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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 CSCD 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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Zeylenone promotes apoptosis of chronic myelogenous leukemia-derived K562 cells by a mechanism involving Jak2 and src kinase 被引量:1
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作者 HUO Xiao-wei LIAO Yong-hong +4 位作者 TIAN Yu GAO Li LIU Dong-yu LI Li-yong CAO Li 《中国药理学与毒理学杂志》 CAS CSCD 北大核心 2016年第10期1069-1070,共2页
OBJECTIVE The present study was designed to investigate anticancer effect of zeylenone(Zey)on K562 cells derived from chronic myelogenous leukemia(CML)both in vitro and in vivo,followed by exploring the underlying mec... OBJECTIVE The present study was designed to investigate anticancer effect of zeylenone(Zey)on K562 cells derived from chronic myelogenous leukemia(CML)both in vitro and in vivo,followed by exploring the underlying mechanisms.METHODS Initially,the effects of Zey on cel viability,proliferation,and apoptosis were measured in K562 cells by MTT,soft agar assay,AO/EB staining,hoechst 33258 staining and flow cytometric analysis after they were treated with Zey for indicated time,the involving signaling pathways were then investigated by JC-1,real-time quantitative polymerase chain reaction(RT-q PCR),Western blotting and immunofluorescence analysis.Furthermore,the in vivo anti-tumoractivity of Zey was assessed with nude xenografts and the involving mechanism was confirmed by immunohistochemical(IHC)and histopathological analysis.RESULTS We identified that Zey dose-dependently decreased cell viability,colony formation and expression of Proliferating Cell Nuclear Antigen(PCNA),and significantly induced K562 cell apoptosis via regulating Bcl-2 family members,decreasing mitochondrial transmembrane potential,and activating caspase-3,caspase-9,and caspase-8(P<0.05 or P<0.01).Further study revealed that Zey significantly inhibited phosphorylation of Jak2 and Src and downregulated their downstream proteins,including stat3,PI3K/AKT/m TOR,and ERK1/2 signaling pathways(P<0.05 or P<0.01).Zey also suppressed tumor growth with low toxicity in mouse xenograft model of K562cells through decreasing expression of Jak2 and Src.CONCLUSION Our data demonstrated that Zey substantially suppressed K562 cells both in vitro and in vivo through Jak2 and Src pathways.These findings suggest the potential of Zey as an effective anticancer agent in CML treatment. 展开更多
关键词 zeylenone APOPTOSIS k562 cells JAK2 SRC
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Antitumor Effect of Betulinic Acid on Human Acute Leukemia K562 Cells in vitro
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作者 吴秋玲 何静 +1 位作者 方峻 洪梅 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2010年第4期453-457,共5页
The effects of betulinic acid (BA), a pentacyclic lupane-type triterpene, on the cell viability, cell cycle and apoptosis in human leukemia K562 cells were investigated. The effects of BA on the growth of K562 cells w... The effects of betulinic acid (BA), a pentacyclic lupane-type triterpene, on the cell viability, cell cycle and apoptosis in human leukemia K562 cells were investigated. The effects of BA on the growth of K562 cells were studied by MTT assay. Apoptosis was assayed through Annexin V/propidium iodide (PI) double-labeled cytometry. The effects of BA on the cell cycle of K562 cells were studied by a PI method. The expression of Bax and capase-3 was detected by using Western blot. The results showed that BA was cytotoxic to K562 cells with an IC50 of 21.26 μg/mL at 24 h. After treating K562 cells with 10 μg/mL BA for 72 h, the number of cells was reduced by 58%. BA induced apoptosis of K562 cells in a time-and dose-dependent manner. The proportion of cells in G0/G1 and G2/M phases was decreased and that in S phase was increased after K562 cells were treated with BA for 24 h. BA treatment also increased the expression of the pro-apoptotic proteins Bax and caspase-3. It suggested that BA could inhibit the proliferation of K562 cells through the induction of cell cycle arrest and apoptosis. The antitumor effects of BA were related with up-regulation of the expression of Bax and caspase-3 proteins. BA may qualify for the development of new therapies for leukemia. 展开更多
