• AIM: To explore the chemical changes in compatibility of Radix Bupleuri with Radix Paeoniae Rubra.

    前言:目的:研究柴胡赤芍配伍成分变化

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  • Conclusion The total tannin content of wild and cultivated Radix Paeoniae Rubra products were significantly different.

    结论赤芍野生栽培鞣质含量有明显差异

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  • Results Flos Lonicerae Japonicae, Radix Paeoniae Rubra and Radix Astragali could be detected with TLC without any disturbing;

    结果薄层鉴别中能检出金银花、赤芍黄芪,阴性干扰;

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  • Method The total tannin content of wild and cultivated Radix Paeoniae Rubra were determined and compared by spectrophotometry.

    方法采用分光光度法测定赤芍野生栽培鞣质含量进行比对。

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  • Methods: (1) the existed technique of biosensor was well improved to screen the effective component of anti-LPS from Radix Paeoniae Rubra.

    方法(1)已建立生物传感器技术筛选赤芍中lps有效成分的技术平台进行完善与优化。

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  • Results: The microscopic identification method and thin-layer chromatography identification of Salvia Miltiorrhiza Bge. and Radix Paeoniae Rubra were established.

    结果:建立了显微鉴别方法丹参赤芍薄层色谱鉴别方法。

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  • Results For TLC, the chromatogram spots of Radix Astragali, Radix Paeoniae Rubra and Rhizoma Imperatea were well separated and without interference in their negative controls.

    结果参白浓缩丸中黄芪赤芍茅根层色谱鉴别斑点清晰,重现性空白干扰

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  • Through biosensor, all kinds of Radix Paeoniae Rubra from different areas were screened. The results showed those from Sichuan province contained the largest quantity of active components of anti-LPS.

    利用生物传感器技术完成不同产地赤芍LPS活性筛选,确定出产地为四川赤芍片剂中拮抗LPS活性成分的含量最高

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  • Through biosensor, all kinds of Radix Paeoniae Rubra from different areas were screened. The results showed those from Sichuan province contained the largest quantity of active components of anti-LPS.

    利用生物传感器技术完成不同产地赤芍LPS活性筛选,确定出产地为四川赤芍片剂中拮抗LPS活性成分的含量最高

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