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1.
河蟹眼柄神经分泌细胞离子通道的膜片钳研究   总被引:6,自引:0,他引:6  
采用全细胞膜片钳技术对培养12-24小时不同形态河蟹眼柄视节端髓X器官(MTXO)神经分泌细胞离子通道进行了研究。结果表明,河蟹眼柄MTXO中分布的A、B、C三种类型神经分泌细胞均可记录到由向电流和外向电流组成的正常全细胞电流。内向电流由高电压激活钙离子通道电流(Lca)和对TTX敏感钠离子通道电流(INa)组成。ICa的激活电压为-30mV,在0- 20mV电压下达到峰值,在-40mV和-70mV保持电压下记录的ICa激活阈值、初始峰值及I-V曲线无明显差别。外向电流明显,幅值较大,包括对4-AP敏感的快速激活、快速失活钾离子通道电流(IA)和对TEA敏感的缓慢激活、缓慢失活钾离子通道电流(IK)。正常蟹种、二龄成蟹和早熟蟹种MTXO神经分泌细胞均表达电压门控钠、钾、钙离子通道,通道电流和电压特征无明显区别.  相似文献   

2.
利用全细胞膜片钳记录方法,在急性分离的大鼠海马CA1区锥体细胞上深入研究了谷氨酸对方波诱导的短暂性外向钾电流(IA)激活和失活特性的影响。结果发现:在谷氨酸灌流条件下,IA的激活时间常数没有明显改变(P>0 .05),谷氨酸升高了A-通道稳态失活电压;谷氨酸延长了A-电流失活时间,并具有电压依赖性。实验结果说明了谷氨酸从不同的方面调控着A-通道,对A-通道稳态失活电压依赖性的改变可能是其调控A-通道的主要途径。  相似文献   

3.
三氟氯氰菊酯对棉铃虫神经细胞钠及钙通道作用机理研究   总被引:13,自引:0,他引:13  
用膜片钳技术对比分析了棉铃虫三氟氯氰菊脂抗性品系(R)及其同源对照品系(S)幼虫了体培养中枢神经细胞Na^2 通道的门控特性及杀虫剂对R和S神经细胞Na^ 、Ca^ 通道门控过程的影响。结果表明,S神经细胞Na^ 通道电流(S-INa)在-50-40mV激活,-20mV左右达峰值,R神经细胞Na^2 通道电流(R-INa)在-40mV左右激活,-10-0mV达峰值,即R-INa激活电压与峰值电压均向正电位方向移动约10mV,提示二者Na^ 通道控特性不同,R神经细胞Na^ 通道功能发生了变异。三氟氯氰菊酯作用后,S-INgn R-ISs的I-V曲线均向负电位方向移动的10mV,S-INa在20min后基本消失,而R-INa被阻断需时约90min,延长近5倍,其幅值有减小再增大的现象。对Ca^2 通道分析表明,杀虫剂作用后,R及S神经细胞Ca^2 通道电流的I-V曲线均向负电位移动10-20mV,提示三氟氯氰菊酯对Ca^2 通道的门控过程也有影响。与R-INa幅值起伏变化相联系,可推知杀虫剂对神经细胞的毒性作用中,Na^2 、Ca^2 通道均受影响。  相似文献   

4.
Cl-通道与受体调控Ca2+内流关系近年受到重视。已有资料表明Cl-通道开放参与介导α1-肾上腺素受体触发Ca2+内流,但对血管平滑肌Cl-通道作用未有一致看法。有报道认为Cl-通道开放形成的内向Cl-电流介导经电压依赖性Ca2+通道(VD-CCs)...  相似文献   

