首页> 美国卫生研究院文献>Journal of Virology >Bone marrow failure by cytomegalovirus is associated with an in vivo deficiency in the expression of essential stromal hemopoietin genes.
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Bone marrow failure by cytomegalovirus is associated with an in vivo deficiency in the expression of essential stromal hemopoietin genes.

机译:巨细胞病毒引起的骨髓衰竭与体内必需基质造血素基因表达的缺乏有关。

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摘要

Bone marrow (BM) failure associated with cytomegalovirus (CMV) infection is a feared complication after clinical BM transplantation. Experiments in long-term BM cultures have indicated that BM stromal cells (BMSC) are targets of productive CMV infection, but an in situ infection of BM stroma remained to be documented, and the pathomechanism is open to question. Here we describe a murine in vivo model of lethal CMV aplastic anemia (CMV-AA). The reconstitution of hematopoietic progenitor cells expressing stem cell factor (SCF) receptor was found to be defective in CMV-AA. While murine CMV replication in permissive parenchymal tissues is cytolytic, the hematopoietic cord was found to be a site of very limited virus production with foci of reticular BMSC expressing the intranuclear viral IE1 protein, but with only a few BMSC positive for viral genome in the in situ hybridization. XX-XY BM chimeras were established in order to quantitate Y-chromosome-tagged BMSC by a PCR specific for the male-sex-determining gene Tdy. This approach revealed that murine CMV infection is not associated with a significant loss of BMSC. Despite the physical integrity of the stromal network, the functional integrity of the stroma was impaired. While housekeeping genes were expressed normally in BMSC of infected mice, the expression of genes encoding the essential hemopoietins SCF, granulocyte colony-stimulating factor, and interleukin-6 was markedly reduced. In conclusion, the mechanism of BM failure is not a stromal lesion but an insufficient stromal function. These findings explain CMV-AA as a manifestation of multiple hemopoietin deficiency.
机译:与巨细胞病毒(CMV)感染相关的骨髓(BM)衰竭是临床BM移植后令人担忧的并发症。长期BM培养的实验表明BM基质细胞(BMSC)是生产性CMV感染的靶标,但BM基质的原位感染仍有待记录,其致病机理尚有待商question。在这里,我们描述了致死性CMV再生障碍性贫血(CMV-AA)的小鼠体内模型。发现在CMV-AA中表达干细胞因子(SCF)受体的造血祖细胞的重建是有缺陷的。虽然鼠源巨细胞病毒在允许的实质组织中复制具有溶细胞作用,但发现造血索是非常有限的病毒生产位点,网状BMSC的病灶表达核内病毒IE1蛋白,但在体内只有少数BMSC对病毒基因组呈阳性原位杂交。建立XX-XY BM嵌合体是为了通过对雄性决定基因Tdy特异的PCR定量标记Y染色体的BMSC。这种方法表明,鼠CMV感染与BMSC的大量丢失无关。尽管基质网络具有物理完整性,但基质的功能完整性却受到损害。尽管看家基因在感染小鼠的骨髓间充质干细胞中正常表达,但编码必需造血素SCF,粒细胞集落刺激因子和白介素6的基因表达却明显降低。总之,BM衰竭的机制不是基质病变,而是基质功能不足。这些发现解释了CMV-AA是多种造血素缺乏症的表现。

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