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首页> 外文期刊>Indian Journal of Biochemistry & Biophysics >In vivo NMR spectroscopic studies on the bioenergetic changes induced by metabolic modulators in Ehrlich ascites tumour cells
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In vivo NMR spectroscopic studies on the bioenergetic changes induced by metabolic modulators in Ehrlich ascites tumour cells

机译:体内NMR光谱研究Ehrlich腹水肿瘤细胞中代谢调节剂诱导的生物能变化

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摘要

Changes in the energy metabolism of Ehrlich ascites tumour (EAT) cells induced by treatment with 2-deoxy-D-glucose (2-DG) alone and in combination with other metabolic modulators, were studied using in vivo nuclear magnetic resonance (NMR) spectroscopy. Accumulation of 2-DG-6-phosphate (2-DG-6-P) and cellular energy status as reflected in the ratio of beta ATP to inorganic phosphate (β-ATP/Pi) in cells could be monitored as a function of time using P-31 NMR spectroscopy. Presence of 2-DG induced a significant decrease in the levels of nucleotide triphosphates, which continued to reduce for some time even after removing 2-DG from the vicinity of cells. When administered along with 3-O-methyl-D-glucose (3-O-MG), 2-DG phosphorylated at a slower rate and the resultant 2-DG-6-P accumulated to a lesser extent than that obtained with 2-DG alone. Treatment with Photosan Ⅱ, a haematoporphyrin derivative (Hpd), has been reported to increase the glucose utilisation and rate of glycolysis. Upon concomitant administration of 2-DG along with Hpd (after Hpd pretreatment for 1 -2 hr), the extent of phosphorylation of 2-DG increased. The combination of 2-DG with 3-O-MG or Hpd reduced the energy status (β-ATP/Pi) to a greater extent and the recovery was considerably less upon removal of the treatment, compared to the effects of either drug administered separately. Since metabolic depletion of ATP is known to inhibit the post-irradiation DNA repair processes, it is hypothesized that the use of these drug combinations, as adjuvants to tumour radiotherapy, should enhance the therapeutic efficacy and selectivity.
机译:使用体内核磁共振(NMR)光谱研究了单独使用2-脱氧-D-葡萄糖(2-DG)以及与其他代谢调节剂联合治疗所致的艾氏腹水肿瘤(EAT)细胞能量代谢的变化。 。 βATP与无机磷酸盐(β-ATP/ Pi)的比率所反映的2-DG-6-磷酸盐(2-DG-6-P)的积累和细胞能量状态可以作为时间的函数进行监测使用P-31 NMR光谱。 2-DG的存在导致三磷酸核苷酸的水平显着降低,即使从细胞附近去除2-DG后,三磷酸核苷酸的水平仍持续下降了一段时间。当与3-O-甲基-D-葡萄糖(3-O-MG)一起给药时,2-DG的磷酸化速度较慢,并且生成的2-DG-6-P的积累程度要小于2-仅DG。据报道,用血卟啉衍生物(Hpd)PhotosanⅡ处理可提高葡萄糖利用率和糖酵解速率。在将2-DG与Hpd并用时(在Hpd预处理1 -2小时后),2-DG的磷酸化程度增加。与分别施用两种药物的效果相比,将2-DG与3-O-MG或Hpd的组合可在更大程度上降低能量状态(β-ATP/ Pi),并且在撤除治疗后的回收率显着降低。由于已知ATP的代谢耗竭抑制辐射后DNA修复过程,因此假设这些药物组合作为肿瘤放疗的佐剂的使用应增强治疗功效和选择性。

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