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1.
目的:研究吗啡对大鼠皮层神经元瞬时外向钾电流(IA)的影响,并在此基础上,用G蛋白信号转导激活因子3(AGS3)的抗体阻断AGS3作用,观察其对瞬时外向钾电流(IA)的影响,从而探讨AGS3蛋白在吗啡成瘾中的机制。方法:采用全细胞膜片钳技术记录IA;吗啡对神经元IA电流密度-电压曲线(I-V曲线)的影响;在全细胞构型下,观察三种不同浓度AGS3抗体对吗啡处理大鼠前额叶皮层神经元IA的影响。结果:吗啡能引起大鼠皮质神经元IA增强;当膜电位+55mV时,10-3μg/L、10-2μg/L、10-1μg/L三种不同浓度的AGS3抗体作用于吗啡处理的神经元,10-3μg/L对电流密度的抑制没有显著差异;10-2μg/L、10-1μg/L的抗体能显著抑制吗啡引起的电流密度升高,有统计学差异。结论:吗啡能引起神经元I的增强,AGS3蛋白在成瘾机体中参与了对I通道进行调节的信号转导通路。  相似文献   

2.
运用全细胞膜片钳技术研究二氧化硫衍生物对大鼠背根神经元瞬间外向钾电流(IA和ID)和延迟整流钾电流(IK)的影响。结果发现二氧化硫衍生物剂量依赖性地增大钾通道的电导,电压依赖性地增大钾电流的幅度,且这种增大作用部分可逆。二氧化硫非常显著地使延迟整流钾电流的激活过程向超极化方向移动,使瞬间外向钾电流的失活过程向去极化方向移动。10μmol/L二氧化硫衍生物作用前后,延迟整流钾电流的半数激活电压分别是(20.3±2.1)mV和(15.0±1.5)mV;IA和ID的半数失活电压分别朝去极化方向移动了6mV和7.4mV。这些结果表明二氧化硫改变了钾通道的特性,改变了神经元的兴奋性。  相似文献   

3.
目的和方法:采用全细胞式膜片钳技术,观察花生四烯酸(AA)对大鼠顶叶皮层神经元延迟整流钾电流(Ik)的影响。结果:①AA(10μmol/L)对大鼠顶叶皮层神经元Ik有抑制作用,抑制率为33.9%±8.74%(P<0.01)。②AA可使IK激活曲线的斜率因子变大且曲线向右移动,IK激活曲线的V1/2和k分别由给药前的(-55.3±0.9)mV和(10.3±0.4)mV,变为给药后的(-50.8±2.4)mV和(21.0±3.5)mV。③AA可使IK失活曲线斜率因子变大且曲线向左移动,IK失活曲线的V1/2和k分别由给药前的(-45.3±0.3)mV和(15.6±0.8)mV,变为给药后的(-70.9±1.9)mV和(36.5±2.1)mV。结论:花生四烯酸可抑制大鼠顶叶皮层神经元的延迟整流钾电流,并影响其动力学特征。  相似文献   

4.
ACh对大鼠皮层体感区神经元延迟整流钾电流的抑制作用   总被引:6,自引:1,他引:5  
Cui LW  Li YR  Yang L  Jia SW  Qu LH  Yao K  Jin HB 《生理学报》2006,58(1):58-64
利用全细胞膜片钳技术研究乙酰胆碱(acetylcholine,ACh)对大鼠皮层体感区神经元延迟整流钾电流(IK)的调制作用。结果表明:(1)ACh(0.1、1、10、100 μmol/L)对大鼠皮层体感区神经元IK有抑制作用,并具有剂量依赖性关系(P<0.01)。 (2)ACh可使IK激活曲线的斜率变大,并使激活曲线向超极化方向移动。IK激活曲线的半数激活电压(V1/12)和斜率因子(k)分别由给药前的(-41.8±9.7)mV和(30.7±7.2)mV变为给药后的(-122.4±38.6)mV和(42.4±7.0)mV。(3)100 μmol/L的N受体拮抗剂筒箭毒碱(tubocurarine)可减弱ACh对IK的抑制作用,在指令电压+60 mV时tubocurarine+ACh组的IK幅度下降了(16.9± 13.8)%(n=8),与10 μmol/L ACh组引起的(36.5±7.8)%的IK下降幅度相比,有极显著差异(P<0.01)。10 μmol/L的M1受体拮抗剂哌仑西平(pirenzepin)拮抗ACh对IK的抑制作用不明显(n=7,P>0.05);而10 μmol/L的M3受体拮抗剂4-DAMP可部分拮抗ACh对IK的抑制作用,并且4-DAMP+ACh组使IK的电流值下降了(26.8±4.7)%(n=6),与ACh组引起的IK电流下降相比,有显著差异(P<0.05)。(4)蛋白激酶C(protein kinase C,PKC)阻断剂chelerythrine拮抗ACh对IK的抑制作用,PKC激动剂PDBu可增强ACh对IK的抑制作用(P<0.05)。综上所述,ACh对人鼠皮层体感区神经元IK的抑制作用主要是通过烟碱受体(nAChRs)和M3受体介导,并经过PKC信号途径。  相似文献   

