Marañón Rodrigo O, Joo Turoni Claudio M, Coviello Alfredo, de Bruno María Peral
Departmento Biomédico, Facultad de Medicina, Universidad Nacional de Tucumán, INSIBIO-CONICET, Tucumán, Argentina.
J Comp Physiol B. 2009 May;179(4):403-9. doi: 10.1007/s00360-008-0325-1. Epub 2008 Dec 14.
Little is known about the vascular actions of angiotensin II (Ang II) and nitric oxide (NO) in Amphibia. This study investigated (1) Ang II contractility, (2) NO concentrations, and (3) correlations between Ang II contractility, NO concentration and mean arterial pressure (MAP) in isolated Bufo arenarum toad aortic rings. Contractility was measured in isometric conditions, NO concentrations were determined by the Griess reaction, and MAP was determined by a direct method. In isolated toad aortic rings, Ang II produced a contractile response (292.7 +/- 89.2 mg; n = 20). Furthermore, a contractile response to norepinephrine (NE) was also obtained. A significant correlation between both the Ang II and NE contractile responses was found (r = 0.89; n = 11; P < 0.01). Administration of Ang II increased MAP values (Basal 16.8 +/- 1.7; n = 19 vs. Ang II 28.4 +/- 1.8 mmHg; n = 19; P < 0.001), and the increase of MAP by Ang II was positively correlated with the Ang II contractile response (P < 0.01). Administration of L-NAME also increased MAP values, and this effect was higher in those toads that presented a lower pressure response to Ang II (Pearson r = -0.68; P < 0.05). NO was present in all aortic rings, and its concentrations were negatively related to the Ang II contractile response (P < 0.036) and pressure response (Pearson r = -7.08; P < 0.001). These findings suggest that, in the B. arenarum toad, the NO system contra-regulates both the contractile and pressure Ang II responses, although its action could be different in each specimen.
关于两栖动物中血管紧张素II(Ang II)和一氧化氮(NO)的血管作用,人们了解甚少。本研究调查了(1)安II的收缩性,(2)NO浓度,以及(3)在分离的布氏蟾蜍主动脉环中,安II收缩性、NO浓度与平均动脉压(MAP)之间的相关性。在等长条件下测量收缩性,通过格里斯反应测定NO浓度,并通过直接法测定MAP。在分离的蟾蜍主动脉环中,安II产生了收缩反应(292.7±89.2mg;n = 20)。此外,还获得了对去甲肾上腺素(NE)的收缩反应。发现安II和NE的收缩反应之间存在显著相关性(r = 0.89;n = 11;P < 0.01)。给予安II可增加MAP值(基础值16.8±1.7;n = 19,与安II组28.4±1.8mmHg;n = 19相比;P < 0.001),且安II引起的MAP升高与安II收缩反应呈正相关(P < 0.01)。给予L - NAME也可增加MAP值,且在对安II压力反应较低的蟾蜍中这种作用更强(皮尔逊r = -0.68;P < 0.05)。所有主动脉环中均存在NO,其浓度与安II收缩反应呈负相关(P < 0.036)以及与压力反应呈负相关(皮尔逊r = -7.08;P < 0.001)。这些发现表明,在布氏蟾蜍中,NO系统对安II的收缩和压力反应起到反向调节作用,尽管其在每个标本中的作用可能有所不同。