5.
本文旨在研究氧自由基(oxygen free radical)供体——过氧化氢(H2O2)对老年豚鼠耳蜗外毛细胞大电导钙激活钾通道(large-conductance Ca2+-activated potassium channels,BKCa channels)电流的影响,探讨氧自由基对老年豚鼠耳蜗外毛细胞BKCa通道电流的作用机制。采用急性酶分离方法分离耳蜗外毛细胞,用全细胞膜片钳记录通道电流,鉴别并分析通道特性,观察不同浓度H2O2对BKCa通道电流的影响。结果显示,在膜片钳全细胞模式下,可记录到一串幅值较大、快速激活、几乎不失活的电流,激活电压大于-40~-30 mV,电流随膜电位的增加而增强,电流幅值不断增大,并表现出外向整流的特性,无"rundown"现象;IbTX(100 nmol/L)可完全阻断通道活动,证实该电流为BKCa通道电流。BKCa通道电流表现出明显的H2O2浓度依赖性激活,电流幅值和峰值电流密度随H2O2浓度(1、2、4μmol/L)增加而增大。以上结果提示,外毛细胞可能存在能够调节胞内钙平衡的氧自由基/BKCa途径。  相似文献   

6.
运用全细胞膜片钳技术研究慢性铅暴露和急性给二氧化硫衍生物对大鼠海马神经元钠电流的影响,结果发现,慢性铅暴露组钠电流在-70mV激活,-30mV达到峰值;对照组钠电流在-70mV激活,-40mV达到峰值.两组峰值不具有显著性差异.急性给二氧化硫衍生物于慢性铅暴露组,钠电流在-80mV开始激活,-40mV达到峰值,I-V曲线显著下移.慢性铅暴露使穿越钠通道离子的绝对数量稍微有些减少,但不具有统计学差异;二氧化硫可使慢性铅暴露的海马神经元的INa显著增大.慢性铅暴露推迟了INa达到峰值的时间,但不影响失活时间常数;急性加入二氧化硫衍生物不改变慢性铅暴露达到峰值的时间,却使失活时间常数显著延长.慢性铅暴露使INa的激活曲线右移,失活曲线左移;二氧化硫衍生物使慢性铅暴露的海马神经元上的INa的激活和失活曲线都往超极化方向移动.这些结果表明,铅和二氧化硫改变了细胞膜钠通道对于电压的感应,延长了钠通道的开放时程,这些可能是这两种大气污染物联合损伤海马神经元的作用机制之一.  相似文献   

7.
用水两相法纯化的高粱根质膜嵌入水平脂双层膜,可以测得离子通道电流。记录了典型的单离子通道。TritonX-100使质膜蛋白溶解,除去不溶物后,加入Amberlite XAD-2使膜蛋白重组为蛋白脂质体。将蛋白脂质体嵌入脂双层,测定了脂双层上K^+通道电流逐渐出现的过程,该典型的通道电流记录的通道电导为112pS。通过改变前后槽KCl浓度,测定蛋白脂质体嵌入脂双层后的稳态电流一电压关系。挖计算稳态逆  相似文献   

8.
目的: 研究白细胞介素-6对海马神经元电压依赖离子通道和NMDA电流的影响.方法: 应用全细胞膜片钳技术观察IL-6对电压依赖性钠通道电流(INa),延迟整流性钾通道电流(IK),电压依赖性钙通道电流(ICa),NMDA(N-methyl-D-aspartate)受体通道电流的影响.结果: 50 ng/ml IL-6作用24 h后IK 和ICa明显减小,Cm明显增大.50,500 ng/ml时减小NMDA电流.结论: IL-6通过作用于电压依赖钾通道,钙离子通道及NMDA通道影响神经元功能.  相似文献   

9.
目的 :研究白细胞介素 6对海马神经元电压依赖离子通道和NMDA电流的影响。方法 :应用全细胞膜片钳技术观察IL 6对电压依赖性钠通道电流 (INa) ,延迟整流性钾通道电流 (IK) ,电压依赖性钙通道电流 (ICa) ,NMDA(N methyl D aspartate)受体通道电流的影响。结果 :5 0ng/mlIL 6作用 2 4h后IK和ICa明显减小 ,Cm明显增大。 5 0 ,5 0 0ng/ml时减小NMDA电流。结论 :IL 6通过作用于电压依赖钾通道 ,钙离子通道及NMDA通道影响神经元功能。  相似文献   