5.
为研究二氧化硫(SO2)衍生物——NaHSO3和Na2SO3(二者分子比为1:3)对大鼠海马CA3区神经元瞬间外向钾电流(IA)的影响,利用全细胞膜片钳技术,根据动力学和药理学特性分离鉴定大鼠海马CA3区神经元IA,观察SO2衍生物对IA的效应。发现SO2代谢衍生物可浓度依赖性地增大IA,使IA增大50%的剂量为25μmol/L。此外还与电压呈依赖关系,但不具有频率依赖性。10μmol/L的SO2代谢衍生物不影响IA电流的激活过程,但升高了A-通道稳态失活电压,延长了A-电流失活时间。说明SO2代谢衍生物可增大大鼠海马CA3区神经元IA电流,延长A-电流的失活时间,从而影响海马神经元的膜生理感应,这可能是SO2影响神经细胞功能的机理之一。  相似文献   

6.
7.
为研究蝎毒素BmkTXKβ对家兔心房肌细胞瞬间外向钾电流(Ito)的影响,采用全细胞膜片钳技术记录应用BmkTXKβ前后的Ito电流. 结果显示BmkTXKβ(1 μmol/L)使心房肌细胞Ito(刺激电压为+50 mV)从(13.63±0.87)pA/pF减少到(7.98±0.78)pA/pF,抑制率为41.4% (n=16, P<0.001).冲洗后, Ito部分恢复至(11.18±0.82)pA/pF (n=6, P<0.01,与给药后比较).在0.01~100 μmol/L范围内BmkTXKβ呈浓度依赖性地抑制Ito,IC50的均值为0.95 μmol/L (n=10, P<0.01),但无频率依赖性(n=6,P>0.05). 1 μmol/L的BmkTXKβ可使Ito通道的失活动力学曲线明显左移,V1/2分别为(-23.6±2.7) mV和(-35.3±3.6) mV(n=8,P<0.05),曲线斜率基本不变.同时可使Ito通道的恢复过程明显减慢,恢复曲线右移,τ值从(51.2±8.5) ms延长至(93.5±13.4) ms(n=9,P<0.01),但不影响其激活过程.据此推断BmkTXKβ对家兔心房肌细胞Ito具有显著的抑制作用,主要作用于失活过程,延长该通道的恢复时间.  相似文献   

8.
焦亚硫酸钠对大鼠海马CA1区神经元钾电流的影响   总被引:2,自引:0,他引:2  
目的:探讨焦亚硫酸钠(SMB)、二氧化硫(SO2)及其体内衍生物(亚硫酸盐和亚硫酸氢盐)对中枢神经元钾通道的影响及超氧化物歧化酶(SOD)、过氧化氢酶(CAT)及谷胱甘肽过氧化物酶(GPx)相应的保护作用.方法:采用全细胞膜片钳技术研究了SMB对大鼠海马CA1区神经元瞬间外向钾电流(IA)和延迟整流钾电流(IK)的影响.结果:①焦亚硫酸钠可增大全细胞IA和IK,且具剂量依赖性和电压依赖性,使IA和IK增大50%的剂量分别为15.8 μmol/L和11.5μmol/L;②10 μmol/L的SMB均可显著影响IA和IK的激活过程,给药前后IA的半数激活电压分别为(-12.6±1.6)mV和(-7.0±1.3)mV(n=8,P<0.01),IK的半数激活电压分别为(10.8±0.9)mV和(21.6±0.7)mV(n=8,P<0.01),但不改变其斜率因子;③10μmol/L的SMB还非常显著地影响IA的失活过程,给药前后其半数失活电压分别为(-97.0±1.1)mV和(-84.4±3.3)mV(n=8,P<0.01),但也不改变其斜率因子;④抗氧化酶SOD(1×106U/L)、CAT(2×106U/L)及GPx(105U/L)均可使SMB(10μmol/L)增大的IA和IK部分恢复.结论:SMB可显著增大IA和IK,抑制IA和IK的激活过程及IA的失活过程,从而导致胞内K 的外流增加,使胞内K 浓度降低,从而对中枢神经元功能产生不利影响.  相似文献   

