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1.
China Journal of Chinese Materia Medica ; (24): 1280-1288, 2023.
Article in Chinese | WPRIM | ID: wpr-970599

ABSTRACT

This paper compared the differences between two kinds of Bufonis Venenum produced by Bufo gargarizans gargarizans and B. gararizans andrewsi, and verified the rationality of the market value orientation of Bufonis Venenum based on the zebrafish mo-del. Twenty batches of Bufonis Venenum from Jiangsu province, Hebei province, Liaoning province, Jilin province, and Liangshan, Sichuan province, including B. gargarizans gargarizans and B. gararizans andrewsi, were collected. The UHPLC-LTQ-Orbitrap-MS combined with principal component analysis was used to compare the differences between two kinds of Bufonis Venenum. According to the limiting conditions of VIP>1, FC<0.5 or FC>2.0, and peak total area ratio>1%, 9 differential markers were determined, which were cinobufagin, cinobufotalin, arenobufagin, resibufogenin, scillaredin A, resibufagin, 3-(N-suberoylargininyl)-arenobufagin, 3-(N-suberoylargininyl)-marinobufagin, and 3-(N-suberoylargininyl)-resibufogenin. The content of 20 batches of Bufonis Venenum was determined according to the Chinese Pharmacopoeia(2020 edition) by high-performance liquid chromatography, and the 2 batches of Bufonis Venenum, CS7(8.99% of total content) and CS9(5.03% of total content), with the largest difference in the total content of the three quality control indexes of the Chinese Pharmacopoeia(bufalin, cinobufagin, and resibufogenin) were selected to evaluate their anti-liver tumor activity based on the zebrafish model. The tumor inhibition rates of the 2 batches were 38.06% and 45.29%, respectively, proving that only using the quality control indexes of the Chinese Pharmacopoeia as the value orientation of Bufonis Venenum market circulation was unreasonable. This research provides data support for the effective utilization of Bufonis Venenum resources and the establishment of a rational quality evaluation system of Bufonis Venenum.


Subject(s)
Animals , Zebrafish , Bufanolides/analysis , Bufonidae , Chromatography, High Pressure Liquid , Quality Control , Cell Line, Tumor
2.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 98-108, 2022.
Article in Chinese | WPRIM | ID: wpr-940557

ABSTRACT

ObjectiveTo establish blood stasis models in zebrafish using three inducers and select the optimal model for evaluating the activity of Notoginseng Radix et Rhizoma in promoting blood circulation. MethodArachidonic acid (AA), ponatinib, and isoprenaline (ISO) were used to induce blood stasis models in zebrafish. A normal group, a model group, a positive drug group, and Notoginseng Radix et Rhizoma water extract freeze-dried powder groups at different concentrations were set up. The staining intensity of cardiac erythrocytes and the fluorescence intensity of cardiac apoptotic cells were calculated, the anti-thrombotic effect and anti-myocardial hypoxia activity of Notoginseng Radix et Rhizoma were evaluated. The activities of water extract and 70% methanol extract of Notoginseng Radix et Rhizoma were compared based on the preferred AA- and ISO-induced blood stasis models in zebrafish and the difference in the chemical composition was analyzed by UHPLC LTQ-Orbitrap MS/MS. ResultAfter induction by AA and ponatinib, the staining intensity of cardiac erythrocytes was reduced (P<0.01), and the fluorescence intensity of cardiac apoptotic cells increased after the induction by ISO (P<0.01). The freeze-dried powder of the water extract of Notoginseng Radix et Rhizoma could antagonize the thrombosis in the AA-induced model (P<0.01) and the myocardial apoptosis in the ISO-induced model (P<0.05), while no significant improvement in the thrombosis was observed in the ponatinib-induced model. The freeze-dried powder of 70% methanol extract of Notoginseng Radix et Rhizoma could inhibit myocardial apoptosis in the ISO-induced blood stasis model (P<0.01), and the effect was stronger than that of the freeze-dried powder of Notoginseng Radix et Rhizoma water extract. The difference in chemical composition lay in some saponins (such as ginsenoside Re), amino acids, and acetylenic alcohols. ConclusionAA, ponatinib, and ISO all can serve as inducers for the blood stasis model in zebrafish. AA- and ISO-induced models can be used to evaluate the activity of freeze-dried powder of Notoginseng Radix et Rhizoma water extract in promoting blood circulation. The chemical compositions of the freeze-dried powders of Notoginseng Radix et Rhizoma extracted with water and 70% methanol are quite different. For the ISO-induced blood stasis model, the freeze-dried powder of Notoginseng Radix et Rhizoma extracted with 70% methanol has a stronger ability against myocardial hypoxia. Saponins and acetylenic alcohols may be closely related to the effects of promoting blood circulation and resolving blood stasis.

3.
Chinese Journal of Experimental Traditional Medical Formulae ; (24): 49-54, 2019.
Article in Chinese | WPRIM | ID: wpr-802267

ABSTRACT

Objective:To explore the effect of Ershiwuwei Zhenzhu tablets (EZT) on microvascular function. Method:The zebrafish models of thrombosis, microvascular defect and vascular endothelial injury were induced by using arachidonic acid, simvastatin and ponatinib respectively, and treated with EZT, astragaloside or asprin. To evaluate the protective effect of EZT on vascular endothelium and its effect on thrombus formation, zebrafish heart output and blood flow velocity were counted, and the vascular area of the zebrafish intestine and the intervascular diameter were calculated. The thrombus in the tail vein was observed under microscope. Result:Compared with model group,EZT improved the cardiac output (PP-1, and promoted angiogenesis in zebrafish at concentrations of 0.11, 0.33, 1 mg·L-1. Compared with the model group, the vascular diameter of the zebrafish internode was significantly increased at the concentrations of 33 mg·L-1 (P-1 (P-1(PConclusion:EZT could improve microvascular dysfunction, and its mechanism may be related to the reduction of vascular endothelial damage to promote its angiogenesis and the improvement of microvascular hemodynamics to reduce thrombus formation.

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