Ke Chao, Tran Katherine, Chen Yumay, Di Donato Anne T, Yu Liping, Hu Yuanjie, Linskey Mark E, Wang Ping H, Limoli Charles L, Zhou Yi-Hong
Neurological Surgery, University of California, Irvine, CA, USA.
Oncotarget. 2014 Mar 30;5(6):1657-65. doi: 10.18632/oncotarget.1823.
The phenotypic and genetic diversity that define tumor subpopulations within high-grade glioma can lead to therapeutic resistance and tumor recurrence. Given that cranial irradiation is a frontline treatment for malignant glioma, understanding how irradiation selectively effects different cellular subpopulations within these heterogeneous cancers should help identify interventions targeted to better combat this deadly disease. To analyze the radiation response of distinct glioma subpopulations, 2 glioma cells lines (U251, A172) were cultured under conditions that promoted either adherence or non-adherent spheroids. Past work has demonstrated that subpopulations derived from defined culture conditions exhibit differences in karyotype, proliferation, gene expression and tumorigenicity. Spheroid cultures from each of the glioma cell lines were found to be more radiosensitive, which was consistent with higher levels of oxidative stress and lower levels of both oxidative phosphorylation and glycolytic metabolism 1 week following irradiation. In contrast, radioresistant non-spheroid parental cultures showed increased glycolytic activity in response to irradiation, while oxidative phosphorylation was affected to a lesser extent. Overall these data suggest that prolonged radiation-induced oxidative stress can compromise the metabolic state of certain glioma subpopulations thereby altering their sensitivity to an important therapeutic intervention used routinely for the control of glioma.
定义高级别胶质瘤内肿瘤亚群的表型和基因多样性可导致治疗抗性和肿瘤复发。鉴于颅脑放疗是恶性胶质瘤的一线治疗方法,了解放疗如何选择性地影响这些异质性癌症中的不同细胞亚群,应有助于确定更有效地对抗这种致命疾病的干预措施。为了分析不同胶质瘤亚群的辐射反应,将2种胶质瘤细胞系(U251、A172)在促进贴壁或非贴壁球体形成的条件下培养。过去的研究表明,源自特定培养条件的亚群在核型、增殖、基因表达和致瘤性方面存在差异。发现来自每种胶质瘤细胞系的球体培养物对辐射更敏感,这与照射后1周时更高水平的氧化应激以及更低水平的氧化磷酸化和糖酵解代谢一致。相比之下,抗辐射的非球体亲本培养物在照射后糖酵解活性增加,而氧化磷酸化受到的影响较小。总体而言,这些数据表明,长期辐射诱导的氧化应激会损害某些胶质瘤亚群的代谢状态,从而改变它们对常用于控制胶质瘤的重要治疗干预措施的敏感性。