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Koi sleepy disease as a pathophysiological and immunological consequence of a branchial infection of common carp with carp edema virus

机译:Koi Sleepy疾病是鲤鱼水肿病毒常见鲤鱼的鳃感发和免疫后果

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Gills of fish are involved in respiration, excretion and osmoregulation. Due to numerous interactions between these processes, branchial diseases have serious implications on fish health. Here, “koi sleepy disease” (KSD), caused by carp edema virus (CEV) infection was used to study physiological, immunological and metabolic consequences of a gill disease in fish. A metabolome analysis shows that the moderately hypoxic-tolerant carp can compensate the respiratory compromise related to this infection by various adaptations in their metabolism. Instead, the disease is accompanied by a massive disturbance of the osmotic balance with hyponatremia as low as 71.65?mmol L ?1 , and an accumulation of ammonia in circulatory blood causing a hyperammonemia as high as 1123.24?μmol L ?1 . At water conditions with increased ambient salt, the hydro-mineral balance and the ammonia excretion were restored. Importantly, both hyponatremia and hyperammonemia in KSD-affected carp can be linked to an immunosuppression leading to a four-fold drop in the number of white blood cells, and significant downregulation of cd4, tcr a2 and igm expression in gills, which can be evaded by increasing the ion concentration in water. This shows that the complex host-pathogen interactions within the gills can have immunosuppressive consequences, which have not previously been addressed in fish. Furthermore, it makes the CEV infection of carp a powerful model for studying interdependent pathological and immunological effects of a branchial disease in fish.
机译:鱼的鳃参与呼吸,排泄和OsmoreGulation。由于这些过程之间的许多相互作用,鳃疾病对鱼类健康有严重影响。这里,由鲤鱼水肿病毒(CEV)感染引起的“KOI困病疾病”(KSD)研究了鱼类中鳃病的生理,免疫学和代谢后果。代谢物分析表明,中等缺氧鲤鱼可以通过各种适应在其新陈代谢中补偿与这种感染相关的呼吸折衷。相反,该疾病伴随着低至71.65摩尔的低至71.65μl≤1的渗透平衡的肿仓平衡,以及在循环血液中的氨的积累,导致高达1123.24Ω·μmoll≤1。在水条件下,环境盐增加,水矿物平衡和氨排泄恢复。重要的是,KSD受影响的鲤鱼中的低钠血症和高血症可以与免疫抑制有关,导致白细胞数量的四倍,并且在鳃中的CD4,TCR A2和IgM表达的显着下调,这可以逃避通过增加水中的离子浓度。这表明鳃内的复杂宿主病原体相互作用可以具有免疫抑制后果,其先前未在鱼类中寻址。此外,它使鲤鱼的CEV感染成为研究鱼中鳃病的相互依存病理和免疫效应的强大模型。

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