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以斑马鱼为模型,研究了毒死蜱对斑马鱼胚胎形态学的影响,及其对胚胎的氧化应激和氧化损伤作用.将斑马鱼胚胎暴露在梯度浓度的毒死蜱溶液中96h后,发现毒死蜱会造成斑马鱼胚胎严重畸形甚至死亡,其96h半致死浓度为1.18mg/L.对氧化应激相关基因的表达及抗氧化酶活性和丙二醛(MDA)含量进行检测,结果表明,在毒死蜱胁迫下抗氧化酶(SOD、CAT)活性降低,并且其编码基因(Cu/Zn-sod、Mn-sod、cat)的表达受到抑制;但在低浓度毒死蜱胁迫下,抗氧化酶活性并没有受到显著影响,而抗氧化酶基因的表达对毒死蜱更加敏感.毒死蜱能引起gstp2的表达上调,但GST活性与gstp2的表达变化并不一致.处理组胚胎中nrf2表达上调,从而上调抗氧化蛋白和II相解毒酶基因的表达.毒死蜱胁迫下,基因ucp2、cox1表达下调,能够减少呼吸链ROS的产生.同时基因bcl2表达下调,表明凋亡的平衡受到破坏.毒死蜱处理组中MDA含量显著升高,说明毒死蜱能造成斑马鱼胚胎氧化损伤.  相似文献   

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采用半静态水体暴露方式研究了水中溴氰菊酯对稀有鮈鲫早期生命阶段的发育毒性与内分泌干扰效应.结果表明,影响稀有鮈鲫胚胎孵化的LOEC (最低可观察效应浓度)>3.0μg/L;影响稀有鮈鲫仔鱼发育畸形和死亡指标的LOEC和NOEC (无可观察效应浓度)分别为1.0和0.33μg/L.低至0.04μg/L的溴氰菊酯暴露便可显著下调稀有鮈鲫幼鱼体内雄激素受体基因(AR)表达量并上调甲状腺激素受体基因(TRβ)表达量;0.11μg/L的溴氰菊酯暴露可以下调稀有鮈鲫幼鱼体内雄激素受体基因(AR)、雌激素受体基因(ER1、ER2b)和芳香烃受体基因(AhR1a)的表达量,并上调甲状腺激素受体基因(TRβ)表达量;0.33μg/L的溴氰菊酯可以下调稀有鮈鲫幼鱼体内雄激素受体基因(AR)、雌激素受体基因(ER1、ER2b)、芳香烃受体基因(AhR1a、AhR1b、AhR2)的表达量,并诱导甲状腺激素受体基因(TRβ)表达量的上调.上述作用浓度水平已经处于多个天然水体中溴氰菊酯的检出浓度范围,因此,关于水体残留溴氰菊酯对鱼类的内分泌干扰效应必须予以重视.  相似文献   

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本研究以模式动物斑马鱼(Danio rerio)为受试生物,采用半静态水体暴露的方式研究了不同浓度壬基酚聚氧乙烯醚(NPEO)对斑马鱼雄性成鱼下丘脑-垂体-性腺轴(HPG轴)的影响.结果显示,考察浓度范围内的NPEO暴露可以显著上调斑马鱼脑中GnRH2、GnRHR1、GnRHR2、GnRHR4、FSHβ和LHβ基因,以及性腺中LHR基因的相对表达量.GnRHR和LHR基因表达量对较低浓度NPEO暴露较为敏感,其中GnRHR4和LHR基因表达量在低至0.001mg/L的NPEO暴露下即出现显著上调.0.1和10mg/L NPEO暴露可以显著抑制斑马鱼精巢中CYP17基因的表达量,而10mg/L NPEO暴露则可以显著诱导CYP19a基因的表达量.GnRH相关调控基因表达量的上调,表明NPEO暴露可以诱导下丘脑分泌GnRH,进而刺激垂体分泌GtH.NPEO暴露诱导CYP19a基因的表达,促进了内源雌激素的合成.同时,NPEO通过抑制CYP17表达,可能抑制睾酮(T)的合成,干扰斑马鱼精巢中原有的性激素平衡.斑马鱼精巢内雌激素水平升高负反馈给垂体,刺激垂体分泌促性腺激素.由此表明,考察浓度范围内(0.001~10mg/L)的NPEO的暴露可以影响雄性斑马鱼成鱼HPG轴的反馈调节.  相似文献   