关键词 betulinic acid k562 cells APOPTOSIS BAX CASPASE-3
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The modulation of radiation-induced cell death by genistein in K562 cells:Activation of thymidine kinase 1 被引量:10
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作者 Min Ho JEONG Young Hee JIN +5 位作者 Eun Young KANG Wol Soon JO Hwan Tae PARK Jae Dong LEE Yeo Jin YOO Soo Jin JEONG 《Cell Research》 SCIE CAS CSCD 2004年第4期295-302,共8页
Ionizing radiation is one of the most effective tools in cancer therapy. In a previous study, we reported that protein tyrosine kinase (PTK) inhibitors modulate the radiation responses in the human chronic myelogenous... Ionizing radiation is one of the most effective tools in cancer therapy. In a previous study, we reported that protein tyrosine kinase (PTK) inhibitors modulate the radiation responses in the human chronic myelogenous leukemia (CML)cell line K562. The receptor tyrosine kinase inhibitor, genistein, delayed radiation-induced cell death, while non-recepter tyrosine kinase inhibitor, herbimycin A (HMA) enhances radiation-induced apoptosis. In this study, we focused on the modulation of radiation-induced cell death by genistein and performed PCR-select suppression subtractive hybridization(SSH) to understand its molecular mechanism. We identified human thymidine kinase 1 (TK1), which is cell cycle regulatory gene and confirmed expression of TK1 mRNA by Northern blot analysis. Expression of TK1 mRNA and TK 1enzymatic activity were parallel in their increase and decrease. TK1 is involved in G1-S phase transition of cell cycle progression. In cell cycle analysis, we showed that radiation induced G2 arrest in K562 cells but it was not able to sustain. However, the addition of genistein to irradiated cells sustained a prolonged G2 arrest up to 120 h. In addition,the expression of cell cycle-related proteins, cyclin A and cyclin B 1, provided the evidences of G1/S progression and G2-arrest, and their relationship with TK1 in cells treated with radiation and genistein. These results suggest that the activation of TK1 may be critical to modulate the radiation-induced cell death and cell cycle progression in irradiated K562 cells. 展开更多
关键词 染料木素 胸腺嘧啶核苷激酶1 活化 辐射 细胞凋亡 k562
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Effect on Proliferation and Erythroid Differentiation of K562 Cells by IER3IP1-Knockdown 被引量:2
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作者 Yan Lei Yan Zhang Ting-mei Chen Yong-qiang Wang 《Chinese Journal of Cancer Research》 SCIE CAS CSCD 2009年第3期163-170,共8页
Objective: To investigate the effect on erythroid differentiation and proliferation of K562 cells by IER3IP1-knockdown with RNA interference targeting at IER3IP1 gene. Methods: The shRNA eukaryotic expression vectors ... Objective: To investigate the effect on erythroid differentiation and proliferation of K562 cells by IER3IP1-knockdown with RNA interference targeting at IER3IP1 gene. Methods: The shRNA eukaryotic expression vectors targeting at IER3IP1 gene were designed and constructed. Inhibitory effect was detected by semiquantitative RT-PCR. The impacts on K562 cells by RNAi were studied by MTT assay, benzidine staining, light microscope and electron microscopy observation, cell cycles analysis, colony formation assay and RT-PCR. The expressions of erythroid differentiation correlated genes Gfi-1B, GPA and