Wong Kar-Lok, Wu King-Chuen, Wu Rick Sai-Chuen, Chou Yu-Hsiang, Cheng Tzu-Hurng, Hong Hong-Jye
Department of Anesthesiology, Pain Management and Critical Care Medicine, China Medical University and Hospital, Taichung, Taiwan.
Am J Chin Med. 2007;35(6):1021-35. doi: 10.1142/S0192415X0700548X.
Tetramethylpyrazine (TMP) is the major component extracted from the Chinese herb, Chuanxiong, which is widely used in China for the treatment of cardiovascular problems. The aims of this study were to examine whether TMP may alter angiotenisn II (Ang II)-induced proliferation and to identify the putative underlying signaling pathways in rat aortic smooth muscle cells. Cultured rat aortic smooth muscle cells were preincubated with TMP and then stimulated with Ang II, [3H]-thymidine incorporation and the ET-1 expression was examined. Ang II increased DNA synthesis which was inhibited by TMP (1-100 microM). TMP inhibited the Ang II-induced ET-1 mRNA levels and ET-1 secretion. TMP also inhibited Ang II-increased NAD(P)H oxidase activity, intracellular reactive oxygen species (ROS) levels, and the ERK phosphorylation. Furthermore, TMP and antioxidants such as Trolox and diphenylene iodonium decreased Ang II-induced ERK phosphorylation, and activator protein-1 reporter activity. In summary, we demonstrate for the first time that TMP inhibits Ang II-induced proliferation and ET-1, partially by interfering with the ERK pathway via attenuation of Ang II-increased NAD(P)H oxidase and ROS generation. Thus, this study delivers important new insight in the molecular pathways that may contribute to the proposed beneficial effects of TMP in cardiovascular disease.
川芎嗪(TMP)是从中药川芎中提取的主要成分,在中国广泛用于治疗心血管疾病。本研究的目的是检测TMP是否可能改变血管紧张素II(Ang II)诱导的增殖,并确定大鼠主动脉平滑肌细胞中潜在的信号通路。将培养的大鼠主动脉平滑肌细胞先用TMP预孵育,然后用Ang II刺激,检测[3H] - 胸腺嘧啶核苷掺入和ET - 1表达。Ang II增加DNA合成,而TMP(1 - 100 microM)可抑制这种作用。TMP抑制Ang II诱导的ET - 1 mRNA水平和ET - 1分泌。TMP还抑制Ang II增加的NAD(P)H氧化酶活性、细胞内活性氧(ROS)水平以及ERK磷酸化。此外,TMP与抗氧化剂如生育酚和二苯基碘鎓可降低Ang II诱导的ERK磷酸化以及活化蛋白 - 1报告基因活性。总之,我们首次证明TMP通过部分干扰ERK途径,即减弱Ang II增加的NAD(P)H氧化酶和ROS生成,来抑制Ang II诱导的增殖和ET - 1。因此,本研究为可能有助于TMP在心血管疾病中发挥有益作用的分子途径提供了重要的新见解。