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Iron contributes to the formation of catechol isoquinolines and oxidative toxicity induced by overdose dopamine in dopaminergic SH-SY5Y cells
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作者 王冉 庆宏 +2 位作者 刘晓茜 郑晓琳 邓玉林 《Neuroscience Bulletin》 SCIE CAS CSCD 2008年第3期125-132,共8页
Objective The selective loss of dopaminergic neurons in Parkinson's disease is suspected to correlate with the increase of cellular iron, which may be involved in the pathogenesis of PD by promotion of oxidative stre... Objective The selective loss of dopaminergic neurons in Parkinson's disease is suspected to correlate with the increase of cellular iron, which may be involved in the pathogenesis of PD by promotion of oxidative stress. This research investigated dopamine-induced oxidative stress toxicity contributed by iron and the production of dopamine-derived neurotoxins in dopaminergic SH-SYSY cells. Methods After the SH-SYSY cells were pre-incubated with dopamine and Fe^2+ for 24 h, the cell viability, hydroxyl radical, melondialdehyde, cell apoptosis, and catechol isoquinolines were measured by lactate dehydrogenase assay, salicylic acid trapping method, thiobarbuteric acid assay, Hoechst 33258 staining and HPLC-electrochemical detection (HPLC-ECD), respectively. Results (1) Optimal dopamine (150 μmol/L) and Fe^2+ (40 or 80 μmol/L) significantly increased the concentrations of hydroxy radicals and melondialdehyde in SH-SYSY cells. (2) Induction with dopamine alone or dopamine and Fe^2+ (dopamine/Fe^2+) caused cell apoptosis. (3) Compared with untreated cells, the catechol isoquinolines, salsolinol and N-methyl-salsolinol in dopamine/Fe^2+-induced cells were detected in increasing amounts. Conclusion Due to dopamine/Fe^2+-induced oxidative stress similar to the state in the parkinsonian substantia nigra neurons, dopamine and Fe^2+ impaired SH-SYSY cells could be used as the cell oxidative stress model of Parkinson's disease. The catechol isoquinolines detected in cells may be involved in the pathogenesis of Parkinson's disease as potential neurotoxins. 展开更多
关键词 Parkinson's disease Fe^2+ DOPAMINE oxidative stress SALSOLINOL n-methyl-salsolinol
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α-Synuclein转基因小鼠内源性儿茶酚异喹啉的高效液相色谱-串联质谱检测
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作者 张镇松 郭琳娜 +1 位作者 邓玉林 张庆华 《分析科学学报》 CSCD 北大核心 2017年第6期769-774,共6页
建立内源性儿茶酚异喹啉类物质1-甲基-6,7-二羟基-1,2,3,4-四氢异喹啉(Salsolinol,Sal)、6,7-二羟基-1,2-二甲基-1,2,3,4-四氢异喹啉(N-methyl-Sal,NMSal)的高效液相色谱-串联质谱(HPLC-MS/MS)定量检测方法,研究α-Synuclein过表达对Sal... 建立内源性儿茶酚异喹啉类物质1-甲基-6,7-二羟基-1,2,3,4-四氢异喹啉(Salsolinol,Sal)、6,7-二羟基-1,2-二甲基-1,2,3,4-四氢异喹啉(N-methyl-Sal,NMSal)的高效液相色谱-串联质谱(HPLC-MS/MS)定量检测方法,研究α-Synuclein过表达对Sal、NMSal脑内水平的影响。实验优化了色谱及质谱条件,建立基于多反应监测(MRM)技术的Sal和NMSal的高灵敏度、高选择性、高重复性分析方法,并应用此方法对过表达人源野生型(WT)、突变型(A53T)α-Synuclein蛋白的转基因小鼠脑中Sal、NMSal含量进行测定,发现WT、A53T转基因小鼠脑内Sal、NMSal的含量与对照组相比均显著升高。结果表明:Sal、NMSal分别在6.10pmol/L^6.25nmol/L和97.70pmol/L^100.00nmol/L范围呈线性(相关系数r≥0.9995),日内、日间相对标准偏差(RSD)均小于15.0%,回收率分别为86.5%~90.7%和81.0%~91.4%,Sal、NMSal的检出限分别为1.53pmol/L和24.4pmol/L,定量限分别为6.10pmol/L和97.7pmol/L。α-Synuclein过表达会导致内源性神经毒素Sal、NMSal水平的升高,可能与帕金森病发病机制有关。 展开更多
关键词 帕金森病 SALSOLINOL n-methyl-salsolinol 多反应监测 α-Synuclein转基因小鼠
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SH-SYSH-SY5Y与UU87细胞共培养条件性培养基可降低N-甲基-salsolinol介导THP-THP-1细胞的凋亡
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作者 王馥丽 邓玉林 《科技导报》 CAS CSCD 北大核心 2015年第10期107-112,共6页
神经免疫在帕金森病(PD)的致病机理中发挥重要的作用,PD患者的外周血淋巴细胞的数量发生了变化,提示外周免疫系统在PD的发生发展中发挥一定的作用。但是外周单核细胞(PBMC)在其中发挥的具体作用尚不清楚。外源性神经毒素(MPTP)类似物,... 神经免疫在帕金森病(PD)的致病机理中发挥重要的作用,PD患者的外周血淋巴细胞的数量发生了变化,提示外周免疫系统在PD的发生发展中发挥一定的作用。但是外周单核细胞(PBMC)在其中发挥的具体作用尚不清楚。外源性神经毒素(MPTP)类似物,内源性神经毒素(NMSal)可能是导致PD发生的一种因素。研究采用NMSal损伤的SH-SY5Y与U87细胞共培养的条件性培养基培养外周单核细胞THP-1,探讨NMSal损伤的多巴胺能神经元细胞对外周单核细胞的影响。结果表明,该条件性培养基可以降低NMSal毒性诱导的THP-1细胞的凋亡、氧化应激水平(MDA和H2O2)、线粒体的损伤和凋亡相关蛋白FADD、Bax和caspase3的表达和活化水平。PD病人中损伤的多巴胺能神经元与星形胶质细胞的相互作用可能会影响PBMC,进而影响PD病情的进展。 展开更多
关键词 帕金森病 N-甲基-salsolinol 细胞共培养 人单核细胞系THP-1 细胞凋亡
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