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Nutrition beyond nutrition: plausibility of immunotrophic nutrition for space travel.

机译:营养超越营养:免疫营养营养在太空旅行中的合理性。

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BACKGROUND AND AIMS: Microgravity has adverse effects on the immune system. We examined the effects of supplemental dietary nucleotides on immune function in ground-based in vivo anti-orthostatic tail-suspended (AOS) mice and in vitro (bioreactor-BIO) analogs of microgravity. METHODS: BALB/c mice were divided into the following three groups: group housed, single isolation, and AOS. Mice were fed either control chow or chow supplemented with RNA or uracil. Immune function was assessed by in vivo popliteal lymph node proliferation (PLN), in vitro PHA-stimulated proliferation of splenocytes and cytokine production. BIO splenocytes were cultured in vitro with/without PHA, a nucleoside-nucleotide mixture (NS/NT) or uridine. The cell proliferation and scanning electron microscopic examination for cells were carried out.RESULTS: PLN response was significantly suppressed in AOS mice (P<0.05) and was restored by RNA and uracil diets. Splenocytes from AOS mice had decreased phytohemagglutinin (PHA)-stimulated proliferation, decreased IL-2 and IFN-gamma cytokine levels (P<0.05). These responses were restored by RNA and uracil diets. In BIO cultures, PHA response was suppressed significantly, and uridine and NS/NT restored the proliferative responses. Scanning electron microscopic analysis of cells cultured in BIO revealed cells with pinched, distorted and eroded membranes. Nucleotide supplementation especially uridine restored normal activated cell surface appearance and ruffling. CONCLUSION: In the microgravity analog environment of AOS and BIO, supplemental nucleotides and especially uracil/uridine have up-regulating and immunoprotective effects with potential as a countermeasure to the observed immune dysfunction in true microgravity.
机译:背景与目的:微重力对免疫系统有不利影响。我们检查了补充饮食核苷酸对地面基体内抗直立性尾部悬浮(AOS)小鼠和体外微重力(bioreactor-BIO)类似物免疫功能的影响。方法:将BALB / c小鼠分为以下三组:笼养,单次隔离和AOS。给小鼠饲喂对照食物或补充有RNA或尿嘧啶的食物。通过体内pop神经淋巴结增生(PLN),体外PHA刺激的脾细胞增生和细胞因子产生来评估免疫功能。在有/无PHA,核苷-核苷酸混合物(NS / NT)或尿苷的体外培养BIO脾细胞。结果:AOS小鼠的PLN反应得到了显着抑制(P <0.05),并通过RNA和尿嘧啶饮食得以恢复。 AOS小鼠脾细胞的植物血凝素(PHA)刺激的增殖减少,IL-2和IFN-γ细胞因子水平降低(P <0.05)。 RNA和尿嘧啶饮食恢复了这些反应。在BIO培养物中,PHA反应被显着抑制,尿苷和NS / NT恢复了增殖反应。对在BIO中培养的细胞进行的扫描电子显微镜分析显示,细胞的膜被挤压,扭曲和腐蚀。补充核苷酸尤其是尿苷可恢复正常的活化细胞表面外观和起皱。结论:在AOS和BIO的微重力模拟环境中,补充核苷酸,尤其是尿嘧啶/尿苷具有上调和免疫保护作用,有可能作为在真正的微重力下观察到的免疫功能障碍的对策。

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