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Targeting Specific Sites in Biological Systems with Synchrotron X-Ray Microbeams for Radiobiological Studies at the Photon Factory

机译:用同步系统中的生物系统中的特定位点,在光子厂进行辐射生物学研究

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X-ray microbeams have been used to explore radiobiological effects induced by targeting a specific site in living systems. Synchrotron radiation from the Photon Factory, Japan, with high brilliance and highly parallel directionality is a source suitable for delivering a particular beam size or shape, which can be changed according to target morphology by using a simple metal slit system (beam size from 5 m to several millimeters). Studies have examined the non-targeted effects, called bystander cellular responses, which are thought to be fundamental mechanisms of low-dose or low-dose-rate effects in practical radiation risk research. Narrow microbeams several tens of micrometers or less in their size targeted both the cell nucleus and the cytoplasm. Our method combined with live-cell imaging techniques has challenged the traditional radiobiological dogma that DNA damage is the only major cause of radiation-induced genetic alterations and is gradually revealing the role of organelles, such as mitochondria, in these biological effects. Furthermore, three-dimensionally cultured cell systems have been used as microbeam targets to mimic organs. Combining the spatial fractionation of X-ray microbeams and a unique ex vivo testes organ culture technique revealed that the tissue-sparing effect was induced in response to the non-uniform radiation fields. Spatially fractionated X-ray beams may be a promising tool in clinical radiation therapy.
机译:X射线Microbeams已被用于探讨通过靶向生物系统中特定部位的放射生物学作用。来自光子厂的同步辐射,日本,具有高亮度和高度平行的方向性,是一种适用于提供特定光束尺寸或形状的源,可以通过使用简单的金属狭缝系统(5米的光束尺寸)来改变该源。到几毫米)。研究已经研究了旁观者的非靶向效果,称为旁观者细胞反应,这被认为是实际辐射风险研究中低剂量或低剂量率效应的基本机制。狭窄的Microbeams尺寸几十微米或更小的尺寸靶向细胞核和细胞质。我们的方法与直播摄影技术结合挑战了传统的辐射性教条,DNA损伤是辐射诱导的遗传改变的唯一主要原因,并且逐渐揭示了细胞器,例如线粒体,这些生物学作用的作用。此外,三维培养的细胞系统已被用作模拟器官的微观靶。组合X射线微沟的空间分馏和独特的离体测试器官培养技术表明,响应于非均匀辐射场诱导组织制备效果。空间分馏的X射线束可以是临床放射治疗中有前途的工具。

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