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CELLULAR GLYCOLYSIS AND THE DIFFERENTIAL SURVIVAL OF LUNG FIBROBLAST AND LUNG CARCINOMA CELL LINES

机译:细胞糖酵解和肺成纤维细胞和肺癌细胞系的差异存活

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Tumor growth and abnormal cell survival were shown to be associated with a number of cellular metabolic abnormalities revealed by impaired oral glucose tolerance, depressed lipoprotein lipase activity leading to hypertriglyceridemia, and changes in amino acid profile as evidenced by increased plasma free tryptophan levels in patients with breast, lung, colon, stomach, and other cancers from various origins. The above findings seem to relate to or indicate a shift to non-oxidative metabolic pathways in cancer. In contrast to normal cells, cancer cells may lose the ability to utilize aerobic respiration due to either defective mitochondria or hypoxia within the tumor microenvironments. Glucose was shown to be the major energy source in cancer cells where it utilizes aerobic /anaerobic glycolysis with the resultant lactic acid formation. The role of energetic modulations and use of glycolytic inhibitors on cancer/normal cell survival is not clearly established in the literature. We hypothesize that natural intermediates of glycolysis and the citric acid cycle will differentially and negatively impact the cancer phenotype in contrast to their no effects on the normal cell phenotype. Therefore, the purpose of this study was to evaluate six potential glycolytic modulators namely, Pyruvic acid, oxalic acid, Zn acetate, sodium citrate, fructose diphosphate (FDP) and sodium bicarbonate at μM concentrations on growing A549 (lung cancer) and MRC-5 (normal; human lung fibroblast) cell lines with the objective of determining their influence on visual impact, cell metabolic activity, cell viability and end-point cell survival. Exposed and nonexposed cells were tested with phase-contrast micro-scanning, survival/death and metabolic activity trends through MTT-assays, as well as death end-point determinations by testing re-growth on complete media and T4 cellometer counts. Results showed that oxalic acid and Zn acetate both influenced the pH of the medium and resulted in differential massive cell debris within the exposure period. Pyruvic acid, sodium citrate, sodium bicarbonate and FDP did not cause pH changes; however, they caused detectable cell disfigurement and loss of metabolic activity, viability and survival/ death end points with the resultant death of the A549 cell line. The MRC-5 cell line was differentially unaffected by exposure to pyruvic acid, sodium citrate, sodium bicarbonate, FDP and Zn acetate, underwent complete recovery and remained both attached and healthy for 6 weeks upon subculture when transferred to a new complete medium. Oxalic acid did not show differential modulation with the consequent loss of survival and death of the MRC-5 cell line. Phase contrast, metabolic activity, cell counts as well as death end-point findings confirmed our hypothsis. These studies show the potential possibly for exploiting cellular metabolic differences in cancer control.
机译:肿瘤生长和异常细胞存活率显示出与多个蜂窝代谢异常相关的揭示通过口服葡萄糖耐量受损,压下脂蛋白脂肪酶活性,导致高甘油三酯血症,和在氨基酸分布变化如通过增加的血浆游离色氨酸水平的患者证明乳腺,肺,结肠,胃和其他来自各种起源的癌症。上述发现似乎涉及或表明癌症中非氧化代谢途径的转变。与正常细胞相反,由于肿瘤微环境中的缺陷的线粒体或缺氧,癌细胞可能失去利用有氧呼吸的能力。葡萄糖被证明是癌细胞中的主要能源,其中它利用具有所得乳酸形成的好氧/厌氧糖醇。在文献中,没有明确建立了能量调节和使用糖酵解抑制剂对癌症/正常细胞存活的作用。我们假设糖酵解的天然中间体和柠檬酸循环将差异,对癌症表型对比其对正常细胞表型的影响相反。因此,本研究的目的是评估六个潜在的糖酵解调节剂即,丙酮酸,草酸,乙酸乙酸钠,柠檬酸钠,果糖二磷酸钠(FDP)和碳酸氢钠,以μm浓度生长A549(肺癌)和MRC-5 (正常;人肺成纤维细胞)细胞系具有测定它们对视觉冲击,细胞代谢活性,细胞活力和终点细胞存活的影响。通过MTT测定,通过MTT测定,通过MTT测定和死亡终点测定来测试暴露和非渗过细胞,通过测试完整培养基和T4 Cellometer计数的重新生长,以及死亡终点测定。结果表明,草酸和乙酸乙酸酯都影响了培养基的pH,并导致差异大规模细胞碎片在暴露期内。丙酮酸,柠檬酸钠,碳酸氢钠和FDP没有引起pH变化;然而,它们导致可检测到的细胞差异和代谢活性的丧失,活力和生存/死亡终点与A549细胞系的所得死亡。通过暴露于丙酮酸,柠檬酸钠,碳酸氢钠,FDP和Zn乙酸盐,MRC-5细胞系差异不受影响,在转移到新的完全培养基时,在传代培养时,仍然完全恢复,并且在转移时持续6周,仍然保持和健康。草酸没有显示出差异调节,随后的MRC-5细胞系的存活和死亡丧失。相对比,代谢活性,细胞计数以及死亡终点结果证实了我们的假设。这些研究表明可能用于利用癌症控制中的细胞代谢差异的可能性。

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