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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 >Temozolomide in combination with carbon ion or photon irradiation in glioblastoma multiforme cell lines-does scheduling matter?
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Temozolomide in combination with carbon ion or photon irradiation in glioblastoma multiforme cell lines-does scheduling matter?

机译:替莫唑胺与碳离子或光子辐照联合治疗胶质母细胞瘤细胞系中的时间表是否重要?

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Purpose: To extend the application area of particle therapy with carbon ions the many already established treatment regimens for different tumor entities have to be taken into consideration. The present study investigates the effect of combined radiochemotherapy with temozolomide (TMZ) and high linear energy transfer (LET) irradiation with carbon ions versus photons. Materials and methods: Clonogenic survival was analyzed for human glioma cell lines with different O6-methylguanine-DNA methyltransferase (MGMT) status, LN18 (MGMT+) and LN-229 (MGMT-), after exposure to different doses of either carbon ion or photon irradiation at different time points relative to TMZ application. Cell cycle distribution was measured by flow cytometry. MGMT status of the cell lines was verified by Western blot. Results: LN-18 and LN-229 reacted in accordance to their MGMT status with different sensitivity to TMZ treatment. Combined treatment with irradiation showed additive cytotoxic effects for both cell lines with low radiation doses but no radiosensitization. With increasing photon doses the combination effect was reduced, and the efficacy of the combined treatment was not dependent on administration schedule. Carbon ion irradiation showed the well known increased relative biological efficiency (RBE), overcame the abovementioned antagonism and was also not schedule-dependent. Conclusions: The in vitro effectiveness of TMZ in combined radiochemotherapy is independent of administration time or MGMT-expression. Both cell lines are significantly more sensitive to combined treatment with carbon ion radiation than to photon radiation but do not show any super-additive effects.
机译:目的:为了扩大碳离子粒子疗法的应用领域,必须考虑许多已经建立的针对不同肿瘤实体的治疗方案。本研究研究了替莫唑胺(TMZ)和高线性能量转移(LET)碳离子与光子的联合放射化学疗法的效果。材料和方法:在暴露于不同剂量的碳离子或光子后,分析了具有不同O6-甲基鸟嘌呤-DNA甲基转移酶(MGMT)状态,LN18(MGMT +)和LN-229(MGMT-)状态的人类神经胶质瘤细胞系的克隆存活率。相对于TMZ应用在不同时间点进行辐射。通过流式细胞术测量细胞周期分布。通过Western印迹证实细胞系的MGMT状态。结果:LN-18和LN-229根据其MGMT状态反应,对TMZ处理的敏感性不同。辐射联合处理对低辐射剂量但无放射敏化的两种细胞系均显示出附加的细胞毒性作用。随着光子剂量的增加,联合治疗的效果降低,联合治疗的疗效与给药方案无关。碳离子辐射显示出众所周知的相对生物效率(RBE)的提高,克服了上述拮抗作用,并且也不依赖于时间表。结论:TMZ在联合放化疗中的体外有效性与给药时间或MGMT表达无关。两种细胞系对碳离子辐射的联合处理都比对光子辐射更敏感,但没有显示出任何超加和效应。

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