γ-globin were studied after being exposed to 0.2 μmol/L imatinib for two days. Results: The shRNA eukaryotic expression vectors were successfully constructed. The expression of IER3IP1 gene was significantly inhibited with an inhibition efficiency of 76% (P<0.01). Compared with the control groups, bcr/abl mRNA level was increased in K562/shRNA-IER3IP1 group (P<0.01). The proliferation ability was enhanced (P<0.01) and the proportion of cells at G0/G1 phase decreased but S phase increased (P<0.05) in K562/shRNA-IER3IP1 group. Under electron microscopy, the amount of euchromatin increased but heterochromatin decreased. There were structural abnomalities in endocytoplasmic reticulum and clusters of vesicular. The percentage of benzidine staining positive cells and mRNA expression levels of Gfi-1B, GPA and γ-globin were all decreased after being exposed to 0.2 μmol/L STI571 for two days in K562/shRNA-IER3IP1 group (P<0.01). Conclusion: IER3IP1-knockdown can hinder the erythroid differentiation and elevate the proliferation level of K562 cells. IER3IP1 may play a role in erythroid differentiation and proliferation of K562 cells. 展开更多
关键词 细胞分化 k562 红细胞 增殖
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Effect of Hydroxyapatitc Nanoparticles on K562 Cells in vitro 被引量:2
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作者 CHEN Pei DAI Honglian +2 位作者 HAN Yingchao YIN Meizhen LI Shipu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2008年第2期222-224,共3页
稳定、分散单人赛的 hydroxyapatite (幸运) nanoparticles 与超声帮助方法被综合。幸运 nanoparticles 被动态轻散布, XRD (X 光检查衍射) 和 TEM (传播电子显微镜学) 描绘。K562 人的骨髓内产生的白血病房间线上的幸运 nanoparticles... 稳定、分散单人赛的 hydroxyapatite (幸运) nanoparticles 与超声帮助方法被综合。幸运 nanoparticles 被动态轻散布, XRD (X 光检查衍射) 和 TEM (传播电子显微镜学) 描绘。K562 人的骨髓内产生的白血病房间线上的幸运 nanoparticles 的效果被 MTT 试金和房间计数测试调查,并且机制通过房间周期和超微结构的变化被学习。结果证明幸运 nanoparticles 在 vitro 戏剧性地禁止了 K562 房间的增长。幸运 nanoparticles 进入了 K562 房间的细胞质,这样,房间在 G2/M 阶段被逮捕房间直接死了。 展开更多
关键词 羟磷灰石 纳米颗粒 k562细胞 生物材料
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Lethal Effect of Benzene Nitrogen Mustard Glucoside Derivate on K562 Cells 被引量:2
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作者 LIU Tie-mei ZHU Guang-ze +2 位作者 ZHOU Jin-song SUN Zhi XIE Feng 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2008年第6期762-766,共5页
A new synthesized benzene nitrogen mustard was converted into glycosyl donor-trichloroacetimidate that was glycosylated with p-nitrophenol(glycosyl donors) to form β-lactosyl p-nitrobenzene under the protection of ac... A new synthesized benzene nitrogen mustard was converted into glycosyl donor-trichloroacetimidate that was glycosylated with p-nitrophenol(glycosyl donors) to form β-lactosyl p-nitrobenzene under the protection of acetyl in a stereoselective manner, was prepared and evaluated for its cytotoxicity towards cultured K562 cell line. Methylthiazoy tetrazolium(MTT) assay, transmission electron microscopy(TEM), flow cytometry(FCM) and immunohistochemistry were utilized to explore the mechanisms of how the compound arrests the growth of HCT-T cells. This new synthesed benzene nitrogen mustard glucoside derivate(BNMGD) presented a lower toxicity to normal cells, but is significantly more toxic to K562 cells compared with nitrogen mustard, meanwhile it can induce the apoptosis of K562 cells. These results indicate that the new synthesized BNMGD can inhibit the growth of K562 cells and induce the apoptosis, and its cytotoxicity towards cultured K562 cell line is much more effective than that of nitrogen mustard. 展开更多
关键词 k562细胞 氮芥 苯氮芥 葡糖苷
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Suppression of Amino Acid Transporter LAT3 Expression on Proliferation of K562 Cells 被引量:1
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作者 许思苗 唐焜 +1 位作者 孟力 汤屹 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2013年第5期632-635,共4页
