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Cell surface domain specific postsynaptic currents evoked by identified GABAergic neurones in rat hippocampus in vitro

机译:体外大鼠海马中识别出的GABA能神经元诱发的细胞表面域特异性突触后电流

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摘要

class="enumerated" style="list-style-type:decimal">Inhibitory postsynaptic currents (IPSCs) evoked in CA1 pyramidal cells (n = 46) by identified interneurones (n = 43) located in str. oriens were recorded in order to compare their functional properties and to determine the effect of synapse location on the apparent IPSC kinetics as recorded using somatic voltage clamp at −70 mV and nearly symmetrical [Cl].Five types of visualised presynaptic interneurone, oriens-lacunosum moleculare (O-LMC), basket (BC), axo-axonic (AAC), bistratified (BiC) and oriens-bistratified (O-BiC) cells, were distinguished by immunocytochemistry and/or synapse location using light and electron microscopy.Somatostatin immunoreactive O-LMCs, innervating the most distal dendritic shafts and spines, evoked the smallest amplitude (26 ± 10 pA, s.e.m., n = 8) and slowest IPSCs (10–90 % rise time, 6.2 ± 0.6 ms; decay, 20.8 ± 1.7 ms, n = 8), with no paired-pulse modulation of the second IPSC (93 ± 4 %) at 100 ms interspike interval. In contrast, parvalbumin-positive AACs evoked larger amplitude (308 ± 103 pA, n = 7) and kinetically faster (rise time, 0.8 ± 0.1 ms; decay 11.2 ± 0.9 ms, n = 7) IPSCs showing paired-pulse depression (to 68 ± 5 %, n = 6). Parvalbumin- or CCK-positive BCs (n = 9) terminating on soma/dendrites, BiCs (n = 4) and O-BiCs (n = 7) innervating dendrites evoked IPSCs with intermediate kinetic parameters. The properties of IPSCs and sensitivity to bicuculline indicated that they were mediated by GABAA receptors.In three cases, kinetically complex, multiphasic IPSCs, evoked by an action potential in the recorded basket cells, suggested that coupled interneurones, possibly through electrotonic junctions, converged on the same postsynaptic neurone.The population of O-BiCs (4 of 4 somatostatin positive) characterised in this study had horizontal dendrites restricted to str. oriens/alveus and innervated stratum radiatum and oriens. Other BiCs had radial dendrites as described earlier. The parameters of IPSCs evoked by BiCs and O-BiCs showed the largest cell to cell variation, and a single interneurone could evoke both small and slow as well as large and relatively fast IPSCs.The kinetic properties of the somatically recorded postsynaptic current are correlated with the innervated cell surface domain. A significant correlation of rise and decay times for the overall population of unitary IPSCs suggests that electrotonic filtering of distal responses is a major factor for the location and cell type specific differences of unitary IPSCs, but molecular heterogeneity of postsynaptic GABAA receptors may also contribute to the observed kinetic differences. Furthermore, domain specific differences in the short-term plasticity of the postsynaptic response indicate a differentiation of interneurones in activity-dependent responses.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在CA1锥体细胞(n = 46)中,由位于str中的鉴定的中间神经元(n = 43)引起了抑制性突触后电流(IPSC)。记录奥利安人是为了比较它们的功能特性,并确定突触位置对表观IPSC动力学的影响,如使用体电压钳在-70 mV和几乎对称[Cl -]记录的那样。 li> 五种类型的可视化突触前神经元,oriens-腔体分子(O-LMC),篮子(BC),轴突-轴突(AAC),二层化(BiC)和oriens-双化(O-BiC)细胞是 Somatostatin免疫反应性O-LMCs支配最远的树突状干和棘突,引起最小振幅(26±10 pA,sem,n = 8)和最慢的IPSC(上升时间10-90%,6.2±0.6毫秒;衰减,20.8±1.7毫秒,n = 8),第二个IPSC的成对脉冲调制(93±4%)在100毫秒间脉冲间隔。相比之下,小白蛋白阳性AAC引起更大的振幅(308±103 pA,n = 7),并且在动力学上更快(上升时间,0.8±0.1 ms;衰减11.2±0.9 ms,n = 7)IPSC显示成对脉冲压抑(至68±5%,n = 6)。小白蛋白或CCK阳性BC(n = 9)终止于体细胞/树突,BiC(n = 4)和O-BiC(n = 7)支配树突状诱发的具有中间动力学参数的IPSC。 IPSC的特性和对双小分子的敏感性表明它们是由GABAA受体介导的。 在三例中,动力学复杂的多相IPSC由记录的篮状细胞中的动作电位引起,提示偶联的中间神经元, 本研究中表征的O-BiCs种群(4个生长抑素阳性)中有4个水平树突被限制在str上。 Oriens /肺泡和神经支配的层半径和oriens。如前所述,其他BiC具有径向树突。 BiC和O-BiC诱发的IPSC的参数显示出最大的细胞间差异,单个中间神经元既可以诱发大小的IPSC,也可以诱发较大的和相对较快的IPSC。 体记录的突触后电流与神经支配的细胞表面域相关。整体IPSC总体上升和衰减时间的显着相关性表明,远端反应的电渗过滤是单一IPSC的位置和细胞类型特异性差异的主要因素,但是突触后GABAA受体的分子异质性也可能有助于观察到动力学差异。此外,突触后反应的短期可塑性方面的域特定差异表明interneurones在活动依赖的反应中有所区别。

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