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1.
为研究免疫抑制剂环孢霉素A对NIT-1胰岛β细胞增殖和胰岛素分泌的影响,体外培养NIT-1胰岛β细胞,用不同浓度的环孢霉素A处理48h和72h,MIT法检测NIT-1胰岛β细胞的增殖情况,放射免疫测定法(RIA)检测胰岛素释放。实验结果显示环孢霉素A处理48h和72h可显著抑制细胞的增殖和胰岛素的释放,可见免疫抑制剂环孢霉素A对NIT-1胰岛β细胞有直接的细胞毒作用。  相似文献   

2.
卡铂(carboplatin,CBP)是一种抗肿瘤活性较强的化疗药物,通过诱导细胞周期阻滞抑制肿瘤细胞生长,但其诱导细胞周期阻滞的报告不甚一致.本研究探索卡铂对卵巢癌HO-8910细胞生长及细胞周期进程的影响.MTS结果显示,卡铂以浓度和时间依赖方式抑制卵巢癌HO-8910细胞生长,联合使用ERK1/2通路抑制剂PD98059可使卡铂抗卵巢癌细胞增殖作用增强.采用Giemsa染色法观察到,卡铂与PD98059单用或联用均能致卵巢癌细胞发生明显的形态学变化.流式细胞术检测细胞周期发现,随卡铂浓度的增高,S期阻滞作用增强;抑制ERK1/2通路可拮抗卡铂对HO-8910细胞S期阻滞作用,增加G1期阻滞作用,而对G2/M期细胞影响不明显.Western印迹结果显示,随卡铂浓度的增高,p-ERK1/2、Cdc2(Y15)和p-Cdc2(T161)的表达逐渐升高,Cyclin E1和Cyclin B1的表达逐渐降低;抑制ERK1/2通路可将卡铂上调,p-ERK1/2和p-Cdc2(T161)的作用反转为下调作用,上调Cdc2(Y15)的表达受阻,抑制Cyclin B1的下调作用,促进Cyclin E1的下调作用.本研究结果提示,卡铂通过抑制ERK1/2激活,诱导人卵巢癌HO-8910细胞S和G1期阻滞,抑制卵巢癌细胞生长.  相似文献   

3.
Xie M  Liu XS  Xu YJ  Zhang ZX  Bai J  Ni W  Chen SX 《生理学报》2007,59(1):94-102
本研究旨在探讨细胞外信号调节激酶1/2(extracellular signal-regulated kinase,ERK1/2)信号通路在慢性哮喘模型大鼠支气管平滑肌细胞(bronchial smooth muscle cells,BSMCs)迁移能力改变中的调控作用。应用卵清蛋白致敏和雾化方法制备大鼠慢性哮喘模型,体外培养大鼠BSMCs,采用免疫荧光细胞化学、Western blot和RT-PCR方法检测ERK1/2信号通路的表达,分别用平面迁移实验和跨膜迁移实验来评价BSMCs的活动和趋向迁移能力,并比较用和不用ERK1/2信号通路干预剂的差异。Western blot结果显示慢性哮喘模型大鼠BSMCs中总ERK1/2(9.13±0.87)较对照组(4.68±0.59)明显增加,磷酸化ERK1/2(p-ERK1/2)占总ERK1/2的比值(0.55±0.05)较对照组(0.48±0.04)显著提高(n=10,P<0.01)。慢性哮喘组ERK1和ERK2 mRNA的表达(1.83±0.24和1.07±0.11)较对照组(0.58±0.14和0.51±0.12)明显增高(n=10,P<0.01)。在平面迁移实验中,慢性哮喘大鼠BSMCs的迁移最远距离是对照组的(2.9±0.1)倍,在ERK1/2激动剂表皮生长因子(epidermal growth factor, EGF)刺激下增加到(5.0±0.2)倍,而在30μmol/L PD98059的作用后下降到(1.7±0.2)倍。正常对照大鼠BSMCs平面迁移能力对PD98059的反应较慢性哮喘组弱,仅在100μmol/L PD98059的作用下下降到(0.8±0.1)倍。跨膜迁移实验中,慢性哮喘大鼠BSMCs的跨膜迁移细胞是对照组的(1.9±0.1)倍,在EGF刺激下增加到(3.1±0.2)倍,而在30μmol/L PD98059作用后下降到(1.45±0.2)倍。这些结果表明慢性哮喘模型大鼠BSMCs的迁移能力明显增强,ERK1/2信号通路在该功能变化的调控中可能发挥了重要作用。  相似文献   

