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Extracts of Tectona grandis and Vernonia amygdalina have anti- Toxoplasma and pro-inflammatory properties in vitro

机译: Tectona grandis Amygdalina 的提取物在体外具有抗弓形虫和促炎特性。

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Tectona grandis (teak) and Vernonia amygdalina (bitter leaf) are plants used in traditional medicine in West Africa. In this study, we tested ethanolic and hydro-ethanolic extracts of bark and leaves of T. grandis and ethanolic extract of leaves of V. amygdalina for their inhibitory effect on Toxoplasma gondii , a protozoan parasite responsible for toxoplasmosis. Ethanolic extract of V. amygdalina leaves had proportional contents of phenols, tannins, flavonoids, and polysaccharides. This extract presented the highest efficacy against T. gondii , the lowest cytotoxicity to mammalian cells, but moderate anti-oxidant activity compared to other plant extracts. Ethanolic extract of T. grandis bark also had elevated anti- T. gondii activity, low cytotoxicity on mammalian cells, and one of the highest anti-oxidant activities. However, the phytochemical content of this extract was not very different from the hydro-ethanolic extract, which had no anti- T. gondii activity. In addition, ethanolic extract of V. amygdalina leaves, but not of T. grandis bark, significantly increased the production of TNF-α and NO by antigen-presenting cells. Both extracts had the tendency to decrease expression of major histocompatibility complex molecules at the surface of antigen-presenting cells, while they did not modulate the percentage of apoptotic cells. A study of signalling pathways would help to determine the mechanisms of action of these plant extracts.
机译:Tectona grandis(柚木)和Vernonia amygdalina(苦叶)是西非传统医学中使用的植物。在这项研究中,我们测试了大叶黄杨(T. grandis)的树皮和叶子的乙醇提取物和水乙醇提取物以及扁桃体(V.amygdalina)的叶子的乙醇提取物对弓形虫(一种弓形虫病的原生动物寄生虫)的抑制作用。杏仁扁桃叶的乙醇提取物具有一定比例的酚,单宁,类黄酮和多糖含量。与其他植物提取物相比,该提取物对弓形虫的功效最高,对哺乳动物细胞的细胞毒性最低,但抗氧化活性中等。巨桉树皮的乙醇提取物还具有较高的抗弓形虫活性,对哺乳动物细胞的细胞毒性低,是最高的抗氧化活性之一。但是,这种提取物的植物化学含量与没有抗弓形虫活性的水乙醇提取物差别不大。另外,扁桃链霉菌叶片的乙醇提取物,而不是巨木树皮的乙醇提取物,显着增加了抗原呈递细胞的TNF-α和NO的产生。两种提取物都有减少抗原呈递细胞表面主要组织相容性复合物分子表达的趋势,而它们并未调节凋亡细胞的百分比。信号通路的研究将有助于确定这些植物提取物的作用机制。

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