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Nuclear Magnetic Resonance Spectroscopy to Identify Metabolite Biomarkers of Nonresponsiveness to Targeted Therapy in Glioblastoma Tumor Stem Cells

机译:核磁共振光谱法鉴定胶质母细胞瘤肿瘤干细胞的非反应性靶向治疗的代谢产物生物标志物

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Glioblastoma is the most common and malignant brain tumor, and current therapies confer only modest survival benefits. A major obstacle is our ability to monitor treatment effect on tumors. Current imaging modalities are ambiguous, and repeated biopsies are not encouraged. To scout for markers of treatment response, we used NMR spectroscopy to study the effects of a survivin inhibitor on the metabolome of primary glioblastoma cancer stem cells. Applying high resolution NMR spectroscopy CH resonance frequency: 800.03 MHz) to just 3 million cells per sample, we achieved sensitive and high resolving determinations of, e.g., amino acids, nucleosides, and constituents of the citric acid cycle. For control samples that were cultured, prepared, and measured at varying dates, peak area relative standard deviations were 15-20%. Analyses of unfractionated lysates were performed for straightforward compound identification with COLMAR and HMDB databases. Principal component analysis revealed that citrate levels were clearly upregulated in nonresponsive cells, while lactate levels substantially decreased following treatment for both responsive and nonresponsive cells. Hence, lactate and citrate may be potential markers of successful drug uptake and poor response to survivin inhibitors, respectively. Our metabolomics approach provided alternative biomarker candidates compared to spectrometry-based proteomics, underlining benefits of complementary methodologies. These initial findings make a foundation for exploring in vivo MR spectroscopy (MRS) of brain tumors, as citrate and lactate are MRS-visible. In sum, NMR metabolomics is a tool for addressing glioblastoma.
机译:胶质母细胞瘤是最常见和最恶劣的脑肿瘤,目前的疗法仅赋予适度的生存益处。主要障碍是我们监测对肿瘤治疗效果的能力。目前的成像模式是模糊的,并且不鼓励重复的活组织检查。为了侦察治疗反应标记,我们使用了NMR光谱来研究Survivin抑制剂对原发性胶质母细胞瘤癌症干细胞代谢物的影响。将高分辨率NMR谱CH共振频率:800.03MHz)每样品仅为300万个细胞,我们实现了柠檬酸循环的氨基酸,核苷和组分的敏感和高分辨率测定。对于在不同日期以培养,制备和测量的对照样品,峰面积相对标准偏差为15-20%。用Colmar和HMDB数据库进行直接化合物鉴定进行未循环裂解物的分析。主要成分分析显示,在非反应性细胞中明显上调柠檬酸盐水平,而乳酸水平随后对响应性和非反应性细胞的处理显着降低。因此,乳酸乳酸盐和柠檬酸盐分别是成功的药物吸收和对Survivin抑制剂的不良反应的潜在标志物。与基于光谱的蛋白质组学相比,我们的代谢组种方法提供了替代的生物标志物候选者,并加强了互补方法的益处。这些初始调查结果为脑肿瘤的体内MR光谱(MRS)进行了探索,因为柠檬酸盐和乳酸是可见的。总之,NMR代谢组学是一种用于解决胶质母细胞瘤的工具。

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