4.
卡铂(carboplatin, CBP)是一种抗肿瘤活性较强的化疗药物, 通过诱导细胞周期阻滞抑制肿瘤细胞生长, 但其诱导细胞周期阻滞的报告不甚一致. 本研究探索卡铂对卵巢癌HO-8910细胞生长及细胞周期进程的影响. MTS结果显示, 卡铂以浓度和时间依赖方式抑制卵巢癌HO-8910细胞生长, 联合使用ERK1/2通路抑制剂PD98059可使卡铂抗卵巢癌细胞增殖作用增强. 采用Giemsa染色法观察到, 卡铂与PD98059单用或联用均能致卵巢癌细胞发生明显的形态学变化. 流式细胞术检测细胞周期发现, 随卡铂浓度的增高, S期阻滞作用增强; 抑制ERK1/2通路可拮抗卡铂对HO-8910细胞S期阻滞作用, 增加G1期阻滞作用, 而对G2/M期细胞影响不明显. Western印迹结果显示, 随卡铂浓度的增高, p-ERK1/2、Cdc2(Y15)和p Cdc2(T161)的表达逐渐升高, Cyclin E1和Cyclin B1的表达逐渐降低; 抑制ERK1/2通路可将卡铂上调,p-ERK1/2和p-Cdc2(T161)的作用反转为下调作用, 上调Cdc2(Y15)的表达受阻, 抑制Cyclin B1的下调作用, 促进Cyclin E1的下调作用. 本研究结果提示, 卡铂通过抑制ERK1/2激活, 诱导人卵巢癌HO-8910细胞S和G1期阻滞, 抑制卵巢癌细胞生长.  相似文献   

5.
Huang YF  Gong KZ  Zhang ZG 《生理学报》2003,55(4):454-458
建立培养乳鼠心肌细胞的缺氧/复氧(A/R)损伤模型和缺氧预处理(APC)模型,以细胞存活率、细胞内超氧化物趋化酶(SOD)活性、丙二醛(MDA)含量、培养上清液乳酸脱氢酶(LDH)活性作为反映心肌细胞损伤的指标。采用细胞外信号调节蛋白激酶(ERK1/2)抑制剂PD98059及丝裂素活化蛋白激酶p38α/β(p38α/β)阻滞剂SB203580干预模型,并以胶内原位磷酸化法测定ERK1/2和p38活性,借以探讨ERK1/2和p38α/β在缺氧预处理保护机制中的作用。结果表明:(1)在APC组,于预处理的缺氧时相给予PD98059,可以完全消除APC的延迟保护作用;在A/R组的缺氧时相加入PD98059对细胞损伤无影响;(2)在APC组的预处理缺氧时相给予p38α/β抑制剂SB203580并不能消除APC的保护作用,而在A/R组的持续缺氧时相给予SB203580则可显著减轻缺氧对细胞的损伤;(3)ERK1/2和p38总活性测定表明,缺氧可激活ERK1/2和p38,它们的活性在缺氧后4h时达到高峰,而经过APC处理后,两者活性高峰提前于缺氧后3h时出现,且峰值显著降低。上述结果提示,预处理过程中ERK1/2的激活可能是缺氧预处理延迟保护机制中细胞信号传递的重要环节,预处理阶段p38α/β的活化不参与APC诱导的延迟保护信号传递过程,p38的过度激活可能是缺氧/复氧损伤过程中的一个致损伤参与因素,而预处理抑制随后持续缺氧阶段p38的过度激活可能是其保护机制的一个环节。  相似文献   

