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人參達瑪烷皂苷Rh2的藥理作用簡述



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達瑪烷皂苷Rg1的藥理作用簡述



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達瑪烷皂苷Rb1的藥理作用簡述



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達瑪烷苷元原人參三醇PPT的藥理作用簡述



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達瑪烷苷元原人參二醇PPD的藥理作用簡述


 

人參皂苷rb1增加心臟對缺氧缺血的抵抗力

人參達瑪烷皂苷Rg1可能對腸系膜動脈栓塞的治療有幫助
腸系膜動脈栓塞是腸系膜上動脈突然被栓子完全阻塞所致的疾病,本病男性較女性多見。年齡在40~60歲之間,大多數病人有風濕性心髒病、冠心病、心房顫動或動脈硬化史。此種疾病臨床少見,臨床表現各有差別,診斷困難。若診治不及時後果嚴重,甚至導致死亡。 河北醫科大學的研究人員發現:在大鼠的模型中,給予人參達瑪烷皂苷Rg1治療,能夠顯著降低腸道內炎症因子的釋放,氧化應激的程度降低,小腸的損傷評分也顯著降低。因此,研究人員認為,人參達瑪烷皂苷Rg1對腸道具有保護作用,在腸系膜動脈栓塞的治療中具有一定的價值。 ...
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Ginsenoside rb1 protects neonatal rat cardiomyocytes from hypoxia/ischemia induced apoptosis and inhibits activation of the mitochondrial apoptotic pathway.

Source: Evid Based Complement Alternat Med. 2014;2014:149195

Authors: Yan X, Tian J, Wu H, Liu Y, Ren J, Zheng S, Zhang C, Yang C, Li Y, Wang S

Abstract

Aim. To investigate the effect of Ginsenoside Rb1 (GS-Rb1) on hypoxia/ischemia (H/I) injury in cardiomyocytes in vitro and the mitochondrial apoptotic pathway mediated mechanism.

Methods. Neonatal rat cardiomyocytes (NRCMs) for the H/I groups were kept in DMEM without glucose and serum, and were placed into a hypoxic jar for 24 h. GS-Rb1 at concentrations from 2.5 to 40 µM was given during hypoxic period for 24 h. NRCMs injury was determined by MTT and lactate dehydrogenase (LDH) leakage assay. Cell apoptosis, ROS accumulation, and mitochondrial membrane potential (MMP) were assessed by flow cytometry. Cytosolic translocation of mitochondrial cytochrome c and Bcl-2 family proteins were determined by Western blot. Caspase-3 and caspase-9 activities were determined by the assay kit.

Results. GS-Rb1 significantly reduced cell death and LDH leakage induced by H/I. It also reduced H/I induced NRCMs apoptosis induced by H/I, in accordance with a minimal reactive oxygen species (ROS) burst.

Moreover, GS-Rb1 markedly decreased the translocation of cytochrome c from the mitochondria to the cytosol, increased the Bcl-2/ Bax ratio, and preserved mitochondrial transmembrane potential (ΔΨm). Its administration also inhibited activities of caspase-9 and caspase-3.

Conclusion. Administration of GS-Rb1 during H/I in vitro is involved in cardioprotection by inhibiting apoptosis, which may be due to inhibition of the mitochondrial apoptotic pathway.

PMID: 25120573 [PubMed]

Source: Dammarane Saponins

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