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Effects of propofol on GABAergic and glutamatergic transmission in isolated hippocampal single nerve-synapse preparations

机译:异丙酚对海马单神经突触分离制剂中GABA能和谷氨酸能传递的影响

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We evaluated the effects of propofol on synaptic transmission using a mechanically dissociated preparation of rat hippocampal CA3 neurons to allow assays of single bouton responses evoked from retained functional native nerve endings. We studied synaptic and extrasynaptic GABAA and glutamate receptor responses in a preparation in which experimental solutions rapidly accessed synaptic terminals. Whole-cell responses were evoked by bath application of GABA and glutamate. Synaptic inhibitory and excitatory postsynaptic currents (IPSC and EPSC) were measured as spontaneous and evoked postsynaptic responses. Evoked currents were elicited by focal electrical stimulation. Propofol (1-100 μM) enhanced extrasynaptic GABA A-receptor mediated responses but the increase at clinically relevant concentrations (1 μM) were minor. In contrast, 1 μM propofol significantly increased both the amplitude and frequency of spontaneous IPSCs (sIPSCs) and increased the amplitudes of evoked IPSCs (eIPSCs) while decreasing failure rates (Rf) and paired-pulse ratios (PPR). Decay times of sIPSCs and eIPSCs were significantly prolonged. Although propofol had no effect on extrasynaptic glutamate responses, only supra-clinical propofol concentrations (≥10 μM) increased the spontaneous EPSCs (sEPSCs, amplitudes and frequencies) but suppressed evoked EPSCs (eEPSCs decreased amplitudes with increased Rf and PPR). The decay phases of sEPSCs and eEPSCs were not changed. The propofol-induced changes in sEPSCs and eEPSCs resulted from presynaptic GABAA receptor-mediated depolarization, because these actions were blocked by bicuculline. These results suggest that propofol acts at presynaptic and postsynaptic GABAA receptors within GABAergic synapses, but also increases extrasynaptic GABA responses. Our results expand the locus of propofol actions to GABAergic and glutamatergic synapses.
机译:我们使用大鼠海马CA3神经元的机械分离制剂评估丙泊酚对突触传递的影响,以测定从保留的功能性天然神经末梢引起的单个按钮反应。我们研究了一种制备物中的突触和突触外GABAA和谷氨酸受体反应,其中实验溶液可以快速进入突触末端。通过浸浴GABA和谷氨酸盐诱发全细胞应答。突触抑制和兴奋性突触后电流(IPSC和EPSC)被测量为自发和诱发的突触后反应。诱发的电流是由局灶性电刺激引起的。异丙酚(1-100μM)增强了突触外GABA A受体介导的反应,但在临床相关浓度(1μM)下的增加很小。相反,1μM异丙酚显着增加了自发IPSC(sIPSC)的幅度和频率,并增加了诱发IPSC(eIPSCs)的幅度,同时降低了故障率(Rf)和成对脉冲比率(PPR)。 sIPSC和eIPSC的衰减时间大大延长。尽管丙泊酚对突触外谷氨酸反应没有影响,但仅临床上丙泊酚浓度(≥10μM)会增加自发性EPSC(sEPSC,幅度和频率),但会抑制诱发的EPSC(eEPSC随Rf和PPR的增加而降低幅度)。 sEPSC和eEPSC的衰减阶段没有改变。丙泊酚引起的sEPSCs和eEPSCs的变化是由突触前GABAA受体介导的去极化作用引起的,因为这些作用被双小分子阻断。这些结果表明,丙泊酚作用于GABA能突触内的突触前和突触后GABAA受体,但也增加了突触外GABA反应。我们的研究结果将丙泊酚作用域扩展到了GABA能和谷氨酸能的突触。

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