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Increased Hematopoietic Stem Cells/Hematopoietic Progenitor Cells Measured as Endogenous Spleen Colonies in Radiation-Induced Adaptive Response in Mice (Yonezawa Effect)

机译:辐射诱导的小鼠适应性反应中测量为内源性脾集落的增加的造血干细胞/造血祖细胞(米泽效应)

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The existence of radiation-induced adaptive response (AR) was reported in varied biosystems. In mice, the first in vivo AR model was established using X-rays as both the priming and the challenge doses and rescue of bone marrow death as the end point. The underlying mechanism was due to the priming radiation-induced resistance in the blood-forming tissues. In a series of investigations, we further demonstrated the existence of AR using different types of ionizing radiation (IR) including low linear energy transfer (LET) X-rays and high LET heavy ion. In this article, we validated hematopoietic stem cells/hematopoietic progenitor cells (HSCs/HPCs) measured as endogenous colony-forming units-spleen (CFU-S) under AR inducible and uninducible conditions using combination of different types of IR. We confirmed the consistency of increased CFU-S number change with the AR inducible condition. These findings suggest that AR in mice induced by different types of IR would share at least in part a common underlying mechanism, the priming IR-induced resistance in the blood-forming tissues, which would lead to a protective effect on the HSCs/HPCs and play an important role in rescuing the animals from bone marrow death. These findings provide a new insight into the mechanistic study on AR in vivo.
机译:在各种生物系统中都报告了辐射诱发的适应性反应(AR)的存在。在小鼠中,第一个体内AR模型是使用X射线作为引发剂量和攻击剂量,并以挽救骨髓死亡为终点而建立的。潜在的机制是由于在造血组织中引发了辐射诱导的抗性。在一系列研究中,我们进一步证明了使用不同类型的电离辐射(IR)的AR的存在,包括低线性能量转移(LET)X射线和高LET重离子。在本文中,我们验证了造血干细胞/造血祖细胞(HSCs / HPCs)在AR可诱导和不可诱导条件下使用不同类型的IR组合作为内源菌落形成单位脾(CFU-S)进行测量。我们证实了AR诱导条件下CFU-S数目增加的一致性。这些发现表明,由不同类型的IR诱导的小鼠中的AR将至少部分共有一个共同的潜在机制,即IR在血液形成组织中引发的抗性,这将导致对HSC / HPC的保护作用。在拯救动物免于骨髓死亡中起重要作用。这些发现为体内AR的机理研究提供了新的见识。

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