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首页> 外文期刊>Japanese Journal of Pharmacology >Protective effect of Salvia miltiorrhiza on angiotensin II-induced hypertrophic responses in neonatal rat cardiac cells.
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Protective effect of Salvia miltiorrhiza on angiotensin II-induced hypertrophic responses in neonatal rat cardiac cells.

机译:丹参对新生大鼠心脏细胞中血管紧张素Ⅱ诱导的肥大反应的保护作用。

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The effect of the root of Salvia miltiorrhiza (SM) on angiotensin II (Ang II)-induced hypertrophic responses was examined in cultured neonatal rat cardiac cells (cardiomyocytes and non-cardiomyocytes). The methanol eluate fraction (SM2) of the water extract and the ethyl acetate-insoluble fraction (SM3) and its soluble fraction (SM4) partitioned from the methanol extract were prepared. Treatment with SM4 (5-80 microg/ml), not SM2 and SM3, for 24 h produced dose-dependent cytotoxicity against cardiac cells relative to the reduction in viability and the morphological injury of cardiomyocytes. SM2 or SM3 in the absence of Ang II affected neither hyperplastic nor hypertrophic growth of both cell types. However, SM3 (40 microg/ml) attenuated the positive chronotropic responsiveness of cardiomyocytes to Ang II (1 nM) stimulation, whereas Ang II-induced increase in non-cardiomyocyte number was decreased only by SM2 (40 microg/ml) treatment. Furthermore, SM3 suppressed Ang II-induced enlargement of cell size by preceding Ang II-induced induction of immediate early response gene (c-jun) expression in cardiomyocytes, while SM2 decreased Ang II-induced DNA synthesis in non-cardiomyocytes. Moreover, three phenolic compounds and tanshinone IIA that differed quantitatively among three SM fractions were identified by reverse-phase high performance liquid chromatography. Thus, the present findings indicate that the root of SM is an effective inhibitor of Ang II action and has a plural effective constituent, which possess different pharmacological activities on Ang II-induced hypertrophy and hyperplasia in cultured neonatal rat cardiac cells.
机译:在培养的新生大鼠心脏细胞(心肌细胞和非心肌细胞)中检查了丹参(SM)的根对血管紧张素II(Ang II)诱导的肥大反应的影响。制备水提取物的甲醇洗脱液部分(SM2)以及从甲醇提取物分配的乙酸乙酯不溶性部分(SM3)及其可溶部分(SM4)。相对于活力降低和心肌细胞形态损伤,用SM4(5-80 microg / ml)而不是SM2和SM3处理24 h对心肌细胞产生剂量依赖性的细胞毒性。在没有Ang II的情况下,SM2或SM3不会影响两种细胞类型的增生或肥大生长。然而,SM3(40 microg / ml)减弱了心肌细胞对Ang II(1 nM)刺激的正变时反应,而仅通过SM2(40 microg / ml)处理,Ang II诱导的非心肌细胞数量增加却减少了。此外,SM3通过先于Ang II诱导心肌细胞中的立即早期反应基因(c-jun)表达来抑制Ang II诱导的细胞大小增大,而SM2降低了非心肌细胞中Ang II诱导的DNA合成。此外,通过反相高效液相色谱法鉴定了三个SM馏分之间在数量上存在差异的三种酚类化合物和丹参酮IIA。因此,本发现表明SM的根是Ang II作用的有效抑制剂并且具有多种有效成分,其对培养的新生大鼠心脏细胞中Ang II诱导的肥大和增生具有不同的药理活性。

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