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分次质子微束照射诱导的次级旁观者效应的新作用。

Emerging Role of Secondary Bystander Effects Induced by Fractionated Proton Microbeam Radiation.

机构信息

a Division of Radiation Oncology, Department of Radiology.

c SPICE-BIO Research Core, National Institute of Radiological Sciences International Open Laboratory, National Institutes for Quantum and Radiological Science and Technology, Inage-ku, Chiba, 263-8555 Japan.

出版信息

Radiat Res. 2019 Feb;191(2):211-216. doi: 10.1667/RR15155.1. Epub 2018 Dec 11.

DOI:10.1667/RR15155.1
PMID:30526323
Abstract

Increased understanding of radiation-induced secondary bystander effect (RISBE) is relevant to radiation therapy since it likely contributes to normal tissue injury and tumor recurrence, subsequently resulting in treatment failure. In this work, we developed a simple method based on proton microbeam radiation and a transwell insert co-culture system to elucidate the RISBE between irradiated human lung cancer cells and nonirradiated human normal cells. A549 lung cancer cells received a single dose or fractionated doses of proton microbeam radiation to generate the primary bystander cells. These cells were then seeded on the top of the insert with secondary bystander WI-38 normal cells growing underneath in the presence or absence of gap junction intercellular communication (GJIC) inhibitor, 18-α-glycyrrhetnic acid (AGA). Cells were co-cultured before harvesting and assayed for micronuclei formation. The results of this work showed that fractionated doses of protons caused less DNA damage in the secondary bystander WI-38 cells compared to a single radiation dose, where the means differ by 20%. However, the damaging effect in the secondary bystander normal cells could be eliminated when treated with AGA. This novel work reflects our effort to demonstrate that GJIC plays a major role in the RISBE generated from the primary bystander cancer cells.

摘要

增加对辐射诱导的二次旁观者效应(RISBE)的理解与放射治疗相关,因为它可能导致正常组织损伤和肿瘤复发,进而导致治疗失败。在这项工作中,我们开发了一种基于质子微束辐射和 Transwell 插入共培养系统的简单方法,以阐明辐照的人肺癌细胞与未辐照的人正常细胞之间的 RISBE。A549 肺癌细胞接受单次剂量或质子微束辐射的分次剂量,以产生原发性旁观者细胞。然后,将这些细胞接种在插入物的顶部,下方是生长的继发性旁观者 WI-38 正常细胞,存在或不存在间隙连接细胞间通讯(GJIC)抑制剂 18-α-甘草次酸(AGA)。在收获前进行细胞共培养,并检测微核形成。这项工作的结果表明,与单次辐射剂量相比,质子的分次剂量在继发性旁观者 WI-38 细胞中引起的 DNA 损伤较少,两者相差 20%。然而,当用 AGA 处理时,可消除继发性旁观者正常细胞中的损伤作用。这项新工作反映了我们努力证明 GJIC 在源自原发性旁观者癌细胞的 RISBE 中发挥主要作用。

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Investigation on the Direct and Bystander Effects in HeLa Cells Exposed to Very Low α-Radiation Using Electrical Impedance Measurement.
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ACS Omega. 2021 May 26;6(22):13995-14003. doi: 10.1021/acsomega.0c05888. eCollection 2021 Jun 8.
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Effect of Carbon Ion Radiation Induces Bystander Effect on Metastasis of A549 Cells and Metabonomic Correlation Analysis.碳离子辐射诱导旁观者效应对A549细胞转移的影响及代谢组学相关性分析
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