9.
桑楠  孟紫强 《动物学报》2003,49(1):73-79
本文利用全细胞膜片钳技术研究了SO2 代谢衍生物———NaHSO3 和Na2 SO3 (二者分子比为 1∶3)对大鼠海马CA1区神经元瞬间外向钾电流 (IA)和延迟整流钾电流 (IK)的影响。结果表明 ,SO2 代谢衍生物可显著增大IA 和IK,且呈剂量依赖性关系 ,使IA 和IK 增大 5 0 %的剂量分别为 2 6 19μmol/L和 14 5 0 μmol/L。此外还与电压呈依赖性关系 ,但不具有频率依赖性。结果还表明 ,10 μmol/LSO2 代谢衍生物不影响IA 的激活过程 ,而对IK 的激活过程有非常显著的影响 ,给药前后IK 的半数激活电压分别为 17 6 4± 7 31mV和 13 43± 2 0 0mV (n=10 ,P <0 0 1) ,但不改变其斜率因子。另外 ,10 μmol/LSO2 代谢衍生物还非常显著地影响IA 的失活过程 ,给药前后其半数失活电压分别为 - 6 5 93± 1 97mV和 - 5 9 2 2± 3 83mV (n =10 ,P <0 0 1) ,但不改变其斜率因子。由此推断 ,SO2 代谢衍生物增大大鼠海马CA1区神经元的IA 和IK,促进IK 的激活过程 ,并抑制IA 的失活过程 ,可导致胞内K 通过K 通道的外流增加 ,胞内K 浓度降低 ,造成中枢神经元功能紊乱 ,诱导神经细胞凋亡。这意味着SO2 代谢衍生物对中枢神经系统具有损伤作用 ,从而提示大气SO2 污染可能与一些中枢神经系统疾病的发生以及衰老有关 [动物学报 49(1) :73  相似文献   

10.
人们对电磁辐射越来越关注,但是工频磁场产生的生物效应并不确定.选用1、5、10 mT的工频磁场照射急性分离的小鼠皮层神经元(15 min),应用全细胞膜片钳技术离线记录瞬时外向钾通道电流,研究工频磁场对离子通道的影响.结果显示:工频磁场抑制通道的电流密度,并且1 mT、5 mT及10 mT工频磁场的抑制率分别为(63.0±2.2)%、(55.0±1.7)%和(38.0±1.8)%.工频磁场影响离子通道的激活和失活特性,半数激活电压和半数失活电压变小.不同强度工频磁场对离子通道产生的影响程度不同,其中1 mT工频磁场对通道电流的抑制率最大,5 mT工频磁场对通道的半数激活电压和半数失活电压影响最大,10 mT工频磁场增大了通道的失活斜率因子.研究结果表明,工频磁场影响了细胞膜上离子通道蛋白质构象的变化,进一步影响了离子通道的正常功能.  相似文献   

11.
Nociceptin/orphanin FQ (N/OFQ) is the endogenous ligand for the opioid receptor-like-1 (ORL-1) orphan receptor, which is responsible for inhibition of delayed rectifier potassium current (I(K)). But its mechanism of N/OFQ acting on I(K) is not clear and whether PKC is involved in the modulation of this processing is still unknown. Whole-cell patch-clamp recordings were performed in acutely dissociated rat parietal cortical neurons. Bath application of N/OFQ (10 nM-10 microM) resulted in a dose-dependent depression of I(K) with partially recovery on washout. Furthermore, we investigated the role of PKC in the inhibition of I(K) by N/OFQ. Chelerythrine, an inhibitor of PKC, attenuated the inhibition of N/OFQ on I(K). On the contrary, PDBu, an activator of PKC, augmented N/OFQ-evoked responses. The present study suggested that N/OFQ inhibited I(K) and PKC was involved in N/OFQ-evoked response in acutely dissociated rat cerebral parietal cortical neurons.  相似文献   

