Heart Research Center of Chonnam National University Hospital, Gwangju, 61469, Republic of Korea.
Jilin Hospital Affiliated with Jilin University, Jilin, China.
Sci Rep. 2017 Nov 15;7(1):15607. doi: 10.1038/s41598-017-15925-1.
Gallic acid (GA) has been reported to have beneficial effects on cancer, vascular calcification, and diabetes-induced myocardial dysfunction. We hypothesized that GA controls hypertension via oxidative stress response regulation in an animal model for essential hypertension. Spontaneously hypertensive rats (SHRs) were administered GA for 16 weeks. GA treatment lowered elevated systolic blood pressure in SHRs through the inhibition of vascular contractility and components of the renin-angiotensin II system. In addition, GA administration reduced aortic wall thickness and body weight in SHRs. In SHRs, GA attenuated left ventricular hypertrophy and reduced the expression of cardiac-specific transcription factors. NADPH oxidase 2 (Nox2) and GATA4 mRNA expression was induced in SHR hearts and angiotensin II-treated H9c2 cells; this expression was downregulated by GA treatment. Nox2 promoter activity was increased by the synergistic action of GATA4 and Nkx2-5. GA seems to regulate oxidative stress by inhibiting the DNA binding activity of GATA4 in the rat Nox2 promoter. GA reduced the GATA4-induced Nox activity in SHRs and angiotensin II-treated H9c2 cells. GA administration reduced the elevation of malondialdehyde levels in heart tissue obtained from SHRs. These findings suggest that GA is a potential therapeutic agent for treating cardiac hypertrophy and oxidative stress in SHRs.
没食子酸(GA)已被报道对癌症、血管钙化和糖尿病引起的心肌功能障碍具有有益作用。我们假设 GA 通过调节氧化应激反应在原发性高血压动物模型中控制高血压。自发性高血压大鼠(SHR)给予 GA 治疗 16 周。GA 治疗通过抑制血管收缩性和肾素-血管紧张素 II 系统的成分降低 SHR 中的升高的收缩压。此外,GA 给药降低 SHR 的主动脉壁厚度和体重。在 SHR 中,GA 减轻左心室肥厚并降低心脏特异性转录因子的表达。NADPH 氧化酶 2(Nox2)和 GATA4 mRNA 表达在 SHR 心脏和血管紧张素 II 处理的 H9c2 细胞中被诱导;这种表达被 GA 处理下调。Nox2 启动子活性通过 GATA4 和 Nkx2-5 的协同作用而增加。GA 似乎通过抑制大鼠 Nox2 启动子中 GATA4 的 DNA 结合活性来调节氧化应激。GA 降低了 GATA4 诱导的 SHR 和血管紧张素 II 处理的 H9c2 细胞中的 Nox 活性。GA 给药降低了从 SHR 获得的心脏组织中丙二醛水平的升高。这些发现表明,GA 是治疗 SHR 心脏肥大和氧化应激的潜在治疗剂。