淡水硬骨鱼头部肾和脾脏细胞的季节性免疫节律

Rakesh Kumar Chandra , Ajay Kumar Bhardwaj , Atanu Kumar Pati , Manish Kumar Tripathi
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引用次数: 0

摘要

免疫功能的年度节律反映了应对环境压力的关键生理策略。鱼类是研究年度节律和了解脊椎动物生物系统进化的关键动物模型。目前的研究计划评估硬骨鱼斑钱鱼免疫细胞先天免疫功能的年度变化。评估头肾和脾脏巨噬细胞吞噬作用、超氧化物生成和亚硝酸盐释放,以评估先天免疫。在有丝分裂原存在的情况下,通过头肾和脾淋巴细胞增殖来测量细胞介导的免疫。头肾和脾脏细胞产生的超氧阴离子在10月份达到最大值。亚硝酸盐产量呈双峰型,第一个峰值在11月,第二个峰值在3月。Cosinor分析显示,亚硝酸盐生产的年度节律具有统计学意义。同样,吞噬作用和淋巴细胞增殖也显示出具有统计学意义的年度节律。得出的结论是,动物在季节性变化的环境中保持最佳的免疫反应。在一年中的某些时间提高免疫力可能有助于动物应对季节性环境压力。进一步的研究可能集中在测量季节诱导的免疫力提高后的存活率和繁殖成功率上。
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Seasonal Immune Rhythms of head kidney and spleen cells in the freshwater Teleost, Channa punctatus

Annual rhythms in immune function are the reflection of a crucial physiological strategy to deal with environmental stressors. The fish are pivotal animal models to study the annual rhythm and to understand the evolution of the vertebrate biological system. The current research was planned to assess the annual changes in the innate immune functions of immune cells in a teleost, Channa punctatus. Head kidney and splenic macrophage phagocytosis, superoxide generation, and nitrite release were evaluated to assess innate immunity. Cell-mediated immunity was measured through head kidney and splenic lymphocyte proliferation in presence of mitogens. The superoxide anion generation by the cells of head kidney and spleen was maximum in October. A bimodal pattern in nitrite production was observed with the first peak in November and the second in March. Cosinor analysis revealed a statistically significant annual rhythm in nitrite production. Similarly, phagocytosis and lymphocyte proliferation also showed statistically significant annual rhythms. It was concluded that animals maintain an optimum immune response in seasonally changing environments. Elevated immunity during certain times of the year might assist animals deal with seasonal environmental stressors. Further research may be focused upon measuring survival rate and reproductive success after season induced elevated immunity.

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