10.
血管紧张素Ⅱ对模拟缺血心室肌细胞L-型钙通道的影响   总被引:3,自引:0,他引:3  
Wang WW  Zhu YC  Yao T  Zheng P  Gong QL 《生理学报》2002,54(5):375-378
实验研究了血管紧张素II(AngⅡ)对模拟缺血心室肌细胞L-型钙离子通道的作用,用胶原酶酶解法急性分离豚鼠心室肌细胞,以全细胞膜片钳方法记录心室肌细胞的L-型钙电流(ICa L.)。采用低氧,无糖,高乳酸和酸中毒综合方式模拟缺血液灌流,造成心室肌细胞的模拟缺血,并在缺血的基础上继续用含100mmol/A AngⅡ灌流细胞,观察AngⅡ对模拟缺血心室肌细胞钙离子通道的影响,实验结果显示,模拟缺血时ICa.L峰值电流明显减小,最大激活电压为0mV,AngⅡ能抵抗模拟缺血对ICa,L的抑制效应,使ICa,L峰值电流增大,并使最大激活电压左移至-10mV。  相似文献   

11.
细菌胞壁多糖对水体中低浓度Pb2+和Cd2+的吸附研究   总被引:4,自引:0,他引:4  
室内模拟研究了长春市伊通河天然水环境中优势细菌胞壁多糖对Pb2+和Cd2+吸附,结果发现胞壁多糖对pb2+和Cd2+的吸附量分别在pH为4.5、5.0时最大;且均分为两个阶段,即当pH<4.5,对Pb2+的吸附量与pH呈正相关,当pH>4.5时,对Pb2+的吸附量与pH呈负相关;对Cd2+的吸附量在pH<5.0时与pH呈正相关,在pH>5.0时与pH呈负相关.温度对胞壁多糖吸附Pb2+和Cd2+影响不显著;吸附体系在8 h达到吸附平衡.共存Cd2+对胞壁多糖吸附Pb2+影响显著,而共存Pb2+对吸附Cd2+不显著.胞壁多糖对Pb2+和Cd2+吸附过程符合Iangmuir和Freundlich热力学等温方程;胞壁多糖吸附Pb2+和Cd2+的动力学过程分为快速阶段和慢速阶段,其中慢速阶段符合二级吸附速率动力学方程.  相似文献   

12.
Acid-sensing ion channels (ASICs) are emerging as fundamental players in the regulation of neural plasticity and in pathological conditions. Here we showed that lead (Pb2+), a well known neurotoxic metal ion, reversibly and concentration-dependently inhibited ASIC currents in the acutely dissociated spinal dorsal horn and hippocampal CA1 neurons of rats. In vitro expression of ASIC subunits in combination demonstrated that both ASIC1 and -3 subunits were sensitive to Pb2+. Mechanistically, Pb2+ reduced the pH sensitivity of ASICs independent of membrane voltage change. Moreover, Pb2+ inhibited the ASIC-mediated membrane depolarization and the elevation of intracellular Ca2+ concentration. In addition, we compared the effect of Pb2+ with that of Ca2+ or amiloride to explore the possible interactions of Pb2+ and Ca2+ in regulating ASICs, and we found that Pb2+ inhibited ASIC currents independent of the amiloride/Ca2+ blockade. Because ASIC1b and -3 subunits are mainly expressed in peripheral neurons, our data identified ASIC1a-containing Ca2+-permeable ASIC as a novel central target of Pb2+ action, which may contribute to Pb2+ neurotoxicity.  相似文献   

