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大鼠海马CA1区超极化和去极化GABAA受体介导的树突抑制

Hyperpolarizing and depolarizing GABAA receptor-mediated dendritic inhibition in area CA1 of the rat hippocampus.

作者信息

Lambert N A, Borroni A M, Grover L M, Teyler T J

机构信息

Department of Neurobiology, Northeastern Ohio Universities College of Medicine, Rootstown 44272.

出版信息

J Neurophysiol. 1991 Nov;66(5):1538-48. doi: 10.1152/jn.1991.66.5.1538.

Abstract
  1. gamma-Aminobutyric acidA (GABAA) receptor-mediated inhibition of pyramidal neuron dendrites was studied in area CA1 of the rat hippocampal slice preparation with the use of intracellular and extracellular recording and one-dimensional current source-density (CSD) analysis. 2. Electrical stimulation of Schaffer collateral/commissural fibers evoked monosynaptic excitatory postsynaptic potentials (EPSPs) and population EPSPs, which were followed by biphasic inhibitory postsynaptic potentials (IPSPs). In the presence of the excitatory amino acid receptor antagonists 6,7-dinitroquinoxaline-2,3-dione (DNQX) and D,L-2-amino-5-phosphonovalerate (APV), stimulation in stratum radiatum evoked monosynaptic fast, GABAA and late, GABAB receptor-mediated IPSPs and fast and late positive field potentials recorded in s. radiatum. 3. Fast monosynaptic IPSPs and fast positive field potentials evoked in the presence of DNQX and APV were reversibly abolished by the GABAA receptor antagonist bicuculline methiodide (BMI; 30 microM) and were not changed by the GABAB receptor antagonist P-[3-aminopropyl]-P-diethoxymethylphosphinic acid (CGP 35,348; 0.1-1.0 mM). CGP 35,348 (0.1 mM) reversibly blocked late monosynaptic IPSPs and late positive field potentials. These results suggest that fast field potentials are GABAA receptor-mediated population IPSPs (GABAA, fast pIPSPs) and that late field potentials are GABAB receptor-mediated population IPSPs (GABAB, late pIPSPs). 4. Fast pIPSPs were reversibly abolished when the extracellular Cl- concentration [( Cl-]o) was reduced from 132 to 26 mM in parallel with a depolarizing shift in the reversal potential of fast IPSPs. Paired or repetitive stimulation in s. radiatum reversibly depressed fast pIPSPs and fast IPSPs. Paired-pulse depression of fast pIPSPs was reversibly antagonized by CGP 35,348 (0.4-0.8 mM). 5. Laminar analysis of s. radiatum-evoked fast pIPSPs and one-dimensional CSD analysis revealed active current sources in s. radiatum and passive current sinks in s. oriens and s. lacunosum moleculare. S. radiatum sources were abolished by pressure application of BMI in s. radiatum but not in s. oriens. Stimulation in s. oriens, s. pyramidale, or s. lacunosum moleculare evoked GABAA current sources horizontal to the stimulation site. Changes in the dendritic location of inhibitory current with changes in stimulus location paralleled changes in the distribution of excitatory current. 6. In the presence of 4-aminopyridine (50-100 microM), DNQX and APV long-lasting depolarizing GABAA receptor-mediated responses (LLDs) occurred spontaneously or could be evoked. Current sinks associated with s. radiatum-evoked LLDs were located in the same dendritic area as sources associated with hyperpolarizing fast IPSPs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 利用细胞内和细胞外记录以及一维电流源密度(CSD)分析,在大鼠海马脑片制备的CA1区研究了γ-氨基丁酸A(GABAA)受体介导的锥体细胞树突抑制作用。2. 电刺激海马伞/连合纤维诱发单突触兴奋性突触后电位(EPSP)和群体EPSP,随后是双相抑制性突触后电位(IPSP)。在存在兴奋性氨基酸受体拮抗剂6,7-二硝基喹喔啉-2,3-二酮(DNQX)和D,L-2-氨基-5-磷酸戊酸(APV)的情况下,辐射层刺激诱发单突触快速、GABAA和晚期、GABAB受体介导的IPSP以及在辐射层记录到的快速和晚期正场电位。3. 在DNQX和APV存在下诱发的快速单突触IPSP和快速正场电位被GABAA受体拮抗剂甲基荷包牡丹碱(BMI;30μM)可逆性消除,而GABAB受体拮抗剂P-[3-氨丙基]-P-二乙氧基甲基膦酸(CGP 35,348;0.1 - 1.0 mM)对其无影响。CGP 35,348(0.1 mM)可逆性阻断晚期单突触IPSP和晚期正场电位。这些结果表明,快速场电位是GABAA受体介导的群体IPSP(GABAA,快速pIPSP),而晚期场电位是GABAB受体介导的群体IPSP(GABAB,晚期pIPSP)。4. 当细胞外Cl⁻浓度[Cl⁻]o从132 mM降至26 mM时,快速pIPSP可逆性消除,同时快速IPSP的反转电位出现去极化偏移。辐射层的成对或重复刺激可逆性抑制快速pIPSP和快速IPSP。快速pIPSP的成对脉冲抑制被CGP 35,348(0.4 - 0.8 mM)可逆性拮抗。5. 对辐射层诱发的快速pIPSP进行层分析和一维CSD分析显示,辐射层有活动电流源,而海马下托和分子层有被动电流汇。辐射层的电流源被辐射层局部施加的BMI消除,但海马下托未被消除。在海马下托、锥体细胞层或分子层刺激诱发与刺激部位水平的GABAA电流源。抑制性电流的树突位置随刺激位置的变化与兴奋性电流分布的变化平行。6. 在存在4-氨基吡啶(50 - 100μM)、DNQX和APV的情况下,会自发出现或可诱发GABAA受体介导的长时去极化反应(LLD)。与辐射层诱发的LLD相关的电流汇位于与超极化快速IPSP相关的电流源相同树突区域。(摘要截短于400字)

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