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The Role of ROS in Hydroquinone-induced Inhibition of K562 Cell Erythroid Differentiation 被引量:5
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作者 yu chun hong Suriguga +4 位作者 LI Yang LI Yi Ran TANG Ke Ya JIANG Liang YI Zong chun 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2014年第3期212-214,共3页
The role of ROS in hydroquinone-induced inhibition of K562 cell erythroid differentiation was investigated.After K562 cells were treated with hydroquinone for 24 h,and hemin was later added to induce erythroid differe... The role of ROS in hydroquinone-induced inhibition of K562 cell erythroid differentiation was investigated.After K562 cells were treated with hydroquinone for 24 h,and hemin was later added to induce erythroid differentiation for 48 h,hydroquinone inhibited hemin-induced 展开更多
关键词 K562细胞 红细胞分化 活性氧 诱导 氢醌 L-半胱氨酸 氯化血红素 浓度依赖性
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Inhibition of Erythroid Differentiation of Human Leukemia K562 Cells by N-acetylcysteine and Ascorbic Acid through Downregulation of ROS 被引量:2
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作者 yu chun hong JIANG Liang +3 位作者 WANG Ying CUI Ning Xuan ZHAO Xiao YI Zong chun 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2018年第3期247-251,共5页
这研究在这个过程在导致 hemin 的 K562 房间 erythroid 区别和反应的氧种类(ROS ) 的角色上调查了 N-acetylcysteine (NAC ) 和维生素酸(AA ) 的效果。Hemin 以一种集中依赖者方式增加了 ROS 层次,而 NAC 和 AA 有相反的效果。NAC 和 ... 这研究在这个过程在导致 hemin 的 K562 房间 erythroid 区别和反应的氧种类(ROS ) 的角色上调查了 N-acetylcysteine (NAC ) 和维生素酸(AA ) 的效果。Hemin 以一种集中依赖者方式增加了 ROS 层次,而 NAC 和 AA 有相反的效果。NAC 和 AA 在 hemin 处理,禁止的导致 hemin 的血红素合成,和减少的 mRNA 表示以后消除了短暂增加的 ROS 层次 -globin,-globin, 和 GATA-1 基因的层次显著地。当时,有为 2 h 的 5,000 mol/L AA 的预告的处理比那导致了血红素合成的更加更低的抑制比率为 24 h 的 pretreated,而 ROS 层次是最低当为 2 h 与 5,000 mol/L AA 对待时。这些结果证明 NAC 和 AA 可能由 downregulating ROS 层次禁止导致 hemin 的 K562 房间 erythroid 区别。 展开更多
关键词 K562 ROS 维生素 房间 白血病 NAC
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Proteomics Study of Benzene Metabolite Hydroquinone Induced Hematotoxicity in K562 Cells
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作者 JIN Yi Shan YI Zong chun +2 位作者 ZHANG yu Jing RONG Long yu chun hong 《Biomedical and Environmental Sciences》 SCIE CAS 2024年第4期341-353,共13页
Objective Hydroquinone(HQ),one of the phenolic metabolites of benzene,is widely recognized as an important participant in benzene-induced hematotoxicity.However,there are few relevant proteomics in HQ-induced hematoto... Objective Hydroquinone(HQ),one of the phenolic metabolites of benzene,is widely recognized as an important participant in benzene-induced hematotoxicity.However,there are few relevant proteomics in HQ-induced hematotoxicity and the mechanism hasn’t been fully understood yet.Methods In this study,we treated K562 cells with 40μmol/L HQ for 72 h,examined and validated protein expression changes by Label-free proteomic analysis and Parallel reaction monitoring(PRM),and performed bioinformatics analysis to identify interaction networks.Results One hundred and eighty-seven upregulated differentially expressed proteins(DEPs)and 279 downregulated DEPs were identified in HQ-exposed K562 cells,which were involved in neutrophilmediated immunity,blood microparticle,and other GO terms,as well as the lysosome,metabolic,cell cycle,and cellular senescence-related pathways.Focusing on the 23 DEGs and 5 DEPs in erythroid differentiation-related pathways,we constructed the network of protein interactions and determined 6 DEPs(STAT1,STAT3,CASP3,KIT,STAT5B,and VEGFA)as main hub proteins with the most interactions,among which STATs made a central impact and may be potential biomarkers of HQ-induced hematotoxicity.Conclusion Our work reinforced the use of proteomics and bioinformatic approaches to advance knowledge on molecular mechanisms of HQ-induced hematotoxicity at the protein level and provide a valuable basis for further clarification. 展开更多
关键词 Hydroquinone Proteomics Hematotoxicity K562 cells
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