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首页> 外文期刊>Retrovirology >Clonal anergy of CD117 + chB6 + B cell progenitors induced by avian leukosis virus subgroup J is associated with immunological tolerance
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Clonal anergy of CD117 + chB6 + B cell progenitors induced by avian leukosis virus subgroup J is associated with immunological tolerance

机译:J禽白血病病毒亚群诱导的CD117 + chB6 + B细胞祖细胞的克隆无能与免疫耐受相关

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Background The pathogenesis of immunological tolerance caused by avian leukosis virus subgroup J (ALV-J), an oncogenic retrovirus, is largely unknown. Results In this study, the development, differentiation, and immunological capability of B cells and their progenitors infected with ALV-J were studied both morphologically and functionally by using a model of ALV-J congenital infection. Compared with posthatch infection, congenital infection of ALV-J resulted in severe immunological tolerance, which was identified as the absence of detectable specific antivirus antibodies. In congenitally infected chickens, immune organs, particularly the bursa of Fabricius, were poorly developed. Moreover, IgM-and IgG-positive cells and total immunoglobulin levels were significantly decreased in these chickens. Large numbers of bursa follicles with no differentiation into cortex and medulla indicated that B cell development was arrested at the early stage. Flow cytometry analysis further confirmed that ALV-J blocked the differentiation of CD117 + chB6 + B cell progenitors in the bursa of Fabricius. Furthermore, both the humoral immunity and the immunological capability of B cells and their progenitors were significantly suppressed, as assessed by (a) the antibody titres against sheep red blood cells and the Marek’s disease virus attenuated serotype 1 vaccine; (b) the proliferative response of B cells against thymus-independent antigen lipopolysaccharide (LPS) in the spleen germinal centres; and (c) the capacities for proliferation, differentiation and immunoglobulin gene class-switch recombination of B cell progenitors in response to LPS and interleukin-4(IL-4) in vitro. Conclusions These findings suggested that the anergy of B cells in congenitally infected chickens is caused by the developmental arrest and dysfunction of B cell progenitors, which is an important factor for the immunological tolerance induced by ALV-J.
机译:背景技术致癌性逆转录病毒禽白血病J亚组(ALV-J)引起的免疫耐受的发病机理在很大程度上尚不清楚。结果本研究使用ALV-J先天性感染模型从形态学和功能上研究了被ALV-J感染的B细胞及其祖细胞的发育,分化和免疫学能力。与孵化后感染相比,先天性ALV-J感染导致严重的免疫耐受,这被确定为缺乏可检测的特异性抗病毒抗体。在先天感染的鸡中,免疫器官,特别是Fabricius的法氏囊发育不良。此外,这些鸡的IgM和IgG阳性细胞以及总免疫球蛋白水平显着降低。没有分化成皮质和延髓的大量囊囊卵泡表明,B细胞发育在早期被阻止。流式细胞仪分析进一步证实ALV-J阻断了Fabricius滑囊中CD117 + chB6 + B细胞祖细胞的分化。此外,通过(a)针对绵羊红细胞的抗体效价和马立克氏病病毒减毒的血清型1疫苗评估,B细胞及其祖细胞的体液免疫力和免疫能力均被显着抑制。 (b)B细胞对脾生发中心中不依赖胸腺的抗原脂多糖(LPS)的增殖反应; (c)B细胞祖细胞在体外对LPS和白介素4(IL-4)的增殖,分化和免疫球蛋白基因类别转换重组的能力。结论这些发现表明,先天感染鸡的B细胞无能是由B细胞祖细胞的发育停滞和功能障碍引起的,这是ALV-J诱导免疫耐受的重要因素。

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