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吡咯喹啉醌对氧化应激下大鼠骨髓间充质干细胞线粒体功能及细胞存活的影响与机制

[Effects and mechanism of pyrroloquinoline quinine on mitochondrial function and cell survival of rat bone marrow mesenchymal stem cells under oxidative stress].

作者信息

Wang X J, Yang Y S, Shen K, Wang J, Han F, Wu G F, Li Y, Bai X Z, Luo L, Hu D H

机构信息

Burn Center of PLA, Department of Burns and Cutaneous Surgery, Xijing Hospital, Air Force Medical University, Xi'an 710032, China.

出版信息

Zhonghua Shao Shang Za Zhi. 2020 May 20;36(5):378-387. doi: 10.3760/cma.j.cn501120-20190806-00335.

Abstract

To observe the effects of pyrroloquinoline quinine (PQQ) on the mitochondrial function and cell survival of rat bone marrow mesenchymal stem cells (BMSCs) under oxidative stress, and to explore its mechanism. BMSCs of rats were cultured in vitro with Dulbecco's minimum essential medium/F12 medium containing fetal bovine serum in the volume fraction of 10% (hereinafter referred to as normal medium). The rat BMSCs of third to fifth passages in logarithmic growth phase were selected for the following experiments. (1) The cells were divided into normal control group, normal control+ PQQ group, hydrogen peroxide (H(2)O(2)) alone group, and H(2)O(2)+ PQQ group. The cells in normal control group were cultured in normal medium for 24 hours; the cells in normal control+ PQQ group were cultured in normal medium containing 100 μmol/L PQQ for 24 hours; the cells in H(2)O(2) alone group were cultured in normal medium containing 200 μmol/L H(2)O(2) for 24 hours; the cells in H(2)O(2)+ PQQ group were pre-incubated with normal medium containing 100 μmol/L PQQ for 2 hours, and then with H(2)O(2) added to the concentration of 200 μmol/L and cultured for 24 hours. The cell morphology of each group was observed under the inverted phase contrast microscope, and the cell survival rate was detected by cell count kit 8 method. (2) Five batches of cells were collected, and the cells of each batch were divided into normal control group, H(2)O(2) alone group, and H(2)O(2)+ PQQ group. The cells in each group received the same treatment as that in the corresponding group of experiment (1). After 24 hours of culture, one batch of cells was collected for apoptosis detection by flow cytometry, and the apoptosis rate was calculated. One batch of cells was subjected to mitochondrial membrane potential assay and JC-1 fluorescent staining observation using the JC-1 mitochondrial membrane potential detection kit and the inverted phase contrast fluorescence microscope, respectively. One batch of cells was collected for mitochondrial morphology observation under the transmission electron microscope. One batch of cells was subjected to catalase (CAT) and superoxide dismutase (SOD) activity assay by CAT activity assay kit and SOD activity assay kit, respectively. One batch of cells was subjected to Western blotting for determination of protein level of Epac1, adenine monophosphate activated protein kinase (AMPK), phosphorylated AMPK, cysteinyl aspartate-specific proteinase 3 (caspase-3), and cleaved caspase-3, and the phosphorylation level of AMPK and cleaved caspase-3/caspase-3 ratio were calculated. Six replicates were measured in each group for each index except for morphological observation. Data were statistically analyzed with one-way analysis of variance and independent sample equal variance test. (1) After 24 hours of