6.
许俊  严鹏科  刘少志 《现代生物医学进展》2012,12(33):6447-6450,6527
目的:探索降钙素基因相关肽(CGRP)对经血管紧张素Ⅱ (AngⅡ)损伤的人脐静脉内皮细胞(HUVECs)的保护作用且CGRP与细胞外信号调节激酶(ERK1/2)的关系.方法:不同浓度的CGRP、AngⅡ处理体外培养的HUVECs,噻唑蓝比色法检测HUVECs活力;流式细胞仪分析HUVECs凋亡率及其增殖指数;显微镜观察HUVECs的形态学变化;Western blot检测p-ERK1/2的表达.结果:AngⅡ (0.1-100 nmol/L)浓度依赖性降低HUVECs的活力,而CGRP (0.1-1000 nmol/L)浓度依赖性增加HUVECs的活力;HUVECs增殖指数PI值受AngⅡ、CGRP及PD98059(ERK1/2抑制剂)影响;AngⅡ孵育HUVECs在第10min时ERK1/2磷酸化水平可达到最大;CGRP能抑制AngⅡ诱导的HUVECs内ERK1/2磷酸化水平;CGRP8-37(CGRP受体拮抗剂)可部分减弱CGRP抑制ERK1/2磷酸化水平作用;PD98059(ERK1/2抑制剂)作用下,ERK1/2磷酸化水平显著降低,但是对细胞内总ERK1/2水平表达无明显影响.结论:CGRP可抑制AngⅡ对HUVECs的损伤作用,可能与CGRP抑制信号通路ERK1/2有关.  相似文献   

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业已证明,Caveolae及其蛋白caveolin-1参与了细胞膜的胆固醇转运和细胞膜的信号转导.我们前期工作发现降钙素基因相关肽(CGRP)抑制血管平滑肌细胞(VSMC)增殖的信号通路与抑制ERK1/2活性和上调caveolin-1表达有关.本文研究Caveolae及caveolin-1在CGRP抑制VSMC增殖中的作用,进一步研究caveolin-1表达增加是否有直接抑制ERK1/2信号激酶活性的作用.采用大鼠主动脉贴块法培养VSMC,取3~10代VSMC用于实验,10%小牛血清(FBS)用于刺激VSMC增殖,用β-环糊精(cyclodextrin)或菲律宾菌素(filipin)剥夺胆固醇破坏Caveolae结构;MTT法和流式细胞仪用于检测细胞增殖;蛋白质印迹和免疫共沉淀法分别用于检测目的蛋白的表达或蛋白质间相互作用.结果显示,CGRP呈时间和浓度依赖性显著抑制10% FBS诱导的VSMC增殖.细胞Caveolae结构的破坏能降低CGRP抑制VSMC增殖作用,同时也增加了ERK1/2的磷酸化;β-环糊精孵育细胞能降低 caveolin-1的表达.免疫共沉淀发现10% FBS和/或CGRP共同孵育细胞对非磷酸化ERK1/2与caveolin-1的结合无差别,但10% FBS 能降低磷酸化ERK1/2与caveolin-1的结合,CGRP预孵育细胞能增加这两者的相互作用.结果揭示,Caveolae及caveolin-1可以正调控CGRP抑制VSMC增殖作用,其机制可能与CGRP增加caveolin-1与p-ERK1/2在Caveolae的结合,并抑制p-ERK1/2核转位作用有关.  相似文献   

9.
近来发现新的蛋白激酶C δ亚型(PKCδ)的磷酸化激活与帕金森病(PD)中神经元的缺失有关.我们的前期研究发现, PKCδ 磷酸化参与6-羟基多巴胺引起的多巴胺能细胞的毒性作用,但其具体机制尚不清楚.本研究以TUNEL检测发现,6-羟基多巴胺引起较显著的细胞凋亡,PKC δ 抑制剂 Rottlerin 可减轻6-羟基多巴胺诱导的凋亡,总PKC抑制剂Bis、钙依赖性PKC(α和β)抑制剂Go6976对6-羟基多巴胺诱导的凋亡无影响.采用Western免疫印迹杂交实验发现,6-羟基多巴胺持续性激活 ERK 1/2 和PKC δ, Rottlerin既可抑制PKCδ的磷酸化激活,又可抑制ERK的磷酸化激活,而 MEK 抑制剂 U0126 仅能抑制 ERK 1/2 磷酸化激活,对 PKC δ 磷酸化却无显著影响.这说明 PKCδ 是6-羟基多巴胺持续性激活 ERK 1/2 的上游激酶.本研究结果提示,在凋亡过程中PKCδ仍然是ERK1/2激活的上游激酶,阻断PKCδ磷酸化可阻断ERK1/2持续激活.Rottlerin正是由于阻断PKCδ的激活,进一步阻断ERK1/2持续激活,减轻多巴胺能细胞的凋亡.因此, Rottlerin 可能对防治帕金森病患者神经元缺失有一定作用.  相似文献   

