马兰合欢的血管松弛作用。NO/cGMP通路对大鼠离体胸主动脉的调节作用。

Noura A Hassan, Mohamed A O Abdelfattah, Yasmine M Mandour, Assem M El-Shazly, Mansour Sobeh, Mona F Mahmoud
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引用次数: 2

摘要

水杨树(水杨树)在传统医学中被广泛使用。我们以前已经报道了其叶提取物的一系列药理特性,其中包括抗炎,抗氧化,保护肝脏,抗糖尿病,抗溃疡和抗锥虫活性。我们还用LC-MS/MS对其化学成分进行了标注。在此,我们继续研究和评估叶提取物对大鼠主动脉环的血管松弛作用,并探讨其可能的潜在机制。马齿苋提取物诱导大鼠苯肾上腺素预收缩主动脉浓度依赖性松弛。然而,这种作用在去除功能性内皮后消失。用心得安或ng -硝基- l -精氨酸甲酯预处理主动脉组织均可抑制提取物引起的松弛;然而,阿托品不影响提取物诱导的血管舒张。同时,腺苷酸环化酶抑制剂MDL;特异性鸟苷酸环化酶抑制剂;高细胞外KCl;吲哚美辛作为环加氧酶抑制剂对提取物诱导的血管舒张有抑制作用。另一方面,在不含Ca2+的培养基中,用苯肾上腺素或KCl对完整内皮预收缩的撒马兰提取物进行培养,对Ca2+诱导的主动脉血管收缩没有影响。综上所述,本研究表明,撒马兰提取物通过内皮依赖性一氧化氮(NO)/cGMP信号通路扩张离体主动脉环。所观察到的生物学效应可能归因于其丰富的次生代谢物。沙棘提取物有效成分的具体作用机制有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vasorelaxant Effects of Syzygium samarangense (Blume) Merr. and L.M.Perry Extract Are Mediated by NO/cGMP Pathway in Isolated Rat Thoracic Aorta.

Syzygium samarangense (Blume) Merr. and L.M.Perry is utilized widely in traditional medicine. We have reported previously a wide array of pharmacological properties of its leaf extract, among them anti-inflammatory, antioxidant, hepatoprotective, antidiabetic, antiulcer, and antitrypanosomal activities. We also annotated its chemical composition using LC-MS/MS. Here, we continue our investigations and evaluate the vasorelaxant effects of the leaf extract on aortic rings isolated from rats and explore the possible underlying mechanisms. S. samarangense extract induced a concentration dependent relaxation of the phenylephrine-precontracted aorta in the rat model. However, this effect disappeared upon removing the functional endothelium. Pretreating the aortic tissues either with propranolol or NG-nitro-L-arginine methyl ester inhibited the relaxation induced by the extract; however, atropine did not affect the extract-induced vasodilation. Meanwhile, adenylate cyclase inhibitor, MDL; specific guanylate cyclase inhibitor, ODQ; high extracellular KCl; and indomethacin as cyclooxygenase inhibitor inhibited the extract-induced vasodilation. On the other hand, incubation of S. samarangense extract with aortae sections having their intact endothelium pre-constricted using phenylephrine or KCl in media free of Ca2+ showed no effect on the constriction of the aortae vessels induced by Ca2+. Taken together, the present study suggests that S. samarangense extract dilates isolated aortic rings via endothelium-dependent nitric oxide (NO)/cGMP signaling. The observed biological effects could be attributed to its rich secondary metabolites. The specific mechanisms of the active ingredients of S. samarangense extract await further investigations.

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