Hemostatic mechanism of the effect of Jianpi Yiqi Shexue decoction on vascular factors in immune thrombocytopenia model mice

Journal of Traditional Chinese Medical Sciences(2022)

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摘要
Objective:To explore the hemostatic mechanism of Jianpi Yiqi Shexue decoction(JYSD)by regulating vascular factors in an immune thrombocytopenia(ITP)mouse model.Methods:An ITP mouse model was established by the passive-immune modeling method,and inter-ventional drugs used were prednisone tablets and JYSD.The platelet count;vascular activity-related factors vWF,VCAM-1,and TM;and VEGF and bFGF were used as observational indicators.Results:On the 8th day of administration,compared with the model group,platelet counts in the prednisone and JYSD groups increased(both P<.001).Compared with the control group,the levels of vWF,VCAM-1,and TM in the other groups were lower(all P<.05).The VCAM-1 level in the JYSD group was higher than that in the prednisone group(P=.012),but without significant difference compared with the model group(P=.051).The TM level in the JYSD group was the lowest(vs.the model group,P=.047;vs.the prednisone group,P=.006).Compared with the control group,the IOD values of VEGF and bFGF in the other three groups were lower(all P<.01).The IOD values of VEGF in the prednisone and JYSD groups were both higher than those in the model group(P=.002 and P<.001,respectively).The IOD values of bFGF among the model,prednisone,and JYSD groups were not statistically significant(P>.05).Conclusion:A vascular factor disorder is involved in the pathogenesis of ITP.JYSD can increase the platelet count,upregulate VEGF expression,and reduce the TM level.JYSD has the same effect as prednisone tablets in regulating platelet,vWF,VEGF,and bFGF,with a stronger effect in normalizing VCAM-1 and TM levels.The hemostatic mechanism of JYSD is closely related to the effective balance of vascular factors.
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关键词
Jianpi Yiqi Shexue decoction,von Willebrand factor,Vascular cell adhesion molecule-1,Thrombomodulin,Vascular endothelial growth factor,Basic fibroblast growth factor
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