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Flavonoids are identified from the extract of Scutellariae Radix to suppress inflammatory-induced angiogenic responses in cultured RAW 264.7 macrophages

机译:从黄cut提取物中鉴定出类黄酮可抑制培养的RAW 264.7巨噬细胞中炎症诱导的血管生成反应

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摘要

Scutellariae Radix (SR), also named Huangqin in China, is the dried root of Scutellaria baicalensis Georgi. Historically, the usage of SR was targeted to against inflammation. In fact, chronic inflammation has a close relationship with hypoxia and abnormal angiogenesis in tumor cells. Hence, we would like to probe the water extract of SR in suppressing the inflammation-induced angiogenesis. Prior to determine the pharmaceutical values of SR, the first step is to analysis the chemical compositions of SR according to China Pharmacopeia (2015). From the results, the amount of baicalin was 12.6% by weight. Furthermore, the anti-angiogenic properties of SR water extract were evaluated in lipopolysaccharide (LPS) pre-treated cultured macrophage RAW 264.7 cells by detecting the inflammatory markers, i.e. Cox-2, cytokine and iNOS, as well as the translocation activity of NFκB and angiogenic biomarker, i.e. VEGF. This herbal extract was capable of declining both inflammatory and angiogenic hallmarks in a concentration-dependent manner. Moreover, the SR-derived flavonoids, i.e. baicalin, baicalein, wogonin and wogonoside, were shown to be active chemicals in the anti-inflammatory-induced angiogenesis. Therefore, the inflammation-induced angiogenesis is believed to be suppressed by SR water extract, or its major ingredients. These results shed light in the benefiting role of SR in the inflammation-induced angiogenesis in vitro.
机译:黄cut(SR),在中国也称为黄琴,是黄cut的干根。从历史上看,SR的用途是针对炎症。实际上,慢性炎症与肿瘤细胞中的缺氧和异常血管生成密切相关。因此,我们想探究SR的水提取物在抑制炎症诱导的血管生成中的作用。在确定SR的药用价值之前,第一步是根据中国药典(2015)对SR的化学成分进行分析。根据结果​​,黄ical苷的量为12.6重量%。此外,通过检测炎症标记物Cox-2,细胞因子和iNOS以及NFκB和NFκB的转运活性,在脂多糖(LPS)预处理的培养巨噬细胞RAW 264.7细胞中评估了SR水提取物的抗血管生成特性。血管生成生物标志物,即VEGF。这种草药提取物能够以浓度依赖的方式降低炎症和血管生成的标志。此外,SR来源的黄酮类化合物,即黄ical苷,黄ical苷,wogonin和wogonoside,被证明是抗炎诱导的血管生成中的活性化学物质。因此,据信SR水提取物或其主要成分抑制了炎症诱导的血管生成。这些结果揭示了SR在体外炎症诱导的血管生成中的有益作用。

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