The activity of the mTOR pathway is frequently increased in acute myeloid leukemia, and is tightly related with cellular proliferation. Leucine is tightly linked to the mTOR pathway and can activate it, thereby stimul... The activity of the mTOR pathway is frequently increased in acute myeloid leukemia, and is tightly related with cellular proliferation. Leucine is tightly linked to the mTOR pathway and can activate it, thereby stimulating cellular proliferation. LAT3 is a major transporter for leucine, and suppression of its expression can reduce cell proliferation. Here, we show that suppression of LAT3 expression can reduce proliferation of the acute leukemia cell line, K562. We investigated the mRNA and protein expression of LAT3 in several leukemia cell lines and normal peripheral blood mononuclear cells(PBMNCs) using RT-PCR and Western blotting. We also evaluated cell viability using a methyl thiazolyl tetrazolium(MTT) assay after blocking LAT3 expression with either shRNA targeted to LAT3 or a small molecular inhibitor BCH(2-aminobicyclo-(2,2,1)-heptane-2-carboxylic acid). LAT3 mRNA and protein expression was detected in leukemia cell lines, but not in normal PBMNCs. Using K562 cells, it was found that cellular proliferation and mTOR pathway activity were significantly reduced when LAT3was blocked with either shRNA or BCH. Our results suggest that leukemia cell proliferation can be significantly suppressed by blocking LAT3. This finding may lead to a new strategy to develop clinical therapy for the treatment of acute myeloid leukemia. 展开更多
关键词 k562细胞 细胞生长 氨基酸 转运 白血病细胞系 WESTERN印迹 外周血单核细胞 细胞增殖
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Arsenic Trioxide Inhibits Proliferation in K562 Cells by Changing Cell Cycle and Survivin Expression 被引量:4
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作者 伍晓菲 陈智超 +4 位作者 刘仲萍 周浩 游泳 黎纬明 邹萍 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2004年第4期342-344,353,共4页
To study the mechanisms involved in the inhibition of chronic myeloid leukemic cells (K562) proliferation induced by arsenic trioxide (As 2O 3) and to explore the potential role of Survivin, an inhibitor of apoptosis ... To study the mechanisms involved in the inhibition of chronic myeloid leukemic cells (K562) proliferation induced by arsenic trioxide (As 2O 3) and to explore the potential role of Survivin, an inhibitor of apoptosis protein, in the regulation of As 2O 3 induced cell apoptosis, K562 cells were cultured with As 2O 3 of different concentrations. Cells were collected for proliferation analysis by MTT assay. Cell cycle distribution and cell apoptosis were analyzed by flow cytometry. Expression of Survivin protein and mRNA were detected by flow cytometry and RT-PCR, respectively. Our results showed that As 2O 3 (2-10 μmol/L) inhibited K562 cells growth effectively, but it did not induce cells apoptosis significantly. The percentage of K562 cells at G 2/M phase increased in proportion to As 2O 3 concentrations, and the expression of Survivin mRNA and content of Survivin protein was up-regulated accordingly. It is concluded that As 2O 3 inhibited K562 cells growth by inducing cell cycle arrest mainly at G 2/M phase. Over-expression of Survivin gene and protein might be one of the possible mechanisms contributing to K562 cells’ resistance to As 2O 3-induced apoptosis. 展开更多
关键词 三氧化二砷 抑制作用 分芽增殖 k562细胞 细胞转化 基因表达 AS2O3 抑制剂 G2/M细胞周期停滞 SURVIVIN 前髓细胞白血病
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The Proteasomal Inhibitor MG132 Potentiates Apoptosis of Triptolide-Treated K562 Cells by Regulating the NF-κB Signal Pathway 被引量:1
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作者 Weihua Chen Wanming Da Chunji Gao 《Chinese Journal of Clinical Oncology》 CSCD 2008年第5期339-342,共4页
