He Shuai-bing, Zhang Bai-xia, Wang Hui-hui, Wang Yun, Qiao Yan-jiang
Zhongguo Zhong Yao Za Zhi. 2015 Oct;40(19):3713-7.
Salvia miltiorrhiza is a traditional Chinese medicine (TCM) and is widely used as a clinically medication for its efficiency in treating cardiovascular disease. Due to TCM is a comprehensive system, the mechanism of S. miltiorrhiza treating cardiovascular disease through integrated multiple pathways are still unclear in some aspects. With the rapid progress of bioinformatics and systems biology, network pharmacology is considered as a promising approach toward reveal the underlying complex relationship between an herb and the disease. In order to discover the mechanism of S. miltiorrhiza treating cardiovascular disease systematically, we use the auxiliary mechanism elucidation system for Chinese medicine, built up a molecule interaction network on the active component targets of S. miltiorrhiza and the therapeutic targets of cardiovascular disease to offer an opportunity for deep understanding the mechanism of S. miltiorrhiza treating cardiovascular disease from the perspective of network pharmacology. The results showed that S. miltiorrhiza treating cardiovascular disease through ten pathways as follows: improve lipid metabolism, anti-inflammation, regulate blood pressure, negatively regulates blood coagulation factor and antithrombotic, regulate cell proliferation, anti-stress injury, promoting angiogenesis, inhibited apoptosis, adjust vascular systolic and diastolic, promoting wound repair. The results of this paper provide theoretical guidance for the development of new drugs to treat cardiovascular disease and the discovery of new drugs through component compatibility.
丹参是一种传统中药,因其在治疗心血管疾病方面的功效而被广泛用作临床药物。由于中药是一个综合体系,丹参通过多种途径综合治疗心血管疾病的机制在某些方面仍不明确。随着生物信息学和系统生物学的快速发展,网络药理学被认为是揭示草药与疾病之间潜在复杂关系的一种有前途的方法。为了系统地发现丹参治疗心血管疾病的机制,我们利用中药辅助机制阐明系统,构建了丹参活性成分靶点与心血管疾病治疗靶点的分子相互作用网络,以便从网络药理学的角度深入了解丹参治疗心血管疾病的机制。结果表明,丹参通过以下十条途径治疗心血管疾病:改善脂质代谢、抗炎、调节血压、负向调节凝血因子和抗血栓形成、调节细胞增殖、抗应激损伤、促进血管生成、抑制细胞凋亡、调节血管收缩和舒张、促进伤口修复。本文的结果为开发治疗心血管疾病的新药以及通过成分配伍发现新药提供了理论指导。