Li Yehong, Liu Ying, Tao Junling, Li Shixin
Guizhou Medical University, Guiyang 550004, Guizhou, China.
Department of Critical Care Medicine, Affiliated Hospital of Guizhou Medical University, Guiyang 550004, Guizhou, China. Corresponding author: Liu Ying, Email:
Zhonghua Wei Zhong Bing Ji Jiu Yi Xue. 2023 Jun;35(6):633-637. doi: 10.3760/cma.j.cn121430-20221214-01092.
To investigate whether hydrogen-rich water exerts a protective effect against cellular injury by affecting the level of autophagy after oxygen glucose deprivation/reoxygenation (OGD/R) in a mouse hippocampal neuronal cell line (HT22 cells).
HT22 cells in logarithmic growth phase were cultured in vitro. Cell viability was detected by cell counting kit-8 (CCK-8) assay to find the optimal concentration of NaSO. HT22 cells were divided into control group (NC group), OGD/R group (sugar-free medium+10 mmol/L NaSO treated for 90 minutes and then changed to normal medium for 4 hours) and hydrogen-rich water treatment group (HW group, sugar-free medium+10 mmol/L NaSO treated for 90 minutes and then changed to medium containing hydrogen-rich water for 4 hours). The morphology of HT22 cells was observed by inverted microscopy; cell activity was detected by CCK-8 method; cell ultrastructure was observed by transmission electron microscopy; the expression of microtubule-associated protein 1 light chain 3 (LC3) and Beclin-1 was detected by immunofluorescence; the protein expression of LC3II/I and Beclin-1, markers of cellular autophagy, was detected by Western blotting.
Inverted microscopy showed that compared with the NC group, the OGD/R group had poor cell status, swollen cytosol, visible cell lysis fragments and significantly lower cell activity [(49.1±2.7)% vs. (100.0±9.7)%, P < 0.01]; compared with the OGD/R group, the HW group had improved cell status and remarkably higher cell activity [(63.3±1.8)% vs. (49.1±2.7)%, P < 0.01]. Transmission electron microscopy showed that the neuronal nuclear membrane of cells in the OGD/R group was lysed and a higher number of autophagic lysosomes were visible compared with the NC group; compared with the OGD/R group, the neuronal damage of cells in the HW group was reduced and the number of autophagic lysosomes was notably decreased. The results of immunofluorescence assay showed that the expressions of LC3 and Beclin-1 were outstandingly enhanced in the OGD/R group compared with the NC group, and the expressions of LC3 and Beclin-1 were markedly weakened in the HW group compared with the OGD/R group. Western blotting assay showed that the expressions were prominently higher in both LC3II/I and Beclin-1 in the OGD/R group compared with the NC group (LC3II/I: 1.44±0.05 vs. 0.37±0.03, Beclin-1/β-actin: 1.00±0.02 vs. 0.64±0.01, both P < 0.01); compared with the OGD/R group, the protein expression of both LC3II/I and Beclin-1 in the HW group cells were notably lower (LC3II/I: 0.54±0.02 vs. 1.44±0.05, Beclin-1/β-actin: 0.83±0.07 vs. 1.00±0.02, both P < 0.01).
Hydrogen-rich water has a significant protective effect on OGD/R-causing HT22 cell injury, and the mechanism may be related to the inhibition of autophagy.
研究富氢水是否通过影响小鼠海马神经元细胞系(HT22细胞)氧糖剥夺/复氧(OGD/R)后自噬水平对细胞损伤发挥保护作用。
体外培养处于对数生长期的HT22细胞。采用细胞计数试剂盒-8(CCK-8)法检测细胞活力以确定NaSO的最佳浓度。将HT22细胞分为对照组(NC组)、OGD/R组(无糖培养基+10 mmol/L NaSO处理90分钟,然后更换为正常培养基培养4小时)和富氢水处理组(HW组,无糖培养基+10 mmol/L NaSO处理90分钟,然后更换为含富氢水的培养基培养4小时)。通过倒置显微镜观察HT22细胞形态;采用CCK-8法检测细胞活性;通过透射电子显微镜观察细胞超微结构;采用免疫荧光法检测微管相关蛋白1轻链3(LC3)和Beclin-1的表达;采用蛋白质免疫印迹法检测细胞自噬标志物LC3II/I和Beclin-1的蛋白表达。
倒置显微镜观察显示,与NC组相比,OGD/R组细胞状态差,胞质肿胀,可见细胞裂解碎片,细胞活性显著降低[(49.1±2.7)% vs.(100.0±9.7)%,P < 0.01];与OGD/R组相比,HW组细胞状态改善,细胞活性显著升高[(63.3±1.8)% vs.(49.1±2.7)%,P < 0.01]。透射电子显微镜观察显示,与NC组相比,OGD/R组细胞的神经元核膜溶解,可见较多自噬溶酶体;与OGD/R组相比,HW组细胞的神经元损伤减轻,自噬溶酶体数量明显减少。免疫荧光检测结果显示,与NC组相比,OGD/R组中LC3和Beclin-1的表达显著增强,与OGD/R组相比,HW组中LC3和Beclin-1的表达明显减弱。蛋白质免疫印迹检测显示,与NC组相比,OGD/R组中LC3II/I和Beclin-1的表达均显著升高(LC3II/I:1.44±0.05 vs. 0.37±0.03,Beclin-1/β-肌动蛋白:1.00±0.02 vs. 0.64±0.01,均P < 0.01);与OGD/R组相比,HW组细胞中LC3II/I和Beclin-1的蛋白表达均显著降低(LC3II/I:0.54±0.02 vs. 1.44±0.05,Beclin-1/β-肌动蛋白:0.83±0.07 vs. 1.00±0.02,均P < 0.01)。
富氢水对OGD/R诱导的HT22细胞损伤具有显著保护作用,其机制可能与抑制自噬有关。