OBJECTIVE To explore the anticancer mechanism of triptolide in human leukemia K562 cells,and to further determine whether the proteasomal inhibitor,MG132,can potentiate apoptosis in triptolide-treated K562 cells.METHO... OBJECTIVE To explore the anticancer mechanism of triptolide in human leukemia K562 cells,and to further determine whether the proteasomal inhibitor,MG132,can potentiate apoptosis in triptolide-treated K562 cells.METHODS Apoptosis was assessed via annexin V/PI double-labeled cytometry.The expressions of the IκBα and NF-κB/p65 proteins in K562 cells was investigated using Western blo ing.RESULTS The inhibitory rates of K562 cells treated by triptolide gradually increased in a dose-and time-dependent manner,and treatment with triptolide plus MG132 potentiated the apoptotic rate.Triptolide inhibited the degradation of the IκBα protein and the nuclear localization of NF-κB/p65 proteins induced by TNF-α,and MG132 potentiated the effect of triptolide.Triptolide plus MG132 almost completely blocked the NF-κB activation induced by TNF-α.CONCLUSION The anti-proliferative activities of triptolide and MG132 were related to the NF-κB signal pathway. 展开更多
关键词 MG132 中国药草 抗癌机制 白血病
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EFFECT OF BcL-2 ANTISENSE DRUG WITH DIFFERENT STRUCTURE ON THE BIOLOGICAL FUNCTION OF K562 CELLS
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作者 雷小勇 张洹 何冬梅 《Chinese Journal of Cancer Research》 SCIE CAS CSCD 2004年第2期109-112,共4页
To study the differences and similarities of the antisense drugs with different structures on the biological functions of K562 cells. Methods: Cytotoxic effects were measured by use of a cell viability assay. Flow cyt... To study the differences and similarities of the antisense drugs with different structures on the biological functions of K562 cells. Methods: Cytotoxic effects were measured by use of a cell viability assay. Flow cytometric analysis and agarose gel electrophoresis of DNA fragmentation were also performed. The expression level of protein was assayed by immunofluorescence using fluoresce isothiocyanate label. Results: PNA targeting the coding region of the Bcl-2 messenger RNA could effectively inhibit K562 cell viability, down-regulate the synthesis of the Bcl-2 protein and increase cell apoptosis. By 72 h after the Bcl-2 antisense PNA treatment, K562 cells showed more reduction in the level of Bcl-2 protein compared with cells treated with the antisense ODN. After treatment with 10 mmol/L of Bcl-2 antisense PNA or antisense ODN for 72 h, apoptotic rates of K562 cells were 13.151.13 and 11.721.12, respectively. Furthermore, there was significant difference in the percentage of apoptotic cells between antisense PNA group and antisense ODN group. Conclusion: The results suggest that antisense PNA targeting the coding region of Bcl-2 mRNA has better antisense effects than the antisense oligonucleotides on inducing apoptosis of K562 cells. 展开更多
关键词 BCL-2 反义基因 不同结构 生物结构 k562细胞 细胞毒素
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The Difference of Sensitivity between BXPC-3 and K562 Cells by Treatments with Combination of Indole-3-acetic Acid and Horseradish Peroxidase
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作者 贲亚琍 刘德立 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2006年第4期95-98,共4页
The difference of sensitivity to indole-3-acetic acid (IAA) combined with horseradish peroxidase (HRP) in K562 and BXPC-3 cells was investigated.The cell proliferation was determined by MTT assay.The cell cycle and ap... The difference of sensitivity to indole-3-acetic acid (IAA) combined with horseradish peroxidase (HRP) in K562 and BXPC-3 cells was investigated.The cell proliferation was determined by MTT assay.The cell cycle and apoptosis of K562 and BXPC-3 cells were examined by a fluorescence flow cytometer (FCM) and terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling (TUNEL) respectively. The experimental results show that IAA and HRP could inhibit BXPC-3 cell proliferation greatly compared with K562 cell during the first 48 h. The cell cycle was arrested predominantly at G2/M phase in K562 and BXPC-3 cells. The cell apoptosis of K562 and BXPC-3 was induced by IAA/HRP. There was a significant difference between the two cell lines since BXPC-3 cells were more sensitive than K562 cells by treatments with combination of IAA and HRP. 展开更多
