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质子和碳离子照射后,热疗诱导的CHO野生型、非同源末端连接修复突变体和同源重组修复突变体的放射增敏作用。

Hyperthermia-induced radiosensitization in CHO wild-type, NHEJ repair mutant and HR repair mutant following proton and carbon-ion exposure.

作者信息

Maeda Junko, Fujii Yoshihiro, Fujisawa Hiroshi, Hirakawa Hirokazu, Cartwright Ian M, Uesaka Mitsuru, Kitamura Hisashi, Fujimori Akira, Kato Takamitsu A

机构信息

Department of Environmental and Radiological Health Sciences, Colorado State University, Fort Collins, CO 80523, USA.

Department of Radiological Sciences, Ibaraki Prefectural University of Health Sciences, Inashiki, Ibaraki 300-0394, Japan.

出版信息

Oncol Lett. 2015 Nov;10(5):2828-2834. doi: 10.3892/ol.2015.3732. Epub 2015 Sep 21.

Abstract

The DNA repair mechanisms involved in hyperthermia-induced radiosensitization with proton and carbon ion radiation exposure were investigated in the present study. In a previous study, Chinese hamster ovary (CHO) cells were exposed to low linear energy transfer (LET) photon radiation. These cells can be sensitized by hyperthermia as a result of inhibition of homologous recombination (HR) repair. The present study used wild-type, non-homologous end joining (NHEJ) and HR repair-deficient CHO cells to define the contributions of each repair pathway to cellular lethality following hyperthermia-induced hadron radiation sensitization. The cells were exposed to ionizing radiation, followed by hyperthermia treatment (42.5°C for 1 h). Hyperthermia-induced radiosensitization was determined by the colony formation assay and thermal enhancement ratio. HR repair-deficient cells exhibited no hyper-sensitization to X-rays, protons, or low and high LET carbon ions when combined with hyperthermia. Wild-type and NHEJ repair-deficient cells exhibited significant hyperthermia-induced sensitization to low LET photon and hadron radiation. Hyperthermia-induced sensitization to high LET carbon-ion radiation was less than at low LET radiation. Relative biological effectiveness (RBE) between radiation alone and radiation combined with hyperthermia cell groups was not significantly different in any of the cell lines, with the exception of wild-type cells exposed to high LET radiation, which exhibited a lower RBE in the combined group. The present study investigated additional cell lines to confirm the lower RBE observed in DNA repair-deficient cell lines. These findings suggested that hyperthermia-induced hyper-sensitization to hadron radiation is also dependent on inhibition of HR repair, as was observed with photon radiation in a previous study.

摘要

本研究调查了质子和碳离子辐射暴露下热疗诱导放射增敏所涉及的DNA修复机制。在之前的一项研究中,中国仓鼠卵巢(CHO)细胞暴露于低传能线密度(LET)光子辐射。由于同源重组(HR)修复受到抑制,这些细胞可被热疗增敏。本研究使用野生型、非同源末端连接(NHEJ)和HR修复缺陷的CHO细胞,以确定热疗诱导强子辐射增敏后各修复途径对细胞致死率的贡献。细胞先接受电离辐射,然后进行热疗处理(42.5°C,1小时)。通过集落形成试验和热增强比来确定热疗诱导的放射增敏作用。HR修复缺陷的细胞在与热疗联合时,对X射线、质子或低LET和高LET碳离子均未表现出超敏反应。野生型和NHEJ修复缺陷的细胞对低LET光子和强子辐射表现出显著的热疗诱导增敏。热疗诱导的对高LET碳离子辐射的增敏作用小于低LET辐射。除了暴露于高LET辐射的野生型细胞在联合组中表现出较低的相对生物效应(RBE)外,在任何细胞系中,单独辐射组与辐射联合热疗组之间的RBE均无显著差异。本研究调查了其他细胞系,以证实DNA修复缺陷细胞系中观察到的较低RBE。这些发现表明,热疗诱导的对强子辐射的超敏反应也依赖于HR修复的抑制,正如之前一项研究中对光子辐射所观察到的那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57f1/4665357/6a9a3bf62cdc/ol-10-05-2828-g00.jpg

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