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Comprehensive validation of T- and B-cell deficiency in rag1-null zebrafish: Implication for the robust innate defense mechanisms of teleosts

机译:rag1-null斑马鱼的T细胞和B细胞缺乏症的全面验证:对硬骨鱼强大的先天防御机制的意义

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摘要

rag1 −/− zebrafish have been employed in immunological research as a useful immunodeficient vertebrate model, but with only fragmentary evidence for the lack of functional adaptive immunity. rag1-null zebrafish exhibit differences from their human and murine counterparts in that they can be maintained without any specific pathogen-free conditions. To define the immunodeficient status of rag1 −/− zebrafish, we obtained further functional evidence on T- and B-cell deficiency in the fish at the protein, cellular, and organism levels. Our developed microscale assays provided evidence that rag1 −/− fish do not possess serum IgM protein, that they do not achieve specific protection even after vaccination, and that they cannot induce antigen-specific CTL activity. The mortality rate in non-vaccinated fish suggests that rag1 −/− fish possess innate protection equivalent to that of rag1 +/− fish. Furthermore, poly(I:C)-induced immune responses revealed that the organ that controls anti-viral immunity is shifted from the spleen to the hepatopancreas due to the absence of T- and B-cell function, implying that immune homeostasis may change to an underside mode in rag-null fish. These findings suggest that the teleost relies heavily on innate immunity. Thus, this model could better highlight innate immunity in animals that lack adaptive immunity than mouse models.
机译:rag1 -/-斑马鱼已在免疫学研究中用作有用的免疫缺陷脊椎动物模型,但仅有部分证据表明缺乏功能性适应性免疫。 rag1-null斑马鱼与人类和鼠类斑马鱼表现出差异,因为它们可以在没有任何特定的无病原体条件下进行维护。为了定义rag1 -/-斑马鱼的免疫缺陷状态,我们获得了蛋白质,细胞和生物体水平上鱼类T细胞和B细胞缺陷的进一步功能证据。我们开发的微观分析方法提供了证据,证明rag1 -// 鱼不具有血清IgM蛋白,即使在接种疫苗后也无法获得特异性保护,并且它们不能诱导抗原特异性CTL活性。未接种疫苗的鱼的死亡率表明rag1 -/-鱼具有与rag1 +/- 鱼相同的先天保护。此外,poly(I:C)诱导的免疫反应表明,由于缺乏T细胞和B细胞功能,控制抗病毒免疫力的器官已从脾脏转移到肝胰腺,这意味着免疫稳态可能会改变为抹布鱼的底面模式。这些发现表明硬骨鱼严重依赖于先天免疫。因此,该模型可以比小鼠模型更好地突出缺乏适应性免疫的动物的先天免疫。

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