关键词 微分 敏感性 BXPC-3 k562 过氧化物酶 工程材料学
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Antiproliferation Effects of Curcumin on the STAT5 Signaling Parthway in K562 Cells
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作者 Yan Chen Hongli Liu Weihong Chen 《Chinese Journal of Clinical Oncology》 CSCD 2005年第4期685-692,共8页
关键词 姜黄色素 信号途径 k562细胞 肿瘤细胞 抗肿瘤作用 细胞增殖
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Effects of Root Extracts from <i>Panax ginseng</i>C. A. Meyer (Araliaceae) of Different Ages on K562 Cells
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作者 Xunan Lyu Yizhen Zhang +3 位作者 Qing Mu Zhou Cheng Jiakuan Chen Wenju Zhang 《American Journal of Plant Sciences》 2013年第6期1291-1296,共6页
It is well accepted in China that elder ginsengs have more bioactivity and value than younger ones. However, there is little research about the comparison of beneficial effects of ginsengs with different ages. In this... It is well accepted in China that elder ginsengs have more bioactivity and value than younger ones. However, there is little research about the comparison of beneficial effects of ginsengs with different ages. In this study, ginseng root extracts (GRE) were extracted from ginsengs of 5, 8, 12, 14, and 16 years old, respectively, using 55% ethanol and their effects on human leukemic K562 cells within 48 hours were tested by using Cell Counting Kit-8. The results show that there are significant increases in the cell viability of all the GRE groups compared with Control group within 32 hours. Furthermore, the growth curves of GRE groups were obviously distinct from each other. The cell viability of 5-year-old and 8-year-old GRE groups kept a rapid increase while that of 16-year-old GRE group showed a strong fluctuation within 28 hours. Our results demonstrate that root extracts from ginsengs of different ages contain different bioactivity constituents and have different effects on cell. 展开更多
关键词 PANAX GINSENG Root Extracts Ages k562 cell Line
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Study of Celastrol on Akt Signaling Pathway and Its Roles in the Apoptosis of K562 Cells
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作者 Xiaonan Wang Qing Wu +3 位作者 Xu Yang Liansheng Zhang Yiping Wu Yanwen Shu 《Journal of Cancer Therapy》 2011年第4期463-469,共7页
The purpose Celastrol, the main active compound of the Celastrus genus plants, belonging to Celastraceae, has recently marked antitumour potency on solid tumours of various derivations, Methods: We demonstrate here th... The purpose Celastrol, the main active compound of the Celastrus genus plants, belonging to Celastraceae, has recently marked antitumour potency on solid tumours of various derivations, Methods: We demonstrate here that Celastrol also present powerful antileukaemic potency through both growth arrest and apoptosis induction in K562 cells, which was accompanied by typical apoptotic morphological and sharp decreased expression of phosphorylation level of Caspase family members and Akt signaling pathway related proteins were determined by western blot before and after celastrol treatment, and further the effect of AKT signaling pathway on celastrol-induced-apoptosis was analyzed. However, in vitro treatment with Celastrol resulted in significantly reduced expression of phophorylation of Akt, Survivin and Bcl-2 significantly in K562 cells. Results: 25 nmol/L WORT (PI3K-Akt inhibitor) can significantly augmented cell apoptosis induced by Celastrol in K562 cells in dose-dependent manner, Moreover, most Caspase3,8,6 were activated in K562 cells during Celastrol treatment, 50 μmol/Lz-VAD-fmk (Caspase inhibitor) can to enhance the apoptosis induced by Celastrol. Discussion: These results suggest that the fact that Akt signaling pathway might act as new targets of Celastrol, correlates well with the sensitivity to Celastrol, as well as the rate of apoptosis induced by Celastrol, Mechanisms that regulate Akt signaling pathway may be provide novel opportunities for drug development. 展开更多
