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An extract of Ulmus macrocarpa improves cellular immunity in immuno-suppressed models

机译:榆榆提取物可改善免疫抑制模型的细胞免疫

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An extract of Ulmus macrocarpa Hance , commonly known as the large-fruited elm, has been prescribed as a traditional medicine. In this study, we aimed to investigate the cellular immune effects of U. macrocarpa stem cortex extracts on cyclophosphamide (CY)-treated splenocytes and mice. A methanol extract showed an improved survival rate of splenocytes after 72?h. The extract was successively partitioned with dichloromethane, ethyl acetate, n-butanol, and water; and the fractions so obtained were also examined for their proliferative activity. Among them, the water fraction of U. macrocarpa showed the highest proliferation of splenocytes and was used throughout the present study. We tested the survival rate of splenocytes through dose-dependent treatment of CY and the suppression of the survival effect by CY was recovered by treatment with the water extract of U. macrocarpa . To determine the mechanism involved, we examined the expression of B-cell lymphoma-extra large (Bcl-xL) anti-apoptotic protein. CY decreased Bcl-xL protein levels in resting splenocyte cultures, whereas splenocytes were exposed to water extracts of U. macrocarpa in the presence of CY; however, elevations in Bcl-xL were observed at 96?h. Mice splenocytes treated with water extract of U. macrocarpa for cellular immunity showed an increase in the activity of the mixed lymphocyte reaction (MLR), cytotoxic T lymphocytes (CTLs), and natural killer (NK) cells. In addition, mice receiving a water extract of U. macrocarpa recovered the CTL, NK, and MLR activities suppressed by CY administration. Consequently, U. macrocarpa improves the cell-mediated immune response and provides an insight on cell-based tonic materials.
机译:榆树的提取物,通常被称为大果榆,已被处方为传统药物。在这项研究中,我们旨在研究 U的细胞免疫作用。大果茎皮质提取物在环磷酰胺(CY)处理的脾细胞和小鼠上。甲醇提取物在72小时后显示脾细胞的存活率提高。萃取液依次用二氯甲烷,乙酸乙酯,正丁醇和水分配。并且还检查了如此获得的级分的增殖活性。其中,iU的水含量。大果显示出脾细胞的最高增殖,并且在整个本研究中一直使用。我们通过剂量依赖性的CY处理测试了脾细胞的存活率,并通过用 U水提取物处理恢复了CY抑制生存的作用。大果。为了确定所涉及的机制,我们检查了B细胞淋巴瘤超大(Bcl-xL)抗凋亡蛋白的表达。 CY降低了静息脾细胞培养物中Bcl-xL蛋白的水平,而脾细胞则暴露于 U的水提取物中。 CY存在的大果;然而,在96?h观察到Bcl-xL升高。用iU的水提取物处理的小鼠脾细胞。用于细胞免疫的大果显示混合淋巴细胞反应(MLR),细胞毒性T淋巴细胞(CTL)和自然杀伤(NK)细胞的活性增加。另外,小鼠接受Ui的水提取物。大果恢复了CY抑制抑制的CTL,NK和MLR活性。因此, U。大果改善了细胞介导的免疫反应,并提供了基于细胞的补品材料的见识。

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