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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Radiation-induced effects on telomerase in gynecological cancer cell lines with different radiosensitivity and repair capacity.
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Radiation-induced effects on telomerase in gynecological cancer cell lines with different radiosensitivity and repair capacity.

机译:辐射对不同放射敏感性和修复能力的妇科癌细胞系中端粒酶的影响。

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PURPOSE: Telomerase activation in response to irradiation might enhance the radioresistance of cells. Thus, we have investigated radiation-induced effects on telomerase in six gynecological cancer cell lines, with different intrinsic radiosensitivity and capacity for sublethal damage repair (SLDR). MATERIALS AND METHODS: Three endometrial adenocarcinoma (UM-EC-1, UT-EC-2B and UT-EC-3) and three vulvar squamous cell carcinoma (A431, UM-SCV-2 and UM-SCV-7) cell lines were irradiated with doses of 5, 10 and 25 Gy and the effects on telomerase were evaluated at 0.5, 6, 24 and 48 h post-irradiation. Telomerase activity was quantitatively measured by SYBR Green real-time telomeric repeat amplification protocol. RESULTS: The most radioresistant cell line A431 had the strongest stimulatory effects (approximately 2.0 - 2.5-fold) on telomerase activity 24 and 48 h post-irradiation with the highest radiation doses. In contrast to that, telomerase activities in the highly radiosensitive cell line UT-EC-2B remainedbelow the basal level throughout the 48-h period of post-irradiation with the highest doses, and even a decline to approximately 50% of the basal level was found 24 h after exposure. In other cell lines being either moderately or highly radiation resistant, telomerase activity levels in response to irradiation remained mainly at the basal level or gradually increased. CONCLUSIONS: The present findings indicate that there might be a connection between the radiation-induced telomerase response and radiosensitivity. However, no correlation was found between the radiation-induced effects on telomerase and the sublethal damage repair capacity of the cells.
机译:目的:响应辐射的端粒酶激活可能会增强细胞的抗辐射能力。因此,我们研究了辐射诱导的六种妇科癌细胞系对端粒酶的作用,这些细胞系具有不同的固有放射敏感性和亚致死损伤修复能力(SLDR)。材料与方法:三种子宫内膜腺癌(UM-EC-1,UT-EC-2B和UT-EC-3)和三种外阴鳞状细胞癌(A431,UM-SCV-2和UM-SCV-7)细胞系用5、10和25 Gy的剂量辐照,并在辐照后0.5、6、24和48小时评估对端粒酶的影响。通过SYBR Green实时端粒重复扩增方案定量测量端粒酶活性。结果:辐射强度最高的细胞系A431对辐射剂量最高的辐射后24和48 h的端粒酶活性具有最强的刺激作用(约2.0-2.5倍)。与此相反,在辐射后的48小时内,最高剂量的高辐射敏感性细胞系UT-EC-2B中的端粒酶活性保持在基础水平以下,甚至下降到基础水平的约50%。暴露24小时后发现。在其他中等或高度抗辐射的细胞系中,响应辐射的端粒酶活性水平主要保持在基础水平或逐渐增加。结论:本研究结果表明,辐射诱导的端粒酶反应与放射敏感性之间可能存在联系。然而,在辐射诱导的端粒酶效应与细胞的亚致死损伤修复能力之间未发现相关性。

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