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Transmission of Signals from Rats Receiving High Doses of Microbeam Radiation to Cage Mates: An Inter-Mammal Bystander Effect

机译:来自接受高剂量微束辐射的大鼠的信号传递到笼中的伴侣:哺乳动物之间的旁观者效应。

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摘要

Inter-animal signaling from irradiated to non-irradiated organisms has been demonstrated for whole body irradiated mice and also for fish. The aim of the current study was to look at radiotherapy style limited exposure to part of the body using doses relevant in preclinical therapy. High dose homogenous field irradiation and the use of irradiation in the microbeam radiation therapy mode at the European Synchrotron Radiation Facility (ESRF) at Grenoble was tested by giving high doses to the right brain hemisphere of the rat. The right and left cerebral hemispheres and the urinary bladder were later removed to determine whether abscopal effects could be produced in the animals and also whether effects occurred in cage mates housed with them. The results show strong bystander signal production in the contra-lateral brain hemisphere and weaker effects in the distant bladder of the irradiated rats. Signal strength was similar or greater in each tissue in the cage mates housed for 48hrs with the irradiated rats. Our results support the hypothesis that proximity to an irradiated animal induces signalling changes in an unirradiated partner. If similar signaling occurs between humans, the results could have implications for caregivers and hospital staff treating radiotherapy patients.
机译:从辐照动物到非辐照生物的动物间信号传导已被全身辐照小鼠和鱼类证实。当前研究的目的是研究临床前治疗中相关剂量的放射疗法对身体局部的有限照射。通过对大鼠右脑半球给予高剂量,测试了高剂量均匀场辐射和格勒诺布尔欧洲同步辐射器(ESRF)在微束辐射治疗模式下的辐射使用。稍后移除左右脑半球和膀胱,以确定是否可以在动物中产生抽象作用,以及是否在与它们一起饲养的笼伴侣中发生作用。结果显示,在对侧脑半球中产生强烈的旁观者信号,而在受辐照的大鼠的远处膀胱中的效应较弱。与受辐照的大鼠一起饲养48小时的笼伴侣的每个组织的信号强度都相似或更高。我们的研究结果支持以下假设:靠近受辐照的动物会诱导未辐照伴侣的信号变化。如果人与人之间发生类似的信号传导,则结果可能对护理人员和治疗放射治疗患者的医院工作人员有影响。

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