首页> 外文OA文献 >Postsynaptic calcium influx at single synaptic contacts between pyramidal neurons and bitufted interneurons in layer 2/3 of rat neocortex is enhanced by backpropagating action potentials
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Postsynaptic calcium influx at single synaptic contacts between pyramidal neurons and bitufted interneurons in layer 2/3 of rat neocortex is enhanced by backpropagating action potentials

机译:大鼠新皮质第2/3层锥体神经元和垂体中间神经元之间单突触接触的突触后钙内流通过反向传播动作电位增强

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摘要

Pyramidal neurons in layer 2/3 (L2/3) of the rat somatosensory cortex excite somatostatin-positive inhibitory bitufted interneