Literature DB >> 1680713

Vascular effects of tetramethylpyrazine: direct interaction with smooth muscle alpha-adrenoceptors.

C Y Kwan1, V Gaspar, A G Shi, Z L Wang, M C Chen, A Ohta, E J Cragoe, E E Daniel.   

Abstract

The interaction of tetramethylpyrazine, a vasoactive ingredient of a Chinese traditional medicinal plant, with the vascular muscle alpha 1-adrenoceptors was investigated by a direct radioligand binding technique using [3H]prazosin and vascular smooth muscle microsomes isolated from dog aorta and mesenteric artery. Tetramethylpyrazine inhibited the binding of [3H]prazosin to vascular muscle membranes in a concentration-dependent manner at a suboptimal concentration of prazosin. Scatchard analysis of the effect of tetramethylpyrazine on the saturation profile of [3H]prazosin binding to vascular muscle microsomes of either arterial muscle indicated a substantial increase of Kd values (the affinity for prazosin) without a change in Bmax (maximal binding sites for prazosin). Thus, the present results provide supporting evidence that the inhibitory effect of tetramethylpyrazine on the vasoconstriction of dog mesenteric artery induced by phenylephrine in the earlier studies may be, at least, in part due to a direct action at the recognition sites of alpha 1-adrenoceptors. Amiloride and amiloride-related compounds, which shares a common pyrazine ring structure with tetramethylpyrazine and other related derivatives, also inhibits the binding of [3H]prazosin to aortic muscle microsomal membranes. Functional studies of dog saphenous vein also indicated that both tetramethylpyrazine and its ethyl derivatives inhibited the responses induced by phenylephrine and B-HT 920 in the presence and absence of extracellular Ca2+. Together with our earlier findings that amiloride also inhibits [3H]prazosin and [3H]rauwolscine binding to vascular muscle alpha 1- and alpha 2-adrenoceptors, the present radioligand binding study in canine arteries and functional study in saphenous veins suggest that the above compounds containing the pyrazine nucleus indeed interacted at the alpha-adrenoceptor sites.

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Year:  1991        PMID: 1680713     DOI: 10.1016/0014-2999(91)90556-6

Source DB:  PubMed          Journal:  Eur J Pharmacol        ISSN: 0014-2999            Impact factor:   4.432


  3 in total

1.  Ligustrazine-induced endothelium-dependent relaxation in pulmonary arteries via an NO-mediated and exogenous L-arginine-dependent mechanism.

Authors:  W Peng; D Hucks; R M Priest; Y M Kan; J P Ward
Journal:  Br J Pharmacol       Date:  1996-11       Impact factor: 8.739

2.  Inhibition of acid sensing ion channel by ligustrazine on angina model in rat.

Authors:  Zhi-Gang Zhang; Xiao-Lan Zhang; Xian-Yue Wang; Zhu-Rong Luo; Jing-Chun Song
Journal:  Am J Transl Res       Date:  2015-10-15       Impact factor: 4.060

3.  Effects of ligustrazine on the contraction of isolated rabbit corpus cavernosum strips.

Authors:  Hengiun Xiao; Jihong Liu; Chunping Yin; Tao Wang; Jun Chen; Longchang Fan; Zhangqun Ye
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2005
  3 in total

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