关键词 CELASTROL k562 cells Akt Signal TRANSDUCTION PATHWAY APOPTOSIS
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钩吻总碱诱导慢性粒细胞白血病K562细胞凋亡的机制分析
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作者 王文义 檀兴慧 +2 位作者 卢伊 李德森 吴水生 《药学研究》 CAS 2024年第2期105-110,134,共7页
目的 探讨钩吻总碱对慢性粒细胞白血病K562细胞的抑杀作用及其机制,为其抗白血病研究提供科学依据。方法 以不同浓度钩吻总碱(25、50、100、200、400μg·mL-1)干预K562细胞,MTT法测定其对K562细胞活力的影响;倒置相差显微镜观察其... 目的 探讨钩吻总碱对慢性粒细胞白血病K562细胞的抑杀作用及其机制,为其抗白血病研究提供科学依据。方法 以不同浓度钩吻总碱(25、50、100、200、400μg·mL-1)干预K562细胞,MTT法测定其对K562细胞活力的影响;倒置相差显微镜观察其对K562细胞形态的影响;DAPI染色法观察K562细胞核形态变化;Annexin V FITC/PI流式细胞术检测K562细胞凋亡情况;比色法测定caspase-3活性变化;RT-PCR检测Bax和Bcl-2基因的表达水平。结果 钩吻总碱对K562细胞抑制效果呈时间、剂量依赖性,24 h时IC50为122μg·mL^(-1);TAG干预K562细胞后细胞形态逐渐不规则、胞质不清、胞核皱缩,最终胞膜的完整性破坏;DAPI染色发现细胞体积变小,整体皱缩,胞核固缩、生成典型的凋亡小体;Annexin V FITC/PI流式细胞测定显示K562细胞凋亡以早凋为主,存在量效关系;不同浓度钩吻总碱作用于K562细胞24 h后caspase-3的活性提高;RT-PCR检测发现TAG干预后会下调Bcl-2基因表达、上调Bax基因表达,二者均表现出量效关系。结论 钩吻总碱可能通过上调Bax基因表达、下调Bcl-2基因表达,活化caspase-3,从而诱导慢性粒细胞白血病K562细胞发生早期凋亡,抑制其细胞活力。 展开更多
关键词 钩吻总碱 慢性粒细胞白血病 k562细胞 凋亡
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白花蛇舌草诱导活性氧类物质抑制慢性髓系白血病K562细胞增殖
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作者 唐丽 于慧静 王德文 《中南医学科学杂志》 CAS 2024年第2期193-197,共5页
目的探讨白花蛇舌草(HDW)诱导活性氧类物质对慢性髓系白血病(CML)K562细胞增殖的影响。方法流式细胞法检测HDW作用下K562细胞内活性氧(ROS)水平。将K562细胞分为对照组、HDW组、N-乙酰-L-半胱氨酸组(NAC组)和HDW+NAC组,观察各组细胞ROS... 目的探讨白花蛇舌草(HDW)诱导活性氧类物质对慢性髓系白血病(CML)K562细胞增殖的影响。方法流式细胞法检测HDW作用下K562细胞内活性氧(ROS)水平。将K562细胞分为对照组、HDW组、N-乙酰-L-半胱氨酸组(NAC组)和HDW+NAC组,观察各组细胞ROS、活力、形态、增殖和细胞周期分布情况,Western blotting法检测细胞周期相关蛋白和磷酸化磷脂酰肌醇3-激酶(p-PI3K)、磷酸化丝氨酸苏氨酸激酶(p-Akt)蛋白表达情况。结果HDW能提高K562细胞内ROS水平(P<0.05)。对照组、NAC组细胞含大量拒染细胞且形态无明显变化,HDW组、HDW+NAC组拒染细胞减少,着色细胞增多,有染色质聚集和细胞核膜崩解现象。与对照组相比,HDW组细胞内ROS、G1期占比、p21和p53蛋白表达升高,S期占比和细胞周期素D1、细胞周期素依赖蛋白激酶4、p-PI3K、p-Akt蛋白表达降低(P<0.05);NAC干预能部分逆转HDW作用效果(P<0.05)。结论HDW能诱导活性氧类物质升高来降低K562细胞增殖能力,与细胞周期阻滞、调节PI3K/Akt通路活性有关。 展开更多
关键词 慢性髓系白血病 k562细胞 白花蛇舌草 细胞增殖 活性氧
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牛蒡子苷元对白血病K562/A02细胞耐药性的逆转作用及机制
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作者 邹琳 方烨 何威 《中国实验血液学杂志》 CAS CSCD 北大核心 2024年第2期409-415,共7页
目的:研究牛蒡子苷元对白血病耐药细胞株K562/A02阿霉素耐药性的影响及其作用机制。方法:体外培养人白血病细胞株K562及阿霉素耐药细胞株K562/A02,使用2.5-50μmol/L阿霉素处理,CCK-8检测细胞生长情况并计算药物半数抑制浓度(IC_(50))... 目的:研究牛蒡子苷元对白血病耐药细胞株K562/A02阿霉素耐药性的影响及其作用机制。方法:体外培养人白血病细胞株K562及阿霉素耐药细胞株K562/A02,使用2.5-50μmol/L阿霉素处理,CCK-8检测细胞生长情况并计算药物半数抑制浓度(IC_(50))。采用不同浓度的牛蒡子苷元(1、2、4、8、16 mmol/L)处理K562/A02细胞,检测牛蒡子苷元对K562/A02细胞的影响,筛选适用浓度用于后续实验。在2 mmol/L牛蒡子苷元处理的K562/A02细胞中加入5μmol/L阿霉素,流式细胞术检测细胞凋亡,Western blot检测P-gp、MRP、cleaved caspase-3、Bax、Bcl-2以及TLR4/NF-κB信号通路蛋白的表达。在牛蒡子苷元和阿霉素共处理的K562/A02细胞中转染TLR4过表达质粒,检测细胞的药物敏感性和凋亡水平。结果:阿霉素对K562/A02细胞的IC_(50)为36.57μmol/L,高于K562细胞(1.30μmol/L)。当牛蒡子苷元浓度≤2 mmol/L时,K562/A02的细胞生长不会受到明显抑制。经2 mmol/L的牛蒡子苷元处理后,阿霉素对K562/A02细胞的IC_(50)明显降低。与对照组相比,牛蒡子苷元组K562/A02细胞凋亡率明显上升,cleaved caspase-3、Bax蛋白的表达明显上调,P-gp、MRP、Bcl-2、TLR4、My D88和p-NF-κB蛋白的表达明显下调,差异均具有统计学意义(P<0.05)。在转染TLR4过表达质粒后,牛蒡子苷元处理的K562/A02细胞对阿霉素的敏感性明显降低(P<0.05),细胞凋亡下降,并显著提升了P-gp、MRP、Bcl-2和TLR4/NF-κB信号通路蛋白的表达(P<0.05),同时降低了cleaved caspase-3和Bax蛋白的表达(P<0.05)。结论:牛蒡子苷元可能通过抑制TLR4/NF-κB信号通路从而逆转人白血病耐药细胞株K562/A02对阿霉素的耐药性。 展开更多
关键词 牛蒡子苷元 白血病 k562/A02细胞 耐药 TLR4/NF-κB信号通路
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Antitumor Activity of Dichloromethane Extract from Salvia plebeia and Induction of Apoptosis on K562 Cells 被引量:4
