旁观者效应
微核试验
微束
A549电池
癌症研究
放射治疗
化学
辐照
癌细胞
放射生物学
病理
核医学
医学
癌症
肺癌
毒性
免疫学
内科学
有机化学
核物理学
物理
作者
Narongchai Autsavapromporn,Cuihua Liu,Alisa Kobayashi,Tengku Ahbrizal Farizal Tengku Ahmad,Masakazu Oikawa,Nahathai Dukaew,Jun Wang,Ariyaphong Wongnoppavichb,Teruaki Konishi
出处
期刊:Radiation Research
[Radiation Research Society]
日期:2018-12-11
卷期号:191 (2): 211-211
被引量:14
摘要
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.
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