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High linear-energy-transfer radiation can overcome radioresistance of glioma stem-like cells to low linear-energy-transfer radiation

机译:高线性能量转移辐射可以克服神经胶质瘤干细胞对低线性能量转移辐射的抗辐射性

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摘要

Ionizing radiation is applied as the standard treatment for glioblastoma multiforme (GBM). However, radiotherapy remains merely palliative, not curative, because of the existence of glioma stem cells (GSCs), which are regarded as highly radioresistant to low linear-energy-transfer (LET) photons. Here we analyzed whether or not high-LET particles can overcome the radioresistance of GSCs. Glioma stem-like cells (GSLCs) were induced from the GBM cell line A172 in stem cell culture medium. The phenotypes of GSLCs and wild-type cells were confirmed using stem cell markers. These cells were irradiated with 60Co gamma rays or reactor neutron beams. Under neutron-beam irradiation, high-LET proton particles can be produced through elastic scattering or nitrogen capture reaction. Radiosensitivity was assessed by a colony-forming assay, and the DNA double-strand breaks (DSBs) were assessed by a histone gamma-H2AX focus detection assay. In stem cell culture medium, GSLCs could form neurosphere-like cells and express neural stem cell markers (Sox2 and Musashi) abundantly in comparison with their parental cells. GSLCs were significantly more radioresistant to gamma rays than their parental cells, but neutron beams overcame this resistance. There were significantly fewer gamma-H2AX foci in the A172 GSLCs 24 h after irradiation with gamma rays than in their parental cultured cells, while there was no apparent difference following neutron-beam irradiation. High-LET radiation can overcome the radioresistance of GSLCs by producing unrepairable DNA DSBs. High-LET radiation therapy might have the potential to overcome GBM's resistance to X-rays in a clinical setting.
机译:电离辐射被用作多形胶质母细胞瘤(GBM)的标准治疗方法。然而,由于神经胶质瘤干细胞(GSC)的存在,放疗仍然只是姑息疗法,而不是治愈性药物,这些胶质瘤干细胞被认为对低线性能量转移(LET)光子具有高度的放射抵抗力。在这里,我们分析了高LET粒子是否可以克服GSC的抗辐射性。从干细胞培养基中的GBM细胞系A172诱导胶质瘤干细胞样细胞(GSLC)。 GSLCs和野生型细胞的表型使用干细胞标记进行了确认。用 60 Coγ射线或反应堆中子束辐照这些细胞。在中子束辐照下,可以通过弹性散射或氮捕获反应产生高LET质子粒子。通过菌落形成测定法评估放射敏感性,并通过组蛋白γ-H2AX焦点检测测定法评估DNA双链断裂(DSB)。在干细胞培养基中,GSLCs可以形成神经球样细胞,并且与其亲代细胞相比,可以大量表达神经干细胞标记(Sox2和Musashi)。 GSLC比其亲代细胞对伽玛射线的放射抵抗力明显更高,但中子束克服了这种抵抗力。辐射后24小时,A172 GSLC中的γ-H2AX焦点明显少于其亲代培养细胞,而中子束照射后没有明显差异。高LET辐射可以通过产生不可修复的DNA DSB来克服GSLC的抗辐射性。高LET放射疗法在临床环境中可能具有克服GBM对X射线的抵抗力的潜力。

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