10.
血管平滑肌细胞(VSMCs)凋亡参与了动脉粥样硬化(AS)及冠状动脉介入治疗(PCI)术后再狭窄(RS)等心血管疾病的发生发展过程.E1A激活基因阻遏子(CREG)是新近发现的一种分泌型糖蛋白,在维持细胞和组织稳态方面发挥重要作用.前期研究发现CREG蛋白过表达能够对抗血清饥饿诱导的人血管平滑肌细胞(hVSMCs)凋亡,进一步探讨CREG对hVSMCs凋亡的调控作用及相关的分子机制.以逆转录病毒稳定转染的CREG过表达及表达抑制的hVSMCs为模型,应用两种药物Staurosporine (STS) 和Etoposide (VP-16) 诱导细胞发生凋亡,检测细胞凋亡和相关信号通路变化.结果显示,在药物干预后,CREG表达抑制时细胞凋亡明显增多,而CREG过表达明显抑制hVSMCs凋亡.同时也发现,CREG表达抑制时p38及JNK活性明显增强,而CREG过表达时p38和JNK活性被抑制.经腺病毒转染和药物干预抑制p38表达后,细胞凋亡均受到抑制,而且在p38活性被抑制的同时,JNK活化也受到抑制.说明p38和JNK表现为协同作用.结果也显示,VSMCs分化指标SM α-actin和SM MHC与CREG表达呈一致趋势,而细胞外基质蛋白Fibronection与CREG表达呈负相关.以上结果提示,CREG在维持VSMCs表型转换方面发挥重要作用,并且通过p38和JNK信号转导通路对hVSMCs凋亡进行调控.CREG可能对于AS和PCI术后RS的防治具有重要价值.  相似文献   

11.
Disturbances of blood flow upon vascular occlusions and spasms result in hypoxia and acidosis, while its subsequent restoration leads to reoxygenation and pH normalization (re-alkalization) in ischemic sites of the vascular bed. The effect of hypoxia/reoxygenation on activation and stimulation of apoptosis in cultured human endothelial cells was studied. The cells were subjected to hypoxia (2% O2, 5% CO2, 93% N2) for 24 h followed by reoxygenation (21% O2, 5% CO2, 74% N2) for 5 h. Reoxygenation was carried out at different pH-6.4 (preservation of acidosis after hypoxia), 7.0, and 7.4 (partial and complete re-alkalization, respectively). Hypoxia only slightly (by ~30%) increased the cell adhesion molecule ICAM-1 content on the cell surface, whereas reoxygenation more than doubled its expression. The reoxygenation effect depended on the medium acidity, and ICAM-1 increase was more pronounced at pH 7.0 compared to that at pH 6.4 and 7.4. Neither hypoxia nor reoxygenation induced expression of two other cell adhesion molecules, VCAM and E-selectin. Incubation of cells under hypoxic conditions but not reoxygenation stimulated secretion of von Willebrand factor and increased its concentration in the culture medium by more than 4 times. The percentage of cells containing apoptosis marker, activated caspase-3, was increased by approximately 1.5 times upon hypoxia as well as hypoxia/reoxygenation. Maximal values were achieved when reoxygenation was performed at pH 7.0. These data show that hypoxia/reoxygenation stimulate pro-inflammatory activation (ICAM-1 expression) and apoptosis (caspase-3 activation) of endothelial cells, and the extracellular pH influences both processes.  相似文献   

12.
目的观察缺氧/复氧对心肌细胞与中性粒细胞粘附效应的影响及细胞间粘附分子-1(intercellularadhensionmolecule-1,ICAM-1)和淋巴细胞功能相关抗原-1(lymphocytefunctionassociatedantigen-1,LFA-1)在中性粒细胞介导的心肌细胞损伤的作用。方法计数不同实验条件下与心肌细胞粘附的中性粒细胞;以及抗ICAM-1单抗和抗LFA-1单抗阻断后中性粒细胞粘附数的改变,检测心肌细胞乳酸脱氢酶释放量。结果中性粒细胞与缺氧/复氧心肌细胞粘附数较缺氧组和正常对照组显著增加(P<0.01);心肌细胞释放LDH明显增高(P<0.01),单纯缺氧组与正常对照组相比无显著差异(P>0.05)。加入抗ICAM-1单抗和抗LFA-1单抗后,缺氧/复氧组与心肌细胞粘附的中性粒细胞数较正常对照组显著降低(P<0.01),心肌细胞释放LDH也明显下降(P<0.01)。缺氧组与正常对照组相比则无显著差异(P>0.05)。结论缺氧/复氧使心肌细胞与中性粒细胞粘附效应增加,心肌细胞损伤加重,ICAM-1和LFA-1参与这一过程。抗ICAM-1和抗LFA-1单抗可减轻中性粒细胞对缺氧/复氧心肌细胞的损伤。  相似文献   

