Key result
Sodium tanshinone IIA sulfonate significantly attenuated angiotensin II-induced collagen type I expression and reactive oxygen species generation in cultured rat cardiac fibroblasts.
Why the study?
Does sodium tanshinone IIA sulfonate reduce angiotensin II-induced collagen type I expression in rat cardiac fibroblasts?
Does sodium tanshinone IIA sulfonate reduce angiotensin II-induced collagen type I expression in rat cardiac fibroblasts?
p-value: p=<0.01
Sodium tanshinone IIA sulfonate attenuates Ang II-induced collagen type I expression and synthesis in cardiac fibroblasts by inhibiting reactive oxygen species generation.
May support preclinical antifibrotic research; leaves open clinical translation in human cardiac fibrosis.
Cardiac fibrosis occurs after pathological stimuli to the cardiovascular system. One of the most important factors that contribute to cardiac fibrosis is angiotensin II (AngII). Accumulating studies have suggested that reactive oxygen species (ROS) plays an important role in cardiac fibrosis and sodium tanshinone IIA sulfonate (STS) possesses antioxidant action. We therefore examined whether STS depresses Ang II-induced collagen type I expression in cardiac fibroblasts. In this study, Ang II significantly enhanced collagen type I expression and collagen synthesis. Meanwhile, Ang II depressed matrix metalloproteinase-1 (MMP-1) expression and activity. These responses were attenuated by STS. Furthermore, STS depressed the intracellular generation of ROS, NADPH oxidase activity and subunit p47(phox) expression. In addition, N-acetylcysteine the ROS scavenger, depressed effects of Ang II in a manner similar to STS. In conclusion, the current studies demonstrate that anti-fibrotic effects of STS are mediated by interfering with the modulation of ROS.
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Yang et al. (2009) studied Cardiac fibrosis. Sodium tanshinone IIA sulfonate (STS) vs. Angiotensin II alone or Control was evaluated on Angiotensin II-induced collagen type I expression and ROS generation (p=<0.01). Sodium tanshinone IIA sulfonate significantly attenuated angiotensin II-induced collagen type I expression and reactive oxygen species generation in cultured rat cardiac fibroblasts.
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