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Induction of Cell Death in Renal Cell Carcinoma With Combination of D-Fraction and Vitamin C

机译:结合D成分和维生素C诱导肾细胞癌的细胞死亡

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Hypothesis. Although several conventional therapeutic options for advanced renal cell carcinoma (RCC) are currently available, the unsatisfactory outcomes demand establishing more effective interventions. D-fraction (PDF), a bioactive proteoglucan of Maitake mushroom, demonstrates anticancer and immunomodulatory activities, which are also shown to be potentiated by vitamin C (VC). We thus hypothesized that a combination of PDF and VC (PDF + VC) could be an alternative approach to more effectively inhibit the growth of RCC. Study design. We examined the dose-dependent effects of PDF + VC on RCC cell viability and also performed biochemical assays to explore the growth regulatory mechanism. Methods. Human RCC, ACHN cell line, was employed and exposed to varying concentrations of PDF or VC and their combinations. Cell viability at specified times was determined by MTT assay. Lipid peroxidation assay, cell cycle analysis, and Western blot analysis were also performed. Results. PDF or VC alone led to the significant reduction in cell viability at 72 hours with PDF >500 μg/mL and VC ≥300 μM. When various combinations of PDF and VC were tested, the combination of the ineffective concentrations of PDF (300 μg/mL) and VC (200 μM) resulted in ~90% cell death in 24 hours. Lipid peroxidation assay then indicated significantly (~2.5 fold) elevated oxidative stress with this PDF + VC. Cell cycle analysis also indicated a G1 cell cycle arrest following a 6-hour PDF + VC treatment. Western blots further revealed a downregulation of Bcl2, an upregulation of Bax, and proteolytic activation of PARP (poly[ADP-ribose] polymerase) in PDF + VC-treated cells, indicating induction of apoptosis. Conclusion. The present study demonstrates that the combination of PDF and VC can become highly cytotoxic, inducing severe cell death in ACHN cells. This cytotoxic mechanism appears to be primarily attributed to oxidative stress, accompanied by a G1 cell cycle arrest. Such cell death induced by PDF + VC could be more likely linked to apoptosis, as indicated by the modulation of apoptosis regulators (Bcl2, Bax, and PARP). Therefore, as PDF and VC may work synergistically to induce apoptotic cell death, they may have clinical implications in an alternative, improved therapeutic modality for advanced RCC.
机译:假设。尽管目前有几种针对晚期肾细胞癌(RCC)的常规治疗方法可供选择,但效果欠佳需要建立更有效的干预措施。 D-fraction(PDF)是舞茸蘑菇的一种生物活性蛋白葡聚糖,具有抗癌和免疫调节活性,也被维生素C(VC)增强。因此,我们假设PDF和VC(PDF + VC)的组合可能是更有效地抑制RCC增长的替代方法。学习规划。我们检查了PDF + VC对RCC细胞活力的剂量依赖性作用,还进行了生化分析以探讨生长调节机制。方法。使用人RCC,ACHN细胞系,并暴露于不同浓度的PDF或VC及其组合。通过MTT测定确定在指定时间的细胞活力。还进行了脂质过氧化测定,细胞周期分析和蛋白质印迹分析。结果。当PDF> 500μg/ mL和VC≥300μM时,单独使用PDF或VC会导致72小时细胞活力显着降低。当测试PDF和VC的各种组合时,无效浓度的PDF(300μg/ mL)和VC(200μM)的组合导致24小时内约90%的细胞死亡。脂质过氧化测定表明该PDF + VC可以显着(〜2.5倍)升高氧化应激。细胞周期分析还表明,经过6小时的PDF + VC处理后,G 1 细胞周期停滞。 Western印迹进一步揭示了PDF + VC处理的细胞中Bcl2的下调,Bax的上调和PARP(聚[ADP-核糖]聚合酶)的蛋白水解激活,表明诱导了细胞凋亡。结论。本研究表明,PDF和VC的组合可具有高度的细胞毒性,可导致ACHN细胞严重死亡。这种细胞毒性机制似乎主要归因于氧化应激,并伴有G 1 细胞周期停滞。 PDF + VC诱导的此类细胞死亡可能更可能与凋亡相关,如凋亡调节因子(Bcl2,Bax和PARP)的调节所表明的。因此,由于PDF和VC可以协同作用诱导凋亡性细胞死亡,因此它们对于晚期RCC的替代性改进治疗方式可能具有临床意义。

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