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Constitutive expression of tdTomato protein as a cytotoxicity and proliferation marker for space radiation biology

机译:tdTomato蛋白的组成型表达作为空间辐射生物学的细胞毒性和增殖标志物

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摘要

The radiation risk assessment for long-term space missions requires knowledge on the biological effectiveness of different space radiation components, e.g. heavy ions, on the interaction of radiation and other space environmental factors such as microgravity, and on the physical and biological dose distribution in the human body. Space experiments and ground-based experiments at heavy ion accelerators require fast and reliable test systems with an easy readout for different endpoints. In order to determine the effect of different radiation qualities on cellular proliferation and the biological depth dose distribution after heavy ion exposure, a stable human cell line expressing a novel fluorescent protein was established and characterized. tdTomato, a red fluorescent protein of the new generation with fast maturation and high fluorescence intensity, was selected as reporter of cell proliferation. Human embryonic kidney (HEK/293) cells were stably transfected with a plasmid encoding tdTomato under the control of the constitutively active cytomegalovirus (CMV) promoter (ptdTomato-N1). The stably transfected cell line was named HEK-ptdTomato-N1 8. This cytotoxicity biosensor was tested by ionizing radiation (X-rays and accelerated heavy ions) exposure. As biological endpoints, the proliferation kinetics and the cell density reached 100 h after irradiation reflected by constitutive expression of the tdTomato were investigated. Both were reduced dose-dependently after radiation exposure. Finally, the cell line was used for biological weighting of heavy ions of different linear energy transfer (LET) as space-relevant radiation quality. The relative biological effectiveness of accelerated heavy ions in reducing cellular proliferation peaked at an LET of 91 keV/μm. The results of this study demonstrate that the HEK-ptdTomato-N1 reporter cell line can be used as a fast and reliable biosensor system for detection of cytotoxic damage caused by ionizing radiation.
机译:长期太空飞行任务的辐射风险评估需要了解不同空间辐射成分的生物有效性,例如重离子,辐射与其他空间环境因素(例如微重力)的相互作用以及人体中的物理和生物剂量分布。在重离子加速器上进行的太空实验和基于地面的实验需要快速,可靠的测试系统,并且易于读取不同的终点。为了确定不同辐射质量对重离子暴露后细胞增殖和生物学深度剂量分布的影响,建立并表征了表达新型荧光蛋白的稳定人细胞系。 tdTomato是一种成熟度高,荧光强度高的新一代红色荧光蛋白,被选作细胞增殖的报道基因。在组成性活性巨细胞病毒(CMV)启动子(ptdTomato-N1)的控制下,用编码tdTomato的质粒稳定转染了人类胚胎肾(HEK / 293)细胞。稳定转染的细胞系命名为HEK-ptdTomato-N18。通过电离辐射(X射线和加速重离子)暴露测试了这种细胞毒性生物传感器。作为生物学终点,研究了由tdTomato的组成型表达反映的辐射后100 h的增殖动力学和细胞密度。两者在辐射照射后均呈剂量依赖性降低。最后,将细胞系用于与空间相关的辐射质量,对不同线性能量转移(LET)的重离子进行生物加权。加速重离子减少细胞增殖的相对生物学效应在LET达到91 keV /μm时达到峰值。这项研究的结果表明,HEK-ptdTomato-N1报告细胞系可以用作快速可靠的生物传感器系统,用于检测由电离辐射引起的细胞毒性损伤。

著录项

  • 来源
    《Life Sciences in Space Research》 |2015年第1期|35-45|共11页
  • 作者单位

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

    German Aerospace Center (DLR), Institute of Aerospace Medicine, Radiation Biology, Under Hoene, D-51147 Koeln, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mammalian cells; Radiation response; Fluorescent protein; Cytotoxicity; Proliferation; tdTomato;

    机译:哺乳动物细胞;辐射响应;荧光蛋白;细胞毒性;增殖;td番茄;

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