13.
Modulation of the voltage-dependent transient outward potassium current (IA) by Pb2+ was studied in acutely dissociated rat hippocampal pyramidal cells from the CA1 region at postnatal ages 7-14 days using the conventional whole-cell patch-clamp technique. In the presence of different concentrations of external Pb2+, the initial delay and activation time of IA were concentration-dependently lengthened. In particular, the initial delay was even longer in 1 mM Pb2+, showing no signs of saturation. Pb2+ also slowed the inactivation of IA, for decay time constants in the presence of Pb2+ were increased under the same experimental protocols. The activation curves, which were reasonably fitted by a single Boltzmann function, illustrated that Pb2+ increased the voltage threshold of IA and shifted the normalized activation current-voltage curves to more depolarizing voltage commands. Moreover, Pb2+ significantly affected the steady-state inactivation of IA. The application of Pb 2+ made the curves of the steady-state inactivation of IA shift to more depolarizing voltages with little change in the slopes factors. In brief, the results demonstrated that Pb2+ is a dose- and voltage-dependent, reversible blocker of IA currents of hippocampal CA1 neurons. The observations were fitted by the revised "Kuo and Chen type model", which postulates a Pb2+-selective site near the pore of the IA channel and that modulation of the IA channel by Pb2+ is the result of the competitive influences of Pb2+ on opening and inactivating different pathways.  相似文献   

14.
Two-days-old in vitro grown protonemata of Funaria hygrometrica Hedw. were treated with a mixture PbCl2 (4 M Pb2+) and CaCl2 (16 M Ca2+) (Ca+Pb) for 48 h. The results were compared with the control: distilled water (H2O) and the solution of PbCl2 (4 M Pb2+) (Pb). Protonemata treated with Ca+Pb were longer and contained more cells than those treated with Pb. Moreover, a lower number of cells showed apical cell deformations typical for lead toxicity: swollen tips and wall thickenings at the apex. If deformations were present they were not as extended as in Pb. In comparison with the control, however, protonemata treated with Ca+Pb were shorter, contained a lower number of cells and some apical cells in this material were altered. It can be concluded that the presence of calcium partially neutralised toxic effects of lead in Funaria hygrometrica protonemata cells.  相似文献   

15.
Following the biophysical analysis of plant K+ channels in their natural environment, three members from the green branch of the evolutionary tree of life KAT1, AKT1 and KST1 have recently been identified on the molecular level. Among them, we focused on the expression and characterization of the Arabidopsis thaliana K+ channel KAT1 in the insect cell line Sf9. The infection of Sf9 cells with KAT1-recombinant baculovirus resulted in functional expression of KAT1 channels, which was monitored by inward-rectifying, K+-selective (impermeable to Na+ and even NH4+) ionic conductance in whole-cell patch-clamp recordings. A voltage threshold as low as −60 to −80 mV for voltage activation compared to other plant inward rectifiers in vivo, and to in vitro expression of KAT1 in Xenopus oocytes or yeast, may be indicative for channel modulation by the expression system. A rise in cytoplasmic Ca2+ concentration (up to 1 mM), a regulator of the inward rectifier in Vicia faba guard cells, did not modify the voltage dependence of KAT1 in Sf9 cells. The access to channel function on one side and channel protein on the other make Sf9 cells a suitable heterologous system for studies on the biophysical properties, post-translational modification and assembly of a green inward rectifier.  相似文献   

16.
枯否细胞在实验性肝癌细胞凋亡中的作用研究   总被引:1,自引:0,他引:1  
探讨Kupffer细胞在大鼠实验性肝癌细胞凋亡中的作用。应用免疫组化方法和TUNEL法对单用二乙基亚硝胺(DENA)诱发的肝癌及用氯化钆(GC)或酶母多糖(ZM)分别阻塞或激活Kupffer细胞后,给以DENA所引起的大鼠肝癌中的增殖细胞核抗原(PCNA)、bax、bcl-2蛋白表达和肝癌细胞的凋亡进行了对比研究,结果显示:肝癌组织的增殖指数在ZM+DENA组、DENA组、GC+DENA组依次增高,而凋亡指数在上述各组依次降低。Bax阳性率在ZM+DENA组明显高于DENA组(P<0.05),而ZM+DENA组bcl-2阳性率明显低于DENA组(P<0.05)。结果提示:Kupffer细胞可促进实验性肝部细胞凋亡。  相似文献   

