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Extracellular Vesicles Mediate Radiation-Induced Systemic Bystander Signals in the Bone Marrow and Spleen

机译:细胞外囊泡在骨髓和脾脏中介导辐射诱导的系统旁观者信号。

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摘要

Radiation-induced bystander effects refer to the induction of biological changes in cells not directly hit by radiation implying that the number of cells affected by radiation is larger than the actual number of irradiated cells. Recent in vitro studies suggest the role of extracellular vesicles (EVs) in mediating radiation-induced bystander signals, but in vivo investigations are still lacking. Here, we report an in vivo study investigating the role of EVs in mediating radiation effects. C57BL/6 mice were total-body irradiated with X-rays (0.1, 0.25, 2 Gy), and 24 h later, EVs were isolated from the bone marrow (BM) and were intravenously injected into unirradiated (so-called bystander) animals. EV-induced systemic effects were compared to radiation effects in the directly irradiated animals. Similar to direct radiation, EVs from irradiated mice induced complex DNA damage in EV-recipient animals, manifested in an increased level of chromosomal aberrations and the activation of the DNA damage response. However, while DNA damage after direct irradiation increased with the dose, EV-induced effects peaked at lower doses. A significantly reduced hematopoietic stem cell pool in the BM as well as CD4+ and CD8+ lymphocyte pool in the spleen was detected in mice injected with EVs isolated from animals irradiated with 2 Gy. These EV-induced alterations were comparable to changes present in the directly irradiated mice. The pool of TLR4-expressing dendritic cells was different in the directly irradiated mice, where it increased after 2 Gy and in the EV-recipient animals, where it strongly decreased in a dose-independent manner. A panel of eight differentially expressed microRNAs (miRNA) was identified in the EVs originating from both low- and high-dose-irradiated mice, with a predicted involvement in pathways related to DNA damage repair, hematopoietic, and immune system regulation, suggesting a direct involvement of these pathways in mediating radiation-induced systemic effects. In conclusion, we proved the role of EVs in transmitting certain radiation effects, identified miRNAs carried by EVs potentially responsible for these effects, and showed that the pattern of changes was often different in the directly irradiated and EV-recipient bystander mice, suggesting different mechanisms.
机译:辐射诱导的旁观者效应是指诱导未直接受到辐射打击的细胞发生生物学变化,这意味着受辐射影响的细胞数量大于受辐射细胞的实际数量。最近的体外研究表明,细胞外囊泡(evs)在介导辐射诱导的旁观者信号中的作用,但仍缺乏体内研究。在这里,我们报告了一项体内研究,研究电动汽车在介导辐射效应中的作用。对C57BL / 6小鼠进行X射线全身照射(0.1、0.25、2yGy),然后在24 h后从骨髓(BM)中分离出EV,然后将其静脉内注射到未经照射的动物(所谓的旁观者)中。将EV引起的全身作用与直接照射动物的放射作用进行了比较。与直接辐射相似,被辐照的小鼠的电动汽车在电动汽车接受动物中引起复杂的DNA损伤,表现为染色体畸变水平增加和DNA损伤反应的激活。然而,尽管直接照射后DNA损伤随剂量增加,但EV诱导的作用在较低剂量下达到峰值。在注射了EV的小鼠中,小鼠的BM中的造血干细胞池以及CD4 + 和CD8 + 淋巴细胞池显着减少,这些动物是从用2 Gy。这些由EV引起的变化与直接照射的小鼠中存在的变化相当。在直接照射的小鼠中,表达TLR4的树突状细胞的池有所不同,在2μGy后,其增加;在接受EV的动物中,其以剂量独立的方式强烈降低。在源自低剂量和高剂量照射小鼠的电动汽车中鉴定出一组八种差异表达的微小RNA(miRNA),预计它们参与了与DNA损伤修复,造血和免疫系统调节有关的途径,表明直接这些途径参与介导辐射诱导的全身效应。总之,我们证明了电动汽车在传递某些辐射作用中的作用,鉴定了由电动汽车携带的可能引起这些作用的miRNA,并表明在直接照射和接受电动汽车的旁观者小鼠中,变化模式通常是不同的,提示了不同的机制。

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