首页> 美国卫生研究院文献>Journal of Traditional and Complementary Medicine >The Fruiting Bodies Submerged Culture Biomass and Acidic Polysaccharide Glucuronoxylomannan of Yellow Brain Mushroom Tremella mesenterica Modulate the Immunity of Peripheral Blood Leukocytes and Splenocytes in Rats with Impaired Glucose Tolerance
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The Fruiting Bodies Submerged Culture Biomass and Acidic Polysaccharide Glucuronoxylomannan of Yellow Brain Mushroom Tremella mesenterica Modulate the Immunity of Peripheral Blood Leukocytes and Splenocytes in Rats with Impaired Glucose Tolerance

机译:黄脑蘑菇肠系膜银耳的子实体浸没的培养生物量和酸性多糖葡糖醛酸甘露聚糖调节葡萄糖耐量受损大鼠的外周血白细胞和脾细胞的免疫力

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摘要

The prevalence of diabetes mellitus (DM), a chronic disease with hyperglycemia and impaired immune function, is increasing worldwide. Progression from impaired glucose tolerance (IGT) to type 2 DM has recently become a target for early intervention. The fruiting bodies (FB) and submerged culture mycelium (CM) of Tremella mesenterica, an edible and medicinal mushroom, have been demonstrated to have antihyperglycemic and immunomodulatory activities in type 1 DM rats. Herein, we investigated the effects of acidic polysaccharide glucuronoxylomannan (GX) extracted from CM on the immunocyte responses. Male Wistar rats were injected with streptozotocin (65 mg/kg) plus nicotinamide (200 mg/kg) for the induction of IGT, and gavaged daily with vehicle, FB, CM, or GX (1 g/kg/day). Rats injected with saline and gavaged vehicle were used as controls. Two weeks later, peripheral blood leukocytes (PBLs) and splenocytes were collected. Ingestion of FB, CM, and GX significantly decreased blood glucose levels in the postprandial period and in oral glucose tolerance test, and partially reversed T-splenocytic proliferation in IGT rats. CM significantly decreased T-helper lymphocytes in the PBLs and B-splenocytes. In addition, FB, CM, and GX significantly reversed the IGT-induced decreases in tumor necrosis factor-α production; GX significantly increased interleukin-6 production in T-lymphocytes in the PBLs and splenocytes; and CM and GX significantly reversed IGT-induced decrease in interferon-γ production in T-lymphocytes in the spleen. In conclusion, FB, CM, and acidic polysaccharide GX of T. mesenterica may increase T-cell immunity via the elevation of proinflammatory and T-helper cytokine production in rats with impaired glucose tolerance.
机译:糖尿病(DM)是一种患有高血糖症且免疫功能受损的慢性疾病,在世界范围内呈上升趋势。从糖耐量降低(IGT)到2型DM的进展最近已成为早期干预的目标。已经证明了可食用和药用蘑菇肠系膜银耳的子实体(FB)和水下培养菌丝体(CM)具有1型DM大鼠的降血糖和免疫调节活性。在这里,我们研究了从CM提取的酸性多糖葡糖醛酸甘露聚糖(GX)对免疫细胞反应的影响。给雄性Wistar大鼠注射链脲佐菌素(65 mg / kg)加烟酰胺(200 mg / kg),以诱导IGT,并每天用赋形剂,FB,CM或GX(1 g / kg /天)灌胃。注射生理盐水和管饲​​媒介的大鼠用作对照。两周后,收集外周血白细胞(PBL)和脾细胞。在餐后和口服葡萄糖耐量试验中,摄入FB,CM和GX会显着降低血糖水平,并部分逆转IGT大鼠的T脾细胞增殖。 CM显着降低了PBL和B脾细胞中的T辅助淋巴细胞。此外,FB,CM和GX显着逆转了IGT诱导的肿瘤坏死因子-α产生的减少; GX显着增加了PBL和脾细胞中T淋巴细胞中白细胞介素6的产生; CM和GX显着逆转了IGT诱导的脾T淋巴细胞中干扰素γ生成的下降。总之,肠系膜肠球菌的FB,CM和酸性多糖GX可能通过增加葡萄糖耐量受损大鼠的促炎性和T辅助细胞因子产生而提高T细胞免疫力。

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