Biology Department, Faculty of Arts & Sciences, Harran University, Osmanbey Campus, Sanliurfa, Turkey.
Biology Department, Faculty of Arts & Sciences, Harran University, Osmanbey Campus, Sanliurfa, Turkey.
Biomed Pharmacother. 2018 Oct;106:770-775. doi: 10.1016/j.biopha.2018.07.008. Epub 2018 Jul 11.
In this study, we investigated the potential effects of naringenin on the motility of MAT-LyLu cells, which overexpress voltage-gated sodium channels and whose metastatic behaviours are associated with these channels. We first determined the concentration of naringenin that did not show toxic effects or block cell growth. Then, the effects of naringenin on cell motility in the lateral and vertical directions were tested by wound healing assays and transwell invasion assays, respectively. Finally, to determine the suppressive effects of naringenin on cell movement in both directions, the expression of the SCN9A gene, which encodes Nav1.7 voltage-gated sodium channel, was determined by real-time quantitative polymerase chain reaction. The data revealed that high concentrations of naringenin (75 μM) inhibited cell proliferation, whereas low concentrations (5 and 10 μM) decreased the movement of MAT-LyLu cells. Moreover, 10 μM naringenin displayed inhibitory effects on cell movement by reducing the expression of the SCN9A gene at the mRNA level. In conclusion, naringenin was found to have direct or indirect blocking activity on voltage-gated sodium channels encoded by the SCN9A gene.
在这项研究中,我们研究了柚皮素对表达电压门控钠离子通道的 MAT-LyLu 细胞运动的潜在影响,这些通道的表达与这些细胞的转移行为有关。我们首先确定了不会表现出毒性作用或阻断细胞生长的柚皮素浓度。然后,通过划痕愈合试验和 Transwell 侵袭试验分别测试了柚皮素对侧向和垂直方向细胞迁移的影响。最后,为了确定柚皮素对两个方向细胞运动的抑制作用,通过实时定量聚合酶链反应确定编码 Nav1.7 电压门控钠离子通道的 SCN9A 基因的表达。数据显示,高浓度柚皮素(75 μM)抑制细胞增殖,而低浓度(5 和 10 μM)则降低 MAT-LyLu 细胞的运动能力。此外,10 μM 柚皮素通过降低 SCN9A 基因在 mRNA 水平上的表达来抑制细胞运动。总之,柚皮素被发现对 SCN9A 基因编码的电压门控钠离子通道具有直接或间接的阻断作用。