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Inhibition of Arterial Myogenic Responses by a Mixed Aqueous Extract of Salvia Miltiorrhiza and Panax Notoginseng (PASEL) Showing Antihypertensive Effects

机译:丹参和三七混合提取物对动脉肌反应的抑制作用,具有降压作用

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摘要

The dried roots of Danshen (Salvia miltiorrhiza) and Sanchi (Panax notoginseng) have been widely used in traditional Chinese medicine for promoting blood circulation as well as various other bodily functions. Here we investigated the effects of a mixture of aqueous extracts of Danshen and Sanchi, named PASEL, on blood pressure and vascular contractility in rats. Orally administered PASEL (62.5 mg/kg and 250 mg/kg, for 5 weeks) lowered the blood pressure of spontaneous hypertensive rats (SHR) but this was not observed in normal Wistar-Kyoto rats (WKR). We then investigated the effects of PASEL on the arterial contraction of the small branches of cerebral arteries (CAs) and large conduit femoral arteries (FAs) in rats. PASEL did not affect high-K (KCl 60 mM)- or phenyleprine (PhE)-induced contracture of FAs. The myogenic response, a reactive arterial constriction in response to increased luminal pressure, of small CA was dose-dependently suppressed by PASEL in SHR as well as control rats. Interestingly, the KCl-induced contraction of small CAs was slowly reversed by PASEL, and this effect was more prominent in SHR than control WKR. PASEL did not inhibit angiotensin-converting enzyme (ACE) activity. These results demonstrated that the antihypertensive effect of PASEL might be primarily mediated by altering the arterial MR, not by direct inhibition of L-type Ca2+ channels or by ACE inhibition.
机译:丹参(Salvia miltiorrhiza)和三七(Panax notoginseng)的干燥根已广泛用于传统中药,以促进血液循环以及其他各种身体机能。在这里,我们研究了丹参和三七水提取物的混合物(称为PASEL)对大鼠血压和血管收缩性的影响。口服PASEL(62.5 mg / kg和250 mg / kg,持续5周)可降低自发性高血压大鼠(SHR)的血压,但在正常的Wistar-Kyoto大鼠(WKR)中未观察到。然后,我们研究了PASEL对大鼠脑动脉小分支(CAs)和大导管股动脉(FAs)的动脉收缩的影响。 PASEL不会影响高K(KCl 60 mM)或苯肾上腺素(PhE)诱导的FAs挛缩。在SHR和对照组大鼠中,PASEL剂量依赖性地抑制了小CA的肌源性反应,即对腔压力升高的反应性动脉收缩。有趣的是,PASEL缓慢逆转了KCl诱导的小CA收缩,并且在SHR中这种作用比对照WKR更为明显。 PASEL不会抑制血管紧张素转化酶(ACE)的活性。这些结果表明,PASEL的降压作用可能主要是通过改变动脉MR介导的,而不是直接抑制L型Ca2 +通道或ACE抑制。

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