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Hind limb unloading, a model of spaceflight conditions, leads to decreased B lymphopoiesis similar to aging

机译:后肢卸载是太空飞行条件的模型,导致类似于衰老的 B 淋巴细胞生成减少

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摘要

Within the bone marrow, the endosteal niche plays a crucial role in B-cell differentiation. Because spaceflight is associated with osteoporosis, we investigated whether changes in bone microstructure induced by a ground-based model of spaceflight, hind limb unloading (HU), could affect B lymphopoiesis. To this end, we analyzed both bone parameters and the frequency of early hematopoietic precursors and cells of theBlineage after 3, 6, 13, and 21 d of HU. We found that limb disuse leads to a decrease in both bone microstructure and the frequency of B-cell progenitors in the bone marrow. Although multi-potent hematopoietic progenitors were not affected by HU, a decrease in B lymphopoiesis was observed as of the common lymphoid progenitor (CLP) stage with a major block at the progenitor B (pro-B) to precursor B (pre-B) cell transition (5-to 10-fold decrease). Themodifications in B lymphopoiesis were similar to those observed in aged mice and, as with aging, decreased B-cell generation in HU mice was associated with reduced expression of B-cell transcription factors, early B-cell factor (EBF) and Pax5, and an alteration in STAT5-mediated IL-7 signaling. These findings demonstrate that mechanical unloading of hind limbs results in a decrease in early B-cell differentiation resembling age-related modifications in B lymphopoiesis.
机译:在骨髓中,骨内膜生态位在B细胞分化中起着至关重要的作用。由于太空飞行与骨质疏松症有关,我们研究了由地面太空飞行模型(后肢卸载(胡)诱导的骨微观结构变化是否会影响B淋巴细胞生成。为此,我们分析了胡 3、6、13和21 d后骨骼参数和早期造血前体和细胞的频率。我们发现肢体废用会导致骨髓中骨微观结构和B细胞祖细胞频率的降低。虽然多能造血祖细胞不受 胡 的影响,但在共同淋巴祖细胞 (CLP) 阶段观察到 B 淋巴细胞生成减少,祖细胞 B(前体 B)到前体 B(前体 B)细胞转变处出现主要阻滞(减少 5 至 10 倍)。B淋巴细胞生成的修饰与在老年小鼠中观察到的相似,并且与衰老一样,胡小鼠中B细胞生成的减少与B细胞转录因子,早期B细胞因子(EBF)和Pax5的表达降低以及STAT5介导的IL-7信号传导的改变有关。这些发现表明,后肢的机械卸载导致早期B细胞分化减少,类似于B淋巴细胞生成中与年龄相关的修饰。

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