中药定性定量分析。方法使用普通高效液相色谱柱(TC-C_(18),4.6 mm×250 mm,5μm)和Poroshell C_(18)色谱柱(4... 目的利用表面多孔型的色谱柱对鱼腥草的特征图谱和含量测定方法进行快速分析,在常规液相色谱仪器系统中,实现高效、快速的中药定性定量分析。方法使用普通高效液相色谱柱(TC-C_(18),4.6 mm×250 mm,5μm)和Poroshell C_(18)色谱柱(4.6 mm×100 mm,2.7μm)分别对鱼腥草配方颗粒进行定性和定量分析。结果鱼腥草配方颗粒特征图谱分析,TC-C_(18)普通色谱柱需要80 min完成分析,Poroshell 120 EC-C_(18)色谱柱仅用32 min即可完成。槲皮苷含量测定分析,TC-C_(18)普通色谱柱要16 min完成分析,Poroshell 120 EC-C_(18)色谱柱仅用4 min即可完成。结论使用粒径为2.7μm的表面多孔型Poroshell色谱柱,可以在常规液相色谱仪上实现鱼腥草配方颗粒的快速液相色谱分析,为其产品产业化检测效率的提高和检测成本的降低提供了依据。 展开更多
关键词 鱼腥草配方颗粒 表面多孔型色谱柱 高效液相 特征图谱 含量测定
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