17.
目的:探讨高压电场对A549细胞中ABCG2和V-ATPase表达量的影响;探讨高压电场对A549细胞耐药性的影响。方法:MTT法测细胞生长曲线,明确能导致细胞可逆性电穿孔的最高电场强度。慢病毒构建ABCG2和V-ATPase低表达的A549细胞系,并用电场处理,用q-RT-PCR和Western-blot法检测处理前后ABCG2和V-ATPase的m RNA和蛋白表达量的变化。最适强度的高压电场处理各组细胞,在处理前后的细胞中分别加入阿霉素,用高效液相色谱法检测各组细胞中阿霉素浓度。结果:当电场强度为1500 V/cm时,肿瘤细胞增殖最慢;电场强度为1500 V/cm时,肿瘤细胞中ABCG2和V-ATPase的m RNA和蛋白的表达量分别降至对照组的58%和61%,具有统计学差异;1500 V/cm强度的电场可以提高肿瘤细胞内阿霉素的浓度3-4倍。结论:高压电场可以显著降低肿瘤细胞中V-ATPase和ABCG2的m RNA和蛋白的表达量并降低肿瘤细胞的耐药性。  相似文献   

18.
为探讨铅锌胁迫下轮叶黑藻(Hydrilla verticillate)的吸附水平及生理响应,分别设置不同Pb2+(浓度梯度为0、0.01、0.05、0.10和0.20 mg/L)、Zn2+(浓度梯度为0、0.05、1.00、2.00和4.00 mg/L)浓度单一和复合胁迫轮叶黑藻28d,测定其对铅锌的吸附量,叶绿素a、叶绿素b、丙二醛(MDA)和总抗氧化能力(T-AOC)含量,以及超氧化物歧化酶(SOD)和过氧化物酶(POD)的活性变化。结果显示:高浓度(≥1.00 mg/L)的Zn2+可促进轮叶黑藻对Pb2+的吸收,对Zn2+的吸附主要受Zn2+处理浓度的影响;低浓度Pb2+和Zn2+可以促进叶绿素的合成,高浓度(浓度≥1.00 mg/L)胁迫则抑制叶绿素的合成;受到胁迫时其抗氧化系统会迅速作出反应,但一定浓度的Pb2+与Zn2+在单一和复合胁迫下,抗氧化系统受限,说...  相似文献   

19.
Potassium ions (K+) are required for plant growth and development, including cell division and cell elongation/expansion, which are mediated by the K+ transport system. In this study, we investigated the role of K+ in cell division using tobacco BY-2 protoplast cultures. Gene expression analysis revealed induction of the Shaker -like outward K+ channel gene, NTORK1 , under cell-division conditions, whereas the inward K+ channel genes NKT1 and NtKC1 were induced under both cell-elongation and cell-division conditions. Repression of NTORK1 gene expression by expression of its antisense construct repressed cell division but accelerated cell elongation even under conditions promoting cell division. A decrease in the K+ content of cells and cellular osmotic pressure in dividing cells suggested that an increase in cell osmotic pressure by K+ uptake is not required for cell division. In contrast, K+ depletion, which reduced cell-division activity, decreased cytoplasmic pH as monitored using a fluorescent pH indicator, SNARF-1. Application of K+ or the cytoplasmic alkalizing reagent (NH4)2SO4 increased cytoplasmic pH and suppressed the reduction in cell-division activity. These results suggest that the K+ taken up into cells is used to regulate cytoplasmic pH during cell division.  相似文献   

20.
Fura-2 was used to monitor Pb2+ entry into isolated bovine chromaffin cells exposed to micromolar concentrations of Pb2+ in media containing basal or high concentrations of K+. The entry of Pb2+ consists of voltage-independent and voltage-dependent (K(+)-stimulated) components. The voltage-dependent Pb2+ entry is enhanced by Ca2+ channel agonist BAY K 8644 and blocked by the channel antagonist nifedipine, suggesting the involvement of the L-type Ca2+ channels. In contrast to the transient, K(+)-depolarization-dependent increase in [Ca2+]i, the increase in [Pb2+]i is sustained over a period of several minutes, suggesting the absence of channel inactivation and/or the saturation of Pb(2+)-buffering capacity of the cell cytosol.  相似文献   

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