Experimental Setup for Irradiation of Cell Cultures at L2A2

IF 1.3 Q3 INSTRUMENTS & INSTRUMENTATION Quantum Beam Science Pub Date : 2022-02-21 DOI:10.3390/qubs6010010
Alberto Torralba, L. Palenciano, A. Reija, J. Rigla, Juan Peñas, J. Llerena, R. Contreras-Martínez, J. Benlliure, Ana Vega, Miguel E. Aguado-Barrera, C. Ruiz, M. Seimetz
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引用次数: 1

Abstract

Laser–plasma proton sources and their applications to preclinical research has become a very active field of research in recent years. In addition to their small dimensions as compared to classical ion accelerators, they offer the possibility to study the biological effects of ultra-short particle bunches and the correspondingly high dose rates. We report on the design of an experimental setup for the irradiation of cell cultures at the L2A2 laboratory at the University of Santiago de Compostela, making use of a 1.2 J Ti: Sapphire laser with a 10 Hz repetition rate. Our setup comprises a proton energy separator consisting of two antiparallel magnetic fields realized by a set of permanent magnets. It allows for selecting a narrow energy window around an adaptable design value of 5 MeV out of the initially broad spectrum typical for Target Normal Sheath Acceleration (TNSA). At the same time, unwanted electrons and X-rays are segregated from the protons. This part of the setup is located inside the target vessel of the L2A2 laser. A subsequent vacuum flange sealed with a thin kapton window allows for particle passage to external sample irradiation. A combination of passive detector materials and real-time monitors is applied for measurement of the deposited radiation dose. A critical point of this interdisciplinary project is the manipulation of biological samples under well-controlled, sterile conditions. Cell cultures are prepared in sealed flasks with an ultra-thin entrance window and analysed at the nearby Fundación Pública Galega Medicina Xenómica and IDIS. The first trials will be centred at the quantification of DNA double-strand breaks as a function of radiation dose.
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细胞培养物在L2A2下辐照的实验装置
近年来,激光等离子体质子源及其在临床前研究中的应用已成为一个非常活跃的研究领域。除了与经典离子加速器相比尺寸小之外,它们还为研究超短粒子束和相应的高剂量率的生物效应提供了可能性。我们报道了圣地亚哥德孔波斯特拉大学L2A2实验室的细胞培养物辐照实验装置的设计,使用1.2 J Ti:蓝宝石激光器,重复频率为10 Hz。我们的装置包括一个质子能量分离器,它由两个反平行的磁场组成,由一组永磁体实现。它允许在目标正常护套加速(TNSA)的初始广谱中选择一个狭窄的能量窗口,以适应5 MeV的设计值。与此同时,多余的电子和x射线从质子中分离出来。这部分装置位于L2A2激光器的靶腔内。随后用薄卡普顿窗密封的真空法兰允许粒子通过外部样品辐照。无源探测材料和实时监测器的组合用于测量沉积的辐射剂量。这个跨学科项目的一个关键点是在良好控制的无菌条件下操作生物样品。细胞培养物在带有超薄入口窗口的密封烧瓶中制备,并在附近的Fundación Pública Galega Medicina Xenómica和IDIS进行分析。第一批试验将集中在DNA双链断裂作为辐射剂量函数的量化上。
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来源期刊
CiteScore
2.80
自引率
28.60%
发文量
27
审稿时长
11 weeks
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