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首页> 外文期刊>Journal of applied toxicology >Role of hematopoietic microenvironment in prolonged impairment of B cell regeneration in age-related stromal-cell-impaired SAMP1 mouse: effects of a single dose of 5-fluorouracil.
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Role of hematopoietic microenvironment in prolonged impairment of B cell regeneration in age-related stromal-cell-impaired SAMP1 mouse: effects of a single dose of 5-fluorouracil.

机译:造血微环境在与年龄相关的基质细胞受损的SAMP1小鼠的B细胞再生的长期损伤中的作用:单剂5-氟尿嘧啶的作用。

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摘要

In this study, we examined the age-associated defect of stromal cells, which support B cell development, treated with 5-fluorouracil (5-FU) to induce severe perturbation of hematopoiesis, including B lymphocyte development, using SAMP1 mice exhibiting senescence-mimicking stromal-cell impairment after 30 weeks of age. Significant findings of this study are as follows: first, a marked and prolonged decrease in number of CFU-preB cells in non-SCI mice (58% of the steady-state level) associated with more markedly depressed number of CFU-preB cells in SCI mice (20% of the steady-state level), despite the absence of difference in the number of CFU-GMs during the period; second, in the non-SCI mice, a significant and prolonged up-regulation of GM-CSF and IL-6, positive regulators of myelopoiesis and suppressive factors of B lymphopoiesis, was observed. In SCI mice, greater and prolonged suppression of B lymphopoiesis was clearly demonstrated by the significant up-regulation of the negative regulator TNF-alpha associated with the concomitant marked down-regulation of the positive regulator SDF-1, although the increases of GM-CSF and IL-6 were limited. That is, 'negative complementation' makes preB recovery after 5-FU treatment impaired and prolonged. Principal component analysis clearly showed differences in the cytokine expression patterns in both early and later phases and the time course of the expression pattern of each cytokine between SCI and non-SCI mice without supervising information. An impaired regulation of the expressions of not only positive but also negative regulators after 5-FU treatment was, in part, the cause of the impaired regeneration of CFU-preB cells in SCI mice.
机译:在这项研究中,我们使用表现出模拟衰老的SAMP1小鼠,研究了与年龄相关的基质细胞缺陷,该缺陷支持B细胞发育,并经5-氟尿嘧啶(5-FU)处理以诱导严重造血功能紊乱,包括B淋巴细胞发育。 30周龄后基质细胞受损。这项研究的重要发现如下:首先,非SCI小鼠中CFU-preB细胞的数量显着且持续减少(稳态水平的58%),而CFU-preB细胞的数量显着降低。尽管在此期间CFU-GM的数量没有差异,但SCI小鼠(稳态水平的20%);第二,在非SCI小鼠中,观察到GM-CSF和IL-6显着且长时间的上调,骨髓生成的正调节剂和B淋巴细胞生成的抑制因子。在SCI小鼠中,负调节剂TNF-α的显着上调伴随着正调节剂SDF-1的显着下调,明显证明了B淋巴细胞生成受到更大和长期的抑制,尽管GM-CSF升高和IL-6是有限的。也就是说,“负互补”使5-FU治疗后的preB恢复受损并延长。主成分分析清楚地表明,在没有监督信息的情况下,SCI和非SCI小鼠之间早期和晚期细胞因子表达模式的差异以及每种细胞因子表达模式的时间变化。 5-FU处理后不仅正向调节剂的表达调节受损,而且负向调节剂的表达受损,部分原因是SCI小鼠CFU-preB细胞再生受损的原因。

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