culture, compared with those in normal control group (the cell survival rate was set to 100.0%), there was an increase in cell vacuole and a decrease in cell number in H(2)O(2) alone group, and the cell survival rate was significantly reduced to (74.3±2.9)% (=6.39, <0.01). Compared with those in H(2)O(2) alone group, the cell morphology of H(2)O(2)+ PQQ group was significantly improved, and the cell survival rate was significantly increased to (116.9±4.2)% (=6.92, <0.01); the cell survival rate in normal control+ PQQ group was (101.2±1.1)%, close to that of control group (=1.06, >0.05). (2) After 24 hours of culture, compared with (13.6±1.0)% in normal control group, the apoptosis rate of cells in H(2)O(2) alone group was significantly increased to (37.1±2.0)% (=10.57, <0.01). Compared with that in H(2)O(2) alone group, the apoptosis rate of cells in H(2)O(2)+ PQQ group was significantly declined to (17.0±0.7)% (=9.49, <0.01). (3) After 24 hours of culture, compared with those in normal control group, the mitochondrial membrane potential of cells in H(2)O(2) alone group was depolarized, the JC-1 fluorescent dye mainly existed in the cytoplasm in the form of monomer, which emitted green fluorescence, and a significant decrease in mitochondrial membrane potential was shown (=4.18, <0.01). Compared with those in H(2)O(2) alone group, the mitochondrial membrane potential of cells in H(2)O(2)+ PQQ group was increased to normal level (=4.43, <0.01), and the JC-1 fluorescent dye accumulated in mitochondria following the polarized mitochondrial membrane potential and emitted red fluorescence. (4) After 24 hours of culture, compared with that in normal control group, the mitochondrial structure of cells in H(2)O(2) alone group was disordered, with disappeared mitochondrial cristae and decreased mitochondrial matrix density. Compared with that in H(2)O(2) alone group, the mitochondrial structure of cells in H(2)O(2)+ PQQ group was regular and intact, with clearly visible mitochondrial cristae and increased mitochondrial matrix density. (5) After 24 hours of culture, compared with those in normal control group, the CAT activity of cells in H(2)O(2) alone group was significantly increased (=4.54, <0.05), and the SOD activity was significantly decreased (=3.93, <0.05). Compared with those in H(2)O(2) alone group, the CAT activity of cells in H(2)O(2)+ PQQ group was obviously increased (=8.65, <0.01), while there was no significant change in the SOD activity (=0.72, >0.05). (6) After 24 hours of culture, compared with those in normal control group, the protein expression of Epac1 of cells in H(2)O(2) alone group was significantly decreased (=4.67, <0.01), while the AMPK phosphorylation level and the cleaved caspase-3/caspase-3 ratio were significantly increased (=7.88, 3.62, <0.01). Compared with those in H(2)O(2) alone group, the protein expression of Epac1 and the AMPK phosphorylation level of cells in H(2)O(2)+ PQQ group were both significantly increased (=4.34, 16.37, <0.01), while the cleaved caspase-3/caspase-3 ratio was significantly declined (=3.17, <0.05). Pretreatment with PQQ can improve the mitochondrial function, reduce cell apoptosis rate, and enhance cell survival rate of rat BMSCs under oxidative stress, which may be related to the up-regulation of Epac1 protein expression, activation of AMPK signaling pathway, and down-regulation of cleaved caspase-3 protein level.

摘要

观察吡咯喹啉醌(PQQ)对氧化应激状态下大鼠骨髓间充质干细胞(BMSCs)线粒体功能及细胞存活的影响,并探讨其作用机制。取大鼠BMSCs,用含体积分数10%胎牛血清的杜尔贝科改良伊格尔培养基/F12培养基(以下简称正常培养基)进行体外培养。选取对数生长期的第3至5代大鼠BMSCs进行以下实验。(1)将细胞分为正常对照组、正常对照 + PQQ组、过氧化氢(H₂O₂)单独作用组、H₂O₂ + PQQ组。正常对照组细胞在正常培养基中培养24小时;正常对照 + PQQ组细胞在含100 μmol/L PQQ的正常培养基中培养24小时;H₂O₂单独作用组细胞在含200 μmol/L H₂O₂的正常培养基中培养24小时;H₂O₂ + PQQ组细胞先用含100 μmol/L PQQ的正常培养基预孵育2小时,然后加入H₂O₂使其终浓度为200 μmol/L并培养24小时。在倒置相差显微镜下观察各组细胞形态,采用细胞计数试剂盒8法检测细胞存活率。(2)收集5批次细胞,每批次细胞再分为正常对照组、H₂O₂单独作用组、H₂O₂ + PQQ组。各组细胞接受与实验(1)中相应组相同的处理。培养24小时后,收集一批细胞,采用流式细胞术检测细胞凋亡情况并计算凋亡率。收集一批细胞,分别使用JC - 1线粒体膜电位检测试剂盒和倒置相差荧光显微镜进行线粒体膜电位检测及JC - 1荧光染色观察。收集一批细胞,在透射电子显微镜下观察线粒体形态。收集一批细胞,分别采用CAT活性检测试剂盒和SOD活性检测试剂盒进行过氧化氢酶(CAT)和超氧化物歧化酶(SOD)活性检测。收集一批细胞,采用蛋白质免疫印迹法检测Epac1、腺苷酸活化蛋白激酶(AMPK)、磷酸化AMPK、半胱天冬酶 - 3(caspase - 3)及裂解的caspase - 3的蛋白水平,并计算AMPK的磷酸化水平及裂解的caspase - 3/caspase - 3比值。除形态学观察外,每组各指标均重复测量6次。数据采用单因素方差分析和独立样本等方差检验进行统计学分析。(1)培养24小时后,与正常对照组(细胞存活率设为100.0%)相比,H₂O₂单独作用组细胞出现空泡增多、细胞数量减少,细胞存活率显著降低至(74.3±2.9)%(F = 6.39,P < 0.01)。与H₂O₂单独作用组相比,H₂O₂ + PQQ组细胞形态明显改善,细胞存活率显著升高至(116.9±4.2)%(F = 6.92,P < 0.01);正常对照 + PQQ组细胞存活率为(101.2±1.1)%,与对照组接近(F = 1.06,P > 0.05)。(2)培养24小时后,与正常对照组的(13.6±1.0)%相比,H₂O₂单独作用组细胞凋亡率显著升高至(37.1±2.0)%(F = 10.57,P < 0.01)。与H₂O₂单独作用组相比,H₂O₂ + PQQ组细胞凋亡率显著下降至(17.0±0.7)%(F = 9.49,P < 0.01)。(3)培养24小时后,与正常对照组相比,H₂O₂单独作用组细胞线粒体膜电位去极化,JC - 1荧光染料主要以单体形式存在于细胞质中,发出绿色荧光,线粒体膜电位显著降低(F = 4.18,P < 0.01)。与H₂O₂单独作用组相比,H₂O₂ + PQQ组细胞线粒体膜电位升高至正常水平(F = 4.43,P < 0.01),JC - 1荧光染料随着线粒体膜电位极化而聚集在线粒体中,发出红色荧光。(4)培养24小时后,与正常对照组相比,H₂O₂单独作用组细胞线粒体结构紊乱,线粒体嵴消失,线粒体基质密度降低。与H₂O₂单独作用组相比,H₂O₂ + PQQ组细胞线粒体结构规则完整,线粒体嵴清晰可见,线粒体基质密度增加。(5)培养24小时后,与正常对照组相比,H₂O₂单独作用组细胞CAT活性显著升高(F = 4.54,P < 0.05),SOD活性显著降低(F = 3.93,P < 0.05)。与H₂O₂单独作用组相比,H₂O₂ + PQQ组细胞CAT活性明显升高(F = 8.65,P < 0.01),而SOD活性无明显变化(F = 0.72,P > 0.05)。(6)培养24小时后,与正常对照组相比,H₂O₂单独作用组细胞Epac1蛋白表达显著降低(F = 4.67,P < 0.01),而AMPK磷酸化水平及裂解的caspase - 3/caspase - 3比值显著升高(F = 7.88,3.62,P < 0.01)。与H₂O₂单独作用组相比,H₂O₂ + PQQ组细胞Epac

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