12.
13.
Chang M  Peng YL  Dong SL  Han RW  Li W  Yang DJ  Chen Q  Wang R 《Regulatory peptides》2005,130(3):116-122
Nociceptin/orphanin FQ (N/OFQ) and its receptor system modulate a variety of biological functions and further understandings of physiological and pathological roles of this system require new potent agonists and antagonists of its receptor. Two series of N/OFQ related analogues were synthesized to investigate the relationship of different modifications. We combined modifications including: (a) Phe4→(pF)Phe4; (b) Ala7, Ala11→Aib7, Aib11; (c) Leu14, Ala15→Arg14, Lys15. Compared with the first series, N-terminus of the second series was changed from Phe1 to Nphe1. All the analogues were amidated at C-terminus. These compounds were tested in binding studies on rat brain membranes and mouse vas deferens assay. Results indicated that the compounds of the first series showed higher affinity and potency than N/OFQ (pKi = 9.33; pEC50 = 7.50). In particular, [(pF)Phe4, Aib7, Aib11, Arg14, Lys15] N/OFQ-NH2 was found to be a highly potent agonist with pKi = 10.78 in binding studies and pEC50 = 9.37 in mouse vas deferens assay. The second series all competitively antagonized the effects of N/OFQ in mouse vas deferens assay. [Nphe1, (pF)Phe4, Aib7, Aib11, Arg14, Lys15] N/OFQ-NH2 was the best antagonist with pA2 = 8.39 and showed high binding affinity with pKi = 9.99. Thus modifications which increase the potency of agonist have synergistic effect on biological activity and a replacement of N-terminus leads to shift of analogues from agonist to antagonist.  相似文献   

14.
西洛他唑对人心房肌细胞瞬间外向钾电流的影响   总被引:2,自引:0,他引:2  
目的:观察西洛他唑对人心房肌细胞瞬间外向钾电流(Ito1)的影响,探讨该药抗心律失常作用的机制.方法:二步酶解法分离人单个右心房肌细胞,应用全细胞膜片钳技术记录人心房肌细胞Ito1.结果:在保持电位-50 mV和去极化脉冲为 50 mV条件下,30 μmol/L西洛他唑显著降低Ito1,使Ito1幅值由加药前(8.16±0.70)pA/pF降至(4.84±0.60)pA/pF(P<0.01).西洛他唑在1~50 μmol/L范围内呈浓度依赖性的抑制Ito1,1 μmol/L时即产生作用,50 μmol/L时达最大效应(降低51.09%±3.00%),IC50为(13.18±2.60)μmol/L.此外,该药对Ito1的电压依赖性激活和失活曲线以及恢复曲线均无显著影响.结论:本实验结果表明西洛他唑浓度依赖性地阻滞人心房肌细胞的Ito1.  相似文献   

15.
In this study, we examined the effects of 1-benzyl-1,2,3,4-tetrahydroisoquinoline (S49) on a transient outward current (Ito) in rat ventricular myocytes using the whole-cell patch-clamp technique. Depolarization of ventricular myocytes not only activated Ito, but sustained outward currents as well. S49 dose-dependently inhibited the amplitude or integral of Ito, with a 50% inhibitory concentration (IC50) of 4.3 and 2.7 µM, respectively. The inhibition of Ito by S49 was associated with an acceleration of Ito decay. However, S49 had no effect on half inactivation voltage (V0.5) and slope factor of the voltage-dependent steady-state inactivation curve of Ito. Time-course analysis revealed that S49 developed a block during the depolarizing voltage-clamp step in a monoexponential manner. The rate and magnitude of block were concentration dependent. The equilibrium dissociation constant (Kd) used to inhibit Ito induced by S49, as calculated from the time constant of developing block, was 3.4 µM. The time constant of recovery of Ito from the inactivation state was prolonged by S49. Following treatment with quinidine, the process of Ito recovery was divided into rapid and extremely slow recovery components. Also, the relief from quinidine- or S49-induced block was assessed by comparing the recovery processes of Ito with or without drugs. That comparison revealed the relief from the block of Ito channels by S49 to be more rapid. In summary, the inhibition of Ito by S49 was dose dependent, time dependent but voltage independent. The mechanisms of action might be an open-state block.  相似文献   

16.
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   

17.
1.  The effect of outward and inward water flows through the membrane on outward potassium currents of dialyzedHelix pomatia neurons was studied.
2.  An outward water flow increased the peak and sustained outward potassium currents and accelerated the kinetics of their activation. An inward water flow had quite opposite effects—it decreased the peak and sustained potassium currents and delayed the kinetics of their activation.
3.  The analysis of the effect of water flow on the conductance of potassium channels showed that an outward water flow increased both the potassium conductance at a given potential (gk) and the maximum potassium conductance (g k max ). An inward water flow again had the opposite effect—it decreased the potassium conductance at given potential and the maximum potassium conductance.
4.  Neither an outward nor an inward water flow significantly affected the fraction of open potassium channels at a given potential [n (V)].
5.  These data suggest that in dialyzed neurons the changes of outward potassium current during water flow through the membrane are due mainly to the changes in single-channel conductance and the time constant of current activation.
  相似文献   

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