1.A study on quality of Paridis Rhizoma and consideration on standards of Paridis Rhizoma in Chinese Pharmacopoeia.
Tian-Ying JIA ; Xiao-Nan ZHANG ; Tai SU ; Xiao-Yan YANG ; Hai-Li WANG ; Jie-Ping XIN ; Meng-Nan LIU ; Jing-Kun WANG ; Xiang-Ri LI
China Journal of Chinese Materia Medica 2020;45(10):2425-2430
Thin layer chromatography, high performance liquid chromatography and multivariate statistical analysis were integrated in current study to provide a basis for the quality evaluation and the standard improvement of Paridis Rhizoma(Chinese name: Chong-lou). The results demonstrated that the primary saponins in the two authorized sources of Paridis Rhizoma were polyphyllinsⅠ, Ⅱ and Ⅶ, while the rhizome of Trillium tschonoskii an adulterant of Paridis Rhizoma was rich of polyphyllin Ⅵ. Therefore, the apparent content of polyphyllin Ⅵ plays a determinant role towards the source authentication of raw materials and decoction slices of Paridis Rhizoma, whose adulterants frequently occur in the market. Moreover, the contents of polyphyllin Ⅵ in the two authorized sources could meet the requirements of Chinese Pharmacopoeia. Therefore, we suggested that polyphyllin Ⅵ should not be omitted from the quality standard of Paridis Rhizoma in the Chinese Pharmacopoeia, and on the other side, polyphyllinsⅠ, Ⅱ and Ⅶ should be the eligible quality indicators. The study aims to sound information and evidences for the quality evaluation of Paridis Rhizoma, and also to provide a theoretical basis for the standard revision of Paridis Rhizoma in the future Chinese Pharmacopoeia.
Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal
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Rhizome
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Saponins
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Trillium
2.Study on active ingredient and mechanism in preventing vascular dementia of Tianzhusan coming from Tujia medicine.
Wen-bin ZHOU ; Li LIN ; Zhi-yong LI ; Tian BI ; Tian-yuan YE ; Cui-qiang MA ; Bao HONG-JUAN ; Hong-ping WANG ; Bai-xia ZHANG ; Kuo-kui SONG ; Yan-wen LI ; Yun WANG
China Journal of Chinese Materia Medica 2015;40(13):2668-2673
To make clear of the absorbed components of Tianzhusan (TZS) and its possible mechanism in preventing vascular dementia (VD), the rats' models of VD were prepared by a permanent ligation of the bilateral common carotid arteries. After 60 days, rats were administrated with TZS for 0.1 g x kg(-1), and the volume is 0.02 mL x g(-1). After 3 days, the medicated serum was prepared and detected by UPLC, and then we predicted the possible chemical structure of the absorbed components of TZS. According to the absorbed components, the potential targets of TZS were found by ligand profiling of Discovery Studio 3.5. All of these target genes were submitted to DAVID onine for gene set enrichment analysis (GSEA). The 5 absorbed components of TZS have been predicted, and four of them have been identified as parishin B, parishin C, parishin, pennogenin-3-O-alpha-L-rhamnopyranosy-(1-->2)-beta-D-glucoside. Through reverse finding targets, we got 861 pharmacophore models and 9 pathways from KEGG, BIOCARTA after document verification. These results showed that the efficacy mechanism of TZS on VD perhaps were be related with these absorbed components and pathways. If the traditional herbs could be proved effective by efficacy tests, the serum pharmacochemistry, computer-aided drug design, system biology and other technologies can be used in the next experiments, which will be beneficial to fast discovery of material basis and mechanisms of traditional medicine coming form ethnic minorities.
Animals
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Dementia, Vascular
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prevention & control
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Drug Discovery
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Drugs, Chinese Herbal
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therapeutic use
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Gastrodia
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chemistry
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Male
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Medicine, Chinese Traditional
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Rats
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Rats, Sprague-Dawley
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Spectrometry, Mass, Electrospray Ionization
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Trillium
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chemistry
3.Effects of Trillim tschonskii maxim on microvessels response and anti-oxidation enzyme in burned rats.
Chinese Journal of Applied Physiology 2011;27(4):483-494
Animals
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Burns
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drug therapy
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metabolism
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physiopathology
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Drugs, Chinese Herbal
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pharmacology
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therapeutic use
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Female
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Male
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Mesentery
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blood supply
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Microvessels
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drug effects
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physiopathology
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Phytotherapy
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Rats
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Rats, Sprague-Dawley
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Superoxide Dismutase
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metabolism
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Trillium
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chemistry