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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Clinopodium tomentosum (Kunth) Govaerts Leaf Extract Influences in vitro Cell Proliferation and Angiogenesis on Primary Cultures of Porcine Aortic Endothelial Cells
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Clinopodium tomentosum (Kunth) Govaerts Leaf Extract Influences in vitro Cell Proliferation and Angiogenesis on Primary Cultures of Porcine Aortic Endothelial Cells

机译:Clinopodium tomentosum(Kunth)Govaerts Lead提取物影响体外细胞增殖和血管生成对猪主动脉内皮细胞的原代培养物

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摘要

Clinopodium tomentosum (Kunth) Govaerts is an endemic species in Ecuador, where it is used as an anti-inflammatory plant to treat respiratory and digestive affections. In this work, effects of a Clinopodium tomentosum ethanolic extract (CTEE), prepared from aerial parts of the plant, were investigated on vascular endothelium functions. In particularly, angiogenesis activity was evaluated, using primary cultures of porcine aortic endothelial cells (pAECs). Cells were cultured for 24?h in the presence of CTEE different concentrations (10, 25, 50, and 100?μg/ml); no viability alterations were found in the 10-50?μg/ml range, while a slight, but significant, proliferative effect was observed at the highest dose. In addition, treatment with CTEE was able to rescue LPS-induced injury in terms of cell viability. The CTEE ability to affect angiogenesis was evaluated by scratch test analysis and by an in vitro capillary-like network assay. Treatment with 25-50?μg/ml of extract caused a significant increase in pAEC’s migration and tube formation capabilities compared to untreated cells, as results from the increased master junctions’ number. On the other hand, CTEE at 100?μg/ml did not induce the same effects. Quantitative PCR data demonstrated that FLK-1 mRNA expression significantly increased at a CTEE dose of 25?μg/ml. The CTEE phytochemical composition was assessed through HPLC-DAD; rosmarinic acid among phenolic acids and hesperidin among flavonoids were found as major phenolic components. Total phenolic content and total flavonoid content assays showed that flavonoids are the most abundant class of polyphenols. The CTEE antioxidant activity was also showed by means of the DPPH and ORAC assays. Results indicate that CTEE possesses an angiogenic capacity in a dose-dependent manner; this represents an initial step in elucidating the mechanism of the therapeutic use of the plant.
机译:Clinopodium tomentosum(Kunth)Govaerts是厄瓜多尔的特点,其中它被用作抗炎植物来治疗呼吸系统和消化不必谋。在这项工作中,研究了从植物的空中部位制备的临床上型乙醇提取物(CTEE)的效果在血管内皮术中进行了研究。特别地,使用猪主动脉内皮细胞(PAECs)的原代培养来评估血管生成活性。在CTEE不同浓度(10,25,50和100Ωμg/ ml)存在下培养细胞24μm;在10-50Ωμg/ ml范围内没有发现活力改变,而在最高剂量下观察到轻微但显着的增殖效果。此外,用CTEE治疗能够在细胞活力方面拯救LPS诱导的损伤。通过划痕试验分析和体外毛细管样网络测定来评估影响血管生成的CTEE能力。与未处理的细胞相比,用25-50μg/ ml提取物的患者迁移和管形成能力显着增加,与增加的母部数量增加。另一方面,100μgαμg/ ml的CTEE没有诱导相同的效果。定量PCR数据表明,在25μg/ ml的CTEE剂量下,FLK-1 mRNA表达显着增加。通过HPLC-DAD评估CTEE植物化学组合物;酚醛酸中的甘氨酸和黄酮类化合物中的橙皮酸被发现为主要酚类组分。总酚类含量和总黄酮含量测定表明,黄酮类化合物是最丰富的多酚类别。 CTEE抗氧化活性也通过DPPH和ORAC测定来显示。结果表明,CTEE以剂量依赖的方式具有血管生成能力;这代表了阐明植物治疗用途的机制的初步步骤。

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