Tronik-Le Roux Diana, Nicola Marie-Anne, Vaigot Pierre, Nurden Paquita
a CEA, SRHI, Institute of Emerging Diseases and Innovative Therapies (iMETI), 75010 Paris, France.
Radiat Res. 2015 Jan;183(1):52-63. doi: 10.1667/RR13742.1. Epub 2015 Jan 7.
Hematopoietic stem cells (HSC) are essential for maintaining the integrity of complex and long-lived organisms. HSC, which are self-renewing, reconstitute the hematopoietic system through out life and facilitate long-term repopulation of myeloablated recipients. We have previously demonstrated that when mice are exposed to sublethal doses of ionizing radiation, subsets of the stem/progenitor compartment are affected. In this study we examine the role of thrombopoietin (TPO) on the regenerative capacities of HSC after irradiation and report the first demonstration of efficacy of a single injection of TPO shortly after in vivo exposure to ionizing radiation for reducing HSC injury and improving their functional outcome. Our results demonstrate that TPO treatment not only reduced the number of apoptotic cells but also induced a significant modification of their intrinsic characteristics. These findings were supported by transplantation assays with long-term HSC that were irradiated or unirradiated, TPO treated or untreated, in CD45.1/CD45.2 systems and by using luciferase-labeled HSC for direct bioluminescence imaging in living animals. Of particular importance, our data demonstrate the skull to be a highly favorable site for the TPO-induced emergence of hematopoietic cells after irradiation, suggesting a TPO-mediated relationship of primitive hematopoietic cells to an anatomical component. Together, the data presented here: provide novel findings about aspects of TPO action on stem cells, open new areas of investigation for therapeutic options in patients who are treated with radiation therapy, and show that early administration of a clinically suitable TPO-agonist counteracts the previously observed adverse effects.
造血干细胞(HSC)对于维持复杂且长寿生物体的完整性至关重要。HSC具有自我更新能力,在整个生命过程中重建造血系统,并促进骨髓消融受体的长期再填充。我们之前已经证明,当小鼠暴露于亚致死剂量的电离辐射时,干细胞/祖细胞区室的亚群会受到影响。在本研究中,我们研究了血小板生成素(TPO)在辐射后对HSC再生能力的作用,并首次证明在体内暴露于电离辐射后不久单次注射TPO可有效减少HSC损伤并改善其功能结果。我们的结果表明,TPO治疗不仅减少了凋亡细胞的数量,还显著改变了它们的内在特性。这些发现得到了在CD45.1/CD45.2系统中对经辐射或未经辐射、经TPO处理或未处理的长期HSC进行移植试验的支持,以及通过使用荧光素酶标记的HSC在活体动物中进行直接生物发光成像的支持。特别重要的是,我们的数据表明颅骨是辐射后TPO诱导造血细胞出现的高度有利部位,这表明原始造血细胞与解剖成分之间存在TPO介导的关系。总之,此处呈现的数据:提供了关于TPO对干细胞作用方面的新发现,为接受放射治疗的患者开辟了新的治疗选择研究领域,并表明早期给予临床上合适的TPO激动剂可抵消先前观察到的不良反应。