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The aim of this study was to determine the antiproliferative mechanism of ferulic acid (FA) on serum induced ECV304 cell, a human umbilical vein endothelial line. The results suggest that FA significantly suppressed ECV304 cells proliferation and blocked the cell cycle in G0/G1 phase. Treatment of the cells with FA increased nitric oxide (NO) production and inactivated the extracellular signal-regulated kinase (EERK1/2), and the NO donor, sodium nitroprusside, inhibited both ECV304 cells proliferation and phosphorylation of ERK1/2. However, the NO synthase inhibitor, Nomega-nitro-L-arginine methyl ester, caused ECV304 cells proliferation. PD 98059, the inhibitor of ERK1/2, had no effect on the NO production. These results indicate that NO suppressed ECV304 cells proliferation through down-regulating ERK1/2 pathway. Moreover, the inhibition of cell cycle progression was associated with the decrement of cyclin D1 expression and phosphorylation of retinoblastoma protein (pRb) by increment of p21 level. The findings not only present the first evidence that FA is a potent inhibitor on ECV304 cells proliferation, but also reveal the potential signaling molecules involved in its action.  相似文献   

15.
When loaded with high (pathological) levels of Ca2+, mitochondria become swollen and uncoupled as the result of a large non-specific increase in membrane permeability. This process, known as the mitochondrial permeability transition (MPT), is exacerbated by oxidative stress and adenine nucleotide depletion. These conditions match those that a heart experiences during reperfusion following a period of ischaemia. The MPT is caused by the opening of a non-specific pore that can be prevented by sub-micromolar concentrations of cyclosporin A (CsA). A variety of conditions that increase the sensitivity of pore opening to [Ca2+], such as thiol modification, oxidative stress, increased matrix volume and chaotropic agents, all enhance the binding of matrix cyclophilin (CyP) to the inner mitochondrial membrane in a CsA-sensitive manner. In contrast, ADP, membrane potential and low pH decrease the sensitivity of pore opening to [Ca2+] without affecting CyP binding. We present a model of pore opening involving CyP binding to a membrane target protein followed by Ca2+-dependent triggering of a conformational change to induce channel opening. Using the ischaemic/reperfused rat heart we have shown that the mitochondrial pore does not open during ischaemia, but does do so during reperfusion. Recovery of heart during reperfusion is improved in the presence of 0.2 µM CsA, suggesting that the MPT may be critical in the transition from reversible to irreversible reperfusion injury. (Mol Cell Biochem 174: 167–172, 1997)  相似文献   

16.
Chronic inflammation is a risk factor for the development of colon cancer, providing genotoxic insults, growth and pro-angiogenic factors that can promote tumorigenesis and tumor growth. Immunomodulatory agents can interfere with the inflammation that feeds cancer, but their impact on the transformed cell is poorly understood. The calcium/calcineurin signaling pathway, through activation of NFAT, is essential for effective immune responses, and its inhibitors cyclosporin A (CsA) and FK506 are used in the clinics to suppress immunity. Moreover, the kinases GSK3β and mTOR, modulated by PI-3K/Akt, can inhibit NFAT activity, suggesting a cross-talk between the calcium and growth factor signaling pathways. Both NFAT and mTOR activity have been associated with tumorigenesis. We therefore investigated the impact of calcineurin and PI-3K/mTOR inhibition in growth of human colon carcinoma cells. We show that despite the efficient inhibition of NFAT1 activity, FK506 promotes tumor growth, whereas CsA inhibits it due to a delay in cell cycle progression and induction of necroptosis. We found NFκB activation and mTORC1 activity not to be altered by CsA or FK506. Similarly, changes to mitochondrial homeostasis were equivalent upon treatment with these drugs. We further show that, in our model, NFAT1 activation is not modulated by PI3K/mTOR. We conclude that CsA slows cell cycle progression and induces necroptosis of human carcinoma cell lines in a TGFβ-, NFAT-, NFκB- and PI3K/mTOR-independent fashion. Nevertheless, our data suggest that CsA, in addition to its anti-inflammatory capacity, may target transformed colon and esophagus carcinoma cells without affecting non-transformed cells, promoting beneficial tumoristatic effects.  相似文献   

17.
Chronic inflammation is a risk factor for the development of colon cancer, providing genotoxic insults, growth and pro-angiogenic factors that can promote tumorigenesis and tumor growth. Immunomodulatory agents can interfere with the inflammation that feeds cancer, but their impact on the transformed cell is poorly understood. The calcium/calcineurin signaling pathway, through activation of NFAT, is essential for effective immune responses, and its inhibitors cyclosporin A (CsA) and FK506 are used in the clinics to suppress immunity. Moreover, the kinases GSK3β and mTOR, modulated by PI-3K/Akt, can inhibit NFAT activity, suggesting a cross-talk between the calcium and growth factor signaling pathways. Both NFAT and mTOR activity have been associated with tumorigenesis. We therefore investigated the impact of calcineurin and PI-3K/mTOR inhibition in growth of human colon carcinoma cells. We show that despite the efficient inhibition of NFAT1 activity, FK506 promotes tumor growth, whereas CsA inhibits it due to a delay in cell cycle progression and induction of necroptosis. We found NFκB activation and mTORC1 activity not to be altered by CsA or FK506. Similarly, changes to mitochondrial homeostasis were equivalent upon treatment with these drugs. We further show that, in our model, NFAT1 activation is not modulated by PI3K/mTOR. We conclude that CsA slows cell cycle progression and induces necroptosis of human carcinoma cell lines in a TGFβ-, NFAT-, NFκB- and PI3K/mTOR-independent fashion. Nevertheless, our data suggest that CsA, in addition to its anti-inflammatory capacity, may target transformed colon and esophagus carcinoma cells without affecting non-transformed cells, promoting beneficial tumoristatic effects.  相似文献   

18.
19.
Inhibition of the functions of L1 cell adhesion molecule (L1) by ethanol has been implicated in the pathogenesis of the neurodevelopmental aspects of the fetal alcohol syndrome (FAS). Ethanol at pharmacological concentrations has been shown to inhibit L1-mediated neurite outgrowth of rat post-natal day 6 cerebellar granule cells (CGN). Extracellular signal-related kinases (ERK) 1/2 activation occurs following L1 clustering. Reduction in phosphoERK1/2 by inhibition of mitogen-activated protein kinase kinase (MEK) reduces neurite outgrowth of cerebellar neurons. Here, we examine the effects of ethanol on L1 activation of ERK1/2, and whether this activation occurs via activation of fibroblast growth factor receptor 1 (FGFR1). Ethanol at 25 mm markedly inhibited ERK1/2 activation by both clustering L1 with cross-linked monoclonal antibodies, or by L1-Fc chimeric proteins. Clustering L1 with subsequent ERK1/2 activation did not result in tyrosine phosphorylation of the FGFR1. In addition, inhibition of FGFR1 tyrosine kinase blocked basic fibroblast growth factor (bFGF) activation of ERK1/2, but did not affect activation of ERK1/2 by clustered L1. We conclude that ethanol disrupts the signaling pathway between L1 clustering and ERK1/2 activation, and that this occurs independently of the FGFR1 pathway in cerebellar granule cells.  相似文献   

20.
Extremely low frequency electromagnetic field (ELF-EMF) is a kind of physical stimulus in public and occupational environment. Numerous studies have indicated that exposure of cells to ELF-EMF could promote cell proliferation. But the detailed mechanisms implicated in these proliferative processes remain unclear. In the present experiment, the possible roles of sphingosine-1-phosphate (S1P) in 50-Hz magnetic field (MF)-induced cell proliferation were investigated. Results showed that exposure of human amniotic (FL) cells to a 50-Hz MF with an intensity of 0.4 mT significantly enhanced ceramide metabolism, increased S1P production, activated extracellular signal regulated kinase 1/2 (ERK1/2), and promoted cell proliferation. All of these effects induced by MF exposure could be inhibited by SKI II, an inhibitor of sphingosine kinase (SphK). In addition, both the cell proliferative response and the ERK1/2 activation induced by MF exposure were blocked completely by U0126, a specific inhibitor of MEK (ERK kinases 1 and 2). Taken together, the findings in present study suggested that S1P mediated 50-Hz MF-induced cell proliferation via triggering ERK1/2 signal pathway.  相似文献   

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