Carolina Baraldi Araujo Restini, Rosana I. Reis, C. Costa-Neto, N. Garcia-Cairasco, José A. Cortes‐de‐Oliveira, L. Bendhack
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We evaluated Ang I and Ang II-mediated vascular responses and to correlate their contractile responses to the pres- ence of endothelium and the protein levels of components of the RAS (AT1, AT2, Mas and ACE) in aorta isolated from genetically epileptic rats (WAR strain). The major finding was that the vascular contractile response induced by Ang I and Ang II is endothelium-dependent. Ang II induced contractions in aortas from Wistar rats either with intact endothelium (E+) (1.16 ± 0.04 g, n = 6) and endothelium-denuded (E-) (1.24 ± 0.04 g, n = 6). Maximum contractile response (ME) induced by Ang I was lower in Wistar E+ (0.45 ± 0.03 g, n = 6) compared with Wistar E- (1.13 ± 0.08 g, n = 6). Ang I and Ang II failed to induce contraction in WAR E+, whereas the ME induced by Ang I in WAR E- was lower (0.52 ± 0.04 g, n = 11) than in the Wistar. ME induced by Ang II in aortas from WAR was also lower (0.40 ± 0.03 g, n = 11) compared with Wistar. AT1 receptor expression in both E+ WAR and Wistar was lower than in both E- WAR and Wistar. AT2 and Mas receptor expression was higher in Wistar E- and E+ as compared to WAR E- and E+. ACE expression was higher in both E+ WAR and Wistar, but it was lower in both E- WAR and Wistar. Endothelium impairs the contractile response induced by Angiotensin in WAR, suggesting that endothelial relaxing factors play important role on the aorta contraction.","PeriodicalId":62927,"journal":{"name":"生物物理化学(英文)","volume":"3 1","pages":"174-182"},"PeriodicalIF":0.0000,"publicationDate":"2012-05-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"Role of endothelium on the abnormal Angiotensin-mediated vascular functions in epileptic rats\",\"authors\":\"Carolina Baraldi Araujo Restini, Rosana I. Reis, C. Costa-Neto, N. Garcia-Cairasco, José A. Cortes‐de‐Oliveira, L. Bendhack\",\"doi\":\"10.4236/JBPC.2012.32019\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Epidemiological studies have found that the risk for cardiovascular disease is increased in patients with epilepsy. The Renin Angiontensin System (RAS), an important player in vascular tone control, is also involved in many neurological disorders, including seizures and epilepsy. Although it has been reported that Angiotensin II (Ang II) release and Angiotensin receptors expression are altered in many cerebral areas in patients/animal models with neurological disorders, there are no data on the vascular function. We evaluated Ang I and Ang II-mediated vascular responses and to correlate their contractile responses to the pres- ence of endothelium and the protein levels of components of the RAS (AT1, AT2, Mas and ACE) in aorta isolated from genetically epileptic rats (WAR strain). The major finding was that the vascular contractile response induced by Ang I and Ang II is endothelium-dependent. Ang II induced contractions in aortas from Wistar rats either with intact endothelium (E+) (1.16 ± 0.04 g, n = 6) and endothelium-denuded (E-) (1.24 ± 0.04 g, n = 6). Maximum contractile response (ME) induced by Ang I was lower in Wistar E+ (0.45 ± 0.03 g, n = 6) compared with Wistar E- (1.13 ± 0.08 g, n = 6). Ang I and Ang II failed to induce contraction in WAR E+, whereas the ME induced by Ang I in WAR E- was lower (0.52 ± 0.04 g, n = 11) than in the Wistar. ME induced by Ang II in aortas from WAR was also lower (0.40 ± 0.03 g, n = 11) compared with Wistar. AT1 receptor expression in both E+ WAR and Wistar was lower than in both E- WAR and Wistar. AT2 and Mas receptor expression was higher in Wistar E- and E+ as compared to WAR E- and E+. ACE expression was higher in both E+ WAR and Wistar, but it was lower in both E- WAR and Wistar. 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引用次数: 2
摘要
流行病学研究发现,癫痫患者患心血管疾病的风险增加。肾素血管紧张素系统(RAS)在血管张力控制中起着重要作用,也参与许多神经系统疾病,包括癫痫和癫痫。虽然有报道称,在神经系统疾病患者/动物模型中,血管紧张素II (Ang II)的释放和血管紧张素受体的表达在许多大脑区域发生改变,但没有关于血管功能的数据。我们评估了Ang I和Ang ii介导的血管反应,并将其收缩反应与内皮的存在和RAS成分(AT1、AT2、Mas和ACE)的蛋白水平联系起来。主要发现是Ang I和Ang II诱导的血管收缩反应是内皮依赖性的。Angⅱ诱导宫缩在主动脉Wistar鼠与完整的内皮细胞(E +)(1.16±0.04 g, n = 6)和endothelium-denuded (E)(1.24±0.04 g, n = 6)。最大收缩引起的响应(我)和我在纯种E +低(0.45±0.03 g, n = 6)与纯种E -(1.13±0.08 g, n = 6)。和我和Angⅱ未能在E +战争,引起收缩而引起和我在战争中E -较低(0.52±0.04 g, n = 11)比纯种。与Wistar相比,Angⅱ对WAR主动脉ME的影响也较低(0.40±0.03 g, n = 11)。AT1受体在E+ WAR和Wistar中的表达均低于E- WAR和Wistar。与WAR E-和E+相比,Wistar E-和E+中AT2和Mas受体的表达更高。ACE在E+ WAR和Wistar中表达较高,在E- WAR和Wistar中表达较低。内皮损害血管紧张素在WAR中诱导的收缩反应,提示内皮松弛因子在主动脉收缩中起重要作用。
Role of endothelium on the abnormal Angiotensin-mediated vascular functions in epileptic rats
Epidemiological studies have found that the risk for cardiovascular disease is increased in patients with epilepsy. The Renin Angiontensin System (RAS), an important player in vascular tone control, is also involved in many neurological disorders, including seizures and epilepsy. Although it has been reported that Angiotensin II (Ang II) release and Angiotensin receptors expression are altered in many cerebral areas in patients/animal models with neurological disorders, there are no data on the vascular function. We evaluated Ang I and Ang II-mediated vascular responses and to correlate their contractile responses to the pres- ence of endothelium and the protein levels of components of the RAS (AT1, AT2, Mas and ACE) in aorta isolated from genetically epileptic rats (WAR strain). The major finding was that the vascular contractile response induced by Ang I and Ang II is endothelium-dependent. Ang II induced contractions in aortas from Wistar rats either with intact endothelium (E+) (1.16 ± 0.04 g, n = 6) and endothelium-denuded (E-) (1.24 ± 0.04 g, n = 6). Maximum contractile response (ME) induced by Ang I was lower in Wistar E+ (0.45 ± 0.03 g, n = 6) compared with Wistar E- (1.13 ± 0.08 g, n = 6). Ang I and Ang II failed to induce contraction in WAR E+, whereas the ME induced by Ang I in WAR E- was lower (0.52 ± 0.04 g, n = 11) than in the Wistar. ME induced by Ang II in aortas from WAR was also lower (0.40 ± 0.03 g, n = 11) compared with Wistar. AT1 receptor expression in both E+ WAR and Wistar was lower than in both E- WAR and Wistar. AT2 and Mas receptor expression was higher in Wistar E- and E+ as compared to WAR E- and E+. ACE expression was higher in both E+ WAR and Wistar, but it was lower in both E- WAR and Wistar. Endothelium impairs the contractile response induced by Angiotensin in WAR, suggesting that endothelial relaxing factors play important role on the aorta contraction.