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作者 REN Jie1,PAN Sha-sha1,LU Xu-zhang2,ZHOU Min2,HU Kun1 1.Faculty of Pharmacy and Life Science,Changzhou University,Changzhou 213164,China 2.Changzhou NO.2 People’s Hospital,Changzhou 213000,China 《Chinese Herbal Medicines》 CAS 2011年第1期36-40,共5页
Objective To study the antitumor activity of extract from Salvia plebeia and investigate whether the extract induce apoptosis of K562 cells.Methods The aqueous,petroleum ether,dichloromethane(CH2Cl2),ethyl acetate,and... Objective To study the antitumor activity of extract from Salvia plebeia and investigate whether the extract induce apoptosis of K562 cells.Methods The aqueous,petroleum ether,dichloromethane(CH2Cl2),ethyl acetate,and butanol extracts were prepared from the aerial parts of S.plebeia.Taking fluorouracil as reference,the cytotoxic activities of these extracts on HeLa,A549,SGC-7901,HCT-116,K562,LoVo,DU-145,and HepG2 cells were evaluated.To clarify the apoptosis of K562 cells induced by CH2Cl2 extract,the methods of Hoechst 33258 staining,flow cytometry assay,and DNA ladder assay were investigated.Results The CH2Cl2 extract showed the most potent cytotoxic effect against K562 cells,with an IC50<15μg/mL for 3 d treatment.The characteristic apoptotic symptoms such as DNA fragmentation and chromatin condensation were also observed in the K562 cells.Conclusion The CH2Cl2 extract from S.plebeia may inhibit the cancer cell proliferation by inducing cell apoptosis. 展开更多
关键词 antitumor activity APOPTOSIS dichloromethane extract k562 cells Salvia plebeia
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Study of the mechanism on the apoptosis induced in Human leukemia cell line K562 by the combination of indole-3-acetic acid and horseradish peroxidase
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作者 宋土生 杨玲 +4 位作者 黄辰 刘利英 倪磊 王爱英 罗禹 《Journal of Pharmaceutical Analysis》 SCIE CAS 2007年第1期81-85,共5页
Objective To investigate the mechanisms of apoptosis induced in Human leukemia cell line K562 by the combination of indole-3-acetic acid and horseradish peroxidase.Methods Human leukemia cell line K562 were exposed to... Objective To investigate the mechanisms of apoptosis induced in Human leukemia cell line K562 by the combination of indole-3-acetic acid and horseradish peroxidase.Methods Human leukemia cell line K562 were exposed to indole-3-acetic acid(IAA) at 20,40,60,80 or 100mol/L and horseradish peroxidase(HRP) at 1.2g/mL for varying times.MTT assay was applied to detect the cell proliferation.Flow cytometry was performed to detect the arrest of cell cycle.Terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling(TUNEL) assay was used to measure apoptosis.2,7-dichlorofluorescin diacetate(DCFH-DA) uptake was measured to determine free radical by confocal microscope.Content of malondiadehyde(MDA) and activity of superoxide dismutase(SOD) were measured by biochemical methods.Results IAA/HRP initiated growth inhibition of K562 cells in a dose-and time-dependent manner.Flow cytometry revealed that cell cycle arrested at G1/G0 after 24 hours treatment.After 72 hours treatment,apoptotic rate of 100 mol/L IAA group increased to 43.9%,which was 5 times that of control(P<0.01).Content of MDA and activity of SOD increased respectively in treatments compared with control.Meanwhile,IAA/HRP stimulated the formation of free radical,which was increased by IAA concentration-dependently.Conclusion The combination of IAA and HRP can inhibit the growth of Human leukemia cell line K562 in vitro by inducing apoptosis which is associated with the increase of free radical.The combination of IAA and HRP might be a promising chemopreventive and chemotherapeutic agent against human leukemia. 展开更多
关键词 indoleacetic acid horseradish peroxidase k562 cells APOPTOSIS free radical
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