首页> 外文期刊>Annals of hematology >Dynamics of hematopoiesis is disrupted by impaired hematopoietic microenvironment in a mouse model of hemophagocytic lymphohistiocytosis
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Dynamics of hematopoiesis is disrupted by impaired hematopoietic microenvironment in a mouse model of hemophagocytic lymphohistiocytosis

机译:血液缺血的动态被血液化学淋巴管淋巴细胞症小鼠模型中的造血微环境受损破坏

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Hemophagocytic lymphohistiocytosis (HLH) is a life-threatening systemic hyperinflammatory disorder. We found recently that repeated lipopolysaccharide (LPS) treatment induces HLH-like features in senescence-accelerated mice (SAMP1/TA-1) but not in senescence-resistant control mice (SAMR1). In this study, we analyzed the dynamics of hematopoiesis in this mouse model of HLH. When treated repeatedly with LPS, the numbers of myeloid progenitor cells (CFU-GM) and B-lymphoid progenitor cells (CFU-preB) in the bone marrow (BM) rapidly decreased after each treatment in both strains. The number of CFU-GM in SAMP1/TA-1 and SAMR1, and of CFU-preB in SAMR1, returned to pretreatment levels by 7 days after each treatment. However, the recovery in the number of CFU-preB in SAMP1/TA-1 was limited. In both strains, the BM expression of genes encoding positive regulators of myelopoiesis (granulocyte colony-stimulating factor (G-CSF), granulocyte macrophage colony-stimulating factor (GM-CSF), and interleukin (IL)-6), and negative regulators of B lymphopoiesis (tumor necrosis factor (TNF)-alpha) was increased. The expression of genes encoding positive regulators of B lymphopoiesis (stromal-cell derived factor (SDF)-1, IL-7, and stem cell factor (SCF)) was persistently decreased in SAMP1/TA-1 but not in SAMR1. Expression of the gene encoding p16(INK4a) and the proportion of beta-galactosidase-positive cells were increased in cultured stromal cells obtained from LPS-treated SAMP1/TA-1 but not in those from LPS-treated SAMR1. LPS treatment induced qualitative changes in stromal cells, which comprise the microenvironment supporting appropriate hematopoiesis, in SAMP1/TA-1; these stromal cell changes are inferred to disrupt the dynamics of hematopoiesis. Thus, hematopoietic tissue is one of the organs that suffer life-threatening damage in HLH.
机译:血糖淋巴管激菌症(HLH)是一种危及生命的全身高炎症疾病。我们最近发现重复的脂多糖(LPS)处理诱导衰老加速小鼠(SAMP1 / TA-1)中的类似HLH样特征,但不在耐衰老控制小鼠(SAMR1)中。在这项研究中,我们分析了HLH的这种小鼠模型中血缺肌的动态。当用LPS反复治疗时,在两种菌株中的每次治疗后,骨髓祖细胞(CFU-GM)和B淋巴祖细胞(CFU-PREB)的数量迅速下降。 SAMP1 / TA-1和SAMR1中的CFU-GM和SAMR1中的CFU-PREB的数量在每次治疗后7天恢复到预处理水平。然而,SAMP1 / TA-1中CFU-PRE的数量的恢复是有限的。在两种菌株中,编码髓鞘肌阳性调节剂(粒细胞菌落刺激因子(G-CSF),粒细胞巨噬细胞菌落刺激因子(GM-CSF)和白细胞介素(IL)-6)和负调节剂的基因的BM表达B淋巴细胞(肿瘤坏死因子(TNF) - alpha)增加。在SAMP1 / TA-1中持续下降,编码B淋巴细胞患者阳性调节剂(基质细胞衍生因子(SDF)-1,IL-7和干细胞因子(SCF))的表达持续下降,但不在SAMR1中。编码P16(INK4A)的基因的表达和β-半乳糖苷酶阳性细胞的比例在从LPS处理的SAMP1 / TA-1获得的培养的基质细胞中增加,但不在LPS处理的SAMR1中的那些中增加。 LPS治疗诱导基质细胞的定性变化,其包含支持适当血液缺陷的微环境,SAMP1 / TA-1;推断这些基质细胞变化以扰乱血液缺陷的动态。因此,造血组织是在HLH遭受危及生命的损伤的器官之一。

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