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Emerging evidence showed that 2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD) could induce expression of certain reactivation-associated genes in astrocytes, however, the consequent cellular effects and molecular mechanisms are still unclear. During the process of astrocyte reactivation, migration is a critical cellular event. In the present study, we employed wound-healing assay and Transwell® motility assay to explore the effects of TCDD on cell migration in primary cultured rat cortical astrocytes. We found that upon TCDD treatments at relative low concentrations (10? 10 and/or 10? 9?mol/L), the ability of primary astrocytes to migrate horizontally and vertically was promoted. In line with this cellular effect, the mRNA expression of two pro-migratory genes, including cell division cycle 42 (CDC42) and matrix metalloproteinase 2 (MMP2) was induced by TCDD treatment. Dioxin exerts its toxic effects mainly through aryl hydrocarbon receptor (AhR) pathway. So the role of AhR pathway in the pro-migratory effects of TCDD was examined using an AhR antagonist, CH223191. We found that application of CH223191 significantly reversed the pro-migratory effects of TCDD. Interestingly, the basal ability of horizontal migration as well as basal levels of CDC42 and MMP2 expression were dramatically reduced suggesting a possible physiological role of AhR in maintaining the endogenous migration ability of the primary astrocytes. These findings support the notion that dioxin promotes astrocyte reactivation at molecular and cellular levels.  相似文献   

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嘧菌酯作为最畅销的甲氧丙烯酸酯类杀菌剂,是防治水稻病害的常用农药,其对水生生态环境的负面效应值得重视.为研究嘧菌酯对水生生物的危害,进行多阶段(成鱼、仔鱼、胚胎)斑马鱼毒性试验,分析了嘧菌酯对鱼类的急性毒性,同时,通过6 d胚胎发育试验,研究了嘧菌酯对鱼类早期发育阶段的影响.结果表明,斑马鱼3个生命阶段对嘧菌酯的敏感性(以96 h-LC50(致死中浓度)表示)顺序为:仔鱼(0.39 mg·L~(-1))胚胎(0.61 mg·L~(-1))成鱼(1.37 mg·L~(-1)).6 d胚胎发育试验结果发现,嘧菌酯可诱导斑马鱼胚胎出现一系列不良症状,包括孵化率下降、心率异常、生长抑制和心包水肿等.0.25 mg·L~(-1)的嘧菌酯可显著促进斑马鱼胚胎自主运动和心率,并能明显抑制孵化仔鱼的体长.0.6 mg·L~(-1)及更高浓度的嘧菌酯可明显抑制斑马鱼胚胎眼睛、体节、尾部和心脏的发育.研究显示,嘧菌酯对斑马鱼多个生命阶段均具有一定毒性,但对早期生命阶段毒性更强,因此,其对鱼类早期生命阶段的影响值得重视.  相似文献   

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Perfluorononanoic acid (PFNA) is a nine-carbon perfluoroalkyl acid widely used in industrial and domestic products. It is a persistent organic pollutant found in the environment as well as in the tissues of humans and wildlife. There is a concern that this chemical might be a developmental toxicant and teratogen in various ecosystems. In the present study, the toxic effects of PFNA were evaluated in zebrafish (Danio rerio) embryos. One hour post-fertilization embryos were treated with 0, 25, 50, 100, 200, 300, 350, and 400 μmol/L PFNA for 96 hr in 6-well plates. Developmental phenotypes and hatching rates were observed and recorded. Nineteen genes related to oxidative stress and lipid metabolism were examined using Quantitative RT-PCR and confirmed by whole mount in situ hybridization (WISH). Results showed that PFNA delayed the development of zebrafish embryos, reduced the hatching rate, and caused ventricular edema and malformation of the spine. In addition, the amount of reactive oxygen species in the embryo bodies increased significantly after exposure to PFNA compared with that of the control group. The Quantitative RT-PCR and WISH experiments demonstrated that mRNA expression of the lfabp and ucp2 genes increased significantly while that of sod1 and mt-nd1 decreased significantly after PFNA exposure. The mRNA expression levels of gpx1 and mt-atp6 decreased significantly in the high concentration group. However, the mRNA expression levels of both ppara and pparg did not show any significant variation after exposure. These findings suggest that PFNA affected the development of zebrafish embryos at relatively low concentrations.  相似文献   

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镉是一种具有强致畸性和致癌性的重金属. 为研究镉暴露对早期胚胎发育的毒性效应,以斑马鱼为模式动物,选取5个镉浓度来处理斑马鱼胚胎4~120 hpf (hours post fertilization, 受精后小时),计算镉的半致死(LC50)浓度,研究7.50 mg/L镉对斑马鱼胚胎8个基因表达的影响. 结果表明:镉暴露导致斑马鱼胚胎产生小头、小眼、躯干弯曲、心脏发育异常以及死亡等异常. 通过原位杂交和定量PCR方法分析镉对抗氧化基因(prdx1和gstp1.2)、转录翻译相关基因(atf3、jdp2b和eif4a1b)、应激反应相关基因(hsp70l和hsp90aa1.1)以及脂肪酸结合蛋白基因(fabp7a)表达的影响,发现镉暴露将改变上述基因在组织和器官的表达及表达水平,这些影响可能与镉导致斑马鱼胚胎嗅球、侧线、神经和心脏的发育异常有关. 研究显示,镉的LC50浓度为15.20 mg/L,7.50 mg/L的镉可影响斑马鱼胚胎的氧化应激、转录翻译和早期神经发育等过程,并通过影响基因表达从而干扰斑马鱼胚胎发育,进而可能造成个体嗅觉、视觉和运动等功能缺陷.   相似文献   

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