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叶黄素对H2O2诱导的人视网膜Muller细胞氧化应激干预的作用机制 被引量:4
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作者 杨旭 王明臣 +3 位作者 孙艳艳 安慧娟 李庆福 鲍玉洲 《中华实验眼科杂志》 CAS CSCD 北大核心 2015年第11期1009-1014,共6页
背景氧化应激是年龄相关性黄斑变性(AMD)的主要因素之一。研究表明叶黄素对AMD有预防作用,但是其抗氧化机制仍不明确。Mμller细胞是视网膜氧化应激反应的靶细胞之一,研究叶黄素对MUller细胞的氧化应激是否具有保护作用及其作用机... 背景氧化应激是年龄相关性黄斑变性(AMD)的主要因素之一。研究表明叶黄素对AMD有预防作用,但是其抗氧化机制仍不明确。Mμller细胞是视网膜氧化应激反应的靶细胞之一,研究叶黄素对MUller细胞的氧化应激是否具有保护作用及其作用机制对于视网膜疾病的治疗具有重要意义。目的研究叶黄素对视网膜Mμller细胞核因子E2相关转录因子2/抗氧化反应原件(Nrf2/ARE)信号途径的影响。方法人Muller细胞株进行常规培养,将对数生长期的细胞接种于96孔培养板,在培养液中分别加入不同浓度(40、80、160、320、640ixmol/L)HO2,绘制Mμller细胞的凋亡曲线,取H2O2的半数致死量,即160μmol/L制备Mμller细胞氧化应激模型。将模型细胞分为模型对照组和不同质量浓度(12.5、25.0、50.0mg/L)叶黄素组,根据分组情况分别在培养液中加入相应质量浓度的叶黄素,用常规培养的细胞作为空白对照组。采用MTT比色法测定各组中Maller细胞增生值(吸光度,A值)和凋亡率;采用流式细胞仪检测各组细胞中活性氧簇(ROS)的荧光强度;采用实时荧光定量PCR检测细胞中Nrf2mRNA和血红素加氧酶-1(HO-1)mRNA的相对表达量;采用Westernblot法检测各组细胞中Nrf2和HO-1蛋白的表达水平(灰度值)。结果MTT比色法检测显示,随着H2O2浓度的增加,细胞增生抑制率逐渐增加,各组间总体比较差异有统计学意义(F=43.890,P〈0.01)。空白对照组、模型对照组及12.5、25.0、50.0mg/L叶黄素组细胞凋亡率的总体比较差异有统计学意义(F=346.770,P=0.000),其中随着叶黄素质量浓度的增加,细胞凋亡率逐渐下降,组间比较差异均有统计学意义(均P〈0.05)。空白对照组、模型对照组及12.5、25.0、50.0mg/L叶黄素组细胞中ROS含量分别为1.92±0.18、64.89±2.86、52.70±2.80、32.61±4.20和5.68±1.35,随着叶黄素质量浓度的增加,ROS含量逐渐下降,组间总体比较差异有统计学意义(F=324.900,P=0.000)。各质量浓度叶黄素组细胞中Nrf2和HO一1mRNA相对表达量及细胞中HO-1和细胞核中Nrf2蛋白表达量均明显高于模型对照组,各组间总体比较差异均有统计学意义(F=236.960、242.620、186.830、263.120,均P=0.000),随着叶黄素质量浓度的增加,Nrf2mRNA和HO-1mRNA及其蛋白的表达量逐渐增加,组间比较差异均有统计学意义(均P〈0.05),但各组间Muller细胞的细胞质中Nrf2蛋白表达量总体比较差异无统计学意义(F=1.790,P=0.210)。结论叶黄素通过上调Nrf2的表达和核转位诱导抗氧化酶的表达,从而抑制Mailer细胞的氧化应激反应。 展开更多
关键词 氧化应激/生理 叶黄素/药理 MULLER细胞 年龄相关性黄斑变性 核因子E2相关转录 因子2/代谢 血红素加氧酶-1/代谢
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Protective effects of methane-rich saline on mice with allergic asthma by inhibiting inflammatory response, oxidative stress and apoptosis 被引量:3
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作者 Ning ZHANG Hong-tao LU +1 位作者 Rong-jia ZHANG Xue-jun SUN 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2019年第10期828-837,共10页
Background:Asthma is a common cause of breathing difficulty in children and adults,and is characterized by chronic airway inflammation that is poorly controlled by available treatments.This results in severe disabilit... Background:Asthma is a common cause of breathing difficulty in children and adults,and is characterized by chronic airway inflammation that is poorly controlled by available treatments.This results in severe disability and applies a huge burden to the public health system.Methane has been demonstrated to function as a therapeutic agent in many diseases.The aim of the present study was to explore the effect of methane-rich saline(MRS)on the pathophysiology of a mouse model of asthma and its underlying mechanism.Methods:A murine model of ovalbumin(OVA)-induced allergic asthma was applied in this study.Mice were divided into three groups:a control group,an OVA group,and OVA-induced asthmatic mice treated with MRS as the third group.Lung resistance index(RI)and dynamic compliance(Cdyn)were measured to determine airway hyper-responsiveness(AHR).Haematoxylin and eosin(H&E)staining was performed and scored to show histopathological changes.Cell counts of bronchoalveolar lavage fluid(BALF)were recorded.Cytokines interleukin(IL)-4,IL-5,IL-13,tumor necrosis factorα(TNF-α),and C-X-C motif chemokine ligand 15(CXCL15)from BALF and serum were measured by enzyme-linked immunosorbent assay(ELISA).The oxidative stress indexes,including malondialdehyde(MDA),superoxide dismutase(SOD),catalase(CAT),glutathione(GSH),myeloperoxidase(MPO),and 8-hydroxydeoxyguanosine(8-OHdG),were determined using commercial kits.Apoptosis was evaluated by western blot,quantitative real-time polymerase chain reaction(qRT-PCR),and biochemical examination.Results:MRS administration reversed the OVA-induced AHR,attenuated the pathological inflammatory infiltration,and decreased the cytokines IL-4,IL-5,IL-13,TNF-α,and CXCL15 in serum and BALF.Moreover,following MRS administration,the oxidative stress was alleviated as indicated by decreased MDA,MPO,and 8-OHdG,and elevated SOD and GSH.In addition,MRS exhibited an anti-apoptotic effect in this model,protecting epithelial cells from damage.Conclusions:Methane improves pulmonary function and decreases infiltrative inflammatory cells in the allergic asthmatic mouse model.This may be associated with its anti-inflammatory,antioxidative,and anti-apoptotic properties. 展开更多
关键词 Asthma Methane-rich saline ANTIOXIDATION ANTI-INFLAMMATION ANTI-APOPTOTIC
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