Department of Immunology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.
Department of Immunology, Medical School, Alborz University of Medical Sciences, Karaj, Iran.
Oxid Med Cell Longev. 2020 Dec 30;2020:8681349. doi: 10.1155/2020/8681349. eCollection 2020.
Maintaining homeostasis of ion concentrations is critical in cancer cells. Under hypoxia, the levels of channels and pumps in cancer cells are more active than normal cells suggesting ion channels as a suitable therapeutic target. One of the contemporary ways for cancer therapy is oxidative stress. However, the effective concentration of oxidative stress on tumor cells has been reported to be toxic for normal cells as well. In this study, we benefited from the modifying effects of hyaluronic acid (HA) on HO, as a free radical source, to make a gradual release of oxidative stress on cancer cells while preventing/decreasing damage to normal cells under normoxia and hypoxic conditions. To do so, we initially investigated the optimal concentration of HA antioxidant capacity by the DPPH test. In the next step, we found optimum HO dose by treating the 4T1 breast cancer cell line with increasing concentrations (0, 10, 20, 50,100, 200, 500, and 1000 M) of HO alone or HO + HA (83%) for 24 hrs. The calcium channel and the sodium-potassium pumps were then evaluated by measuring the levels of calcium, sodium, and potassium ions using an atomic absorption flame spectrophotometer. The results revealed that treatment with HO or HO+ HA led to an intracellular increase of calcium, sodium, and potassium in the normoxic and hypoxic circumstances in a dose-dependent manner. It is noteworthy that HO + HA treatment had more favorable and controllable effects compared with HO alone. Moreover, HA optimizes the antitumor effect of oxidative stress exerted by HO making HO + HA suitable for clinical use in cancer treatment along with chemotherapy.
维持离子浓度的内环境稳态对癌细胞至关重要。在缺氧条件下,癌细胞中的通道和泵的水平比正常细胞更为活跃,这表明离子通道是一个合适的治疗靶点。癌症治疗的一种现代方法是氧化应激。然而,据报道,肿瘤细胞中氧化应激的有效浓度对正常细胞也具有毒性。在这项研究中,我们受益于透明质酸(HA)对 HO(一种自由基源)的修饰作用,使氧化应激在缺氧条件下对癌细胞逐渐释放,同时防止/减少对正常细胞的损伤。为此,我们首先通过 DPPH 试验研究了 HA 抗氧化能力的最佳浓度。在下一步中,我们通过用递增浓度(0、10、20、50、100、200、500 和 1000 μM)的 HO 单独或 HO+HA(83%)处理 4T1 乳腺癌细胞系 24 小时,发现最佳 HO 剂量。然后,通过原子吸收火焰分光光度法测量钙离子、钠离子和钾离子的水平来评估钙通道和钠钾泵。结果表明,HO 或 HO+HA 处理在常氧和缺氧条件下均导致细胞内钙离子、钠离子和钾离子的浓度呈剂量依赖性增加。值得注意的是,与 HO 单独处理相比,HO+HA 处理具有更有利和可控的效果。此外,HA 优化了 HO 产生的氧化应激的抗肿瘤作用,使得 HO+HA 适合与化疗一起用于癌症治疗。