首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Adenovector-mediated expression of human thrombopoietin cDNA in immune-compromised mice: insights into the pathophysiology of osteomyelofibrosis.
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Adenovector-mediated expression of human thrombopoietin cDNA in immune-compromised mice: insights into the pathophysiology of osteomyelofibrosis.

机译:腺病毒介导的人血小板生成素cDNA在免疫受损小鼠中的表达:对骨髓纤维化的病理生理学的见解。

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摘要

Thrombopoietin (TPO) cDNA can be effectively delivered in vivo by adenovectors. Immune normal mice (BALB/c) and syngeneic mice with variable degrees of immune dysfunction nu, SCID, and NOD-SCID) were treated with an adenovirus vector expressing the human TPO cDNA (AdTPO). Platelet peaks were significantly higher in SCID and NOD-SCID mice compared with BALB/c and nu mice. Human plasma TPO concentration correlated with the platelet counts. SCID and NOD-SCID mice exhibited also granulocytosis and increased numbers of hemopoietic progenitors in bone marrow. Following platelet peak, BALB/c mice developed autoantibodies against murine TPO leading to thrombocytopenia and depletion of megakaryocytes and hemopoietic progenitors in bone marrow. AdTPO-treated SCID mice developed osteomyelofibrosis and extramedullary/extrasplenal hemopoiesis. In contrast, NOD-SCID mice with a similar magnitude of TPO overexpression did not show fibrotic changes in bone marrow. We conclude, first, that a chronic high level of TPO overexpression stimulates megakaryocytopoiesis and myelopoiesis leading to thrombocytosis and granulocytosis. Second, increased megakaryocytopoiesis is not sufficient for development of secondary osteomyelofibrosis. The functionally deficient monocytes and macrophages of NOD-SCID mice probably prevented fibrotic marrow changes. Third, immune deficiency enhances expression of adenovirally mediated transgenes, and fourth, xenogeneic transgene delivered by adenovector to a host with normal immune functions may induce loss of immune tolerance and autoimmune phenomenon.
机译:血小板生成素(TPO)cDNA可通过腺载体在体内有效递送。用表达人TPO cDNA(AdTPO)的腺病毒载体治疗免疫正常小鼠(BALB / c)和免疫功能障碍nu,SCID和NOD-SCID程度不同的同系小鼠。与BALB / c和nu小鼠相比,SCID和NOD-SCID小鼠的血小板峰值明显更高。人血浆TPO浓度与血小板计数相关。 SCID和NOD-SCID小鼠还表现出粒细胞增多和骨髓中造血祖细胞数量增加。血小板高峰后,BALB / c小鼠产生了针对鼠TPO的自身抗体,导致血小板减少以及骨髓中巨核细胞和造血祖细胞的消耗。用AdTPO处理的SCID小鼠发生了骨髓纤维化和髓外/脾外造血。相反,TPO过表达量相似的NOD-SCID小鼠在骨髓中未显示纤维化变化。我们首先得出结论,长期高水平的TPO过度表达会刺激巨核细胞生成和骨髓生成,从而导致血小板增多和粒细胞增多。第二,增加的巨核细胞生成不足以发展继发性骨髓纤维化。 NOD-SCID小鼠的功能缺陷性单核细胞和巨噬细胞可能阻止了纤维化骨髓的改变。第三,免疫缺陷增强了腺病毒介导的转基因的表达,第四,由腺载体传递给具有正常免疫功能的宿主的异种转基因可能会导致免疫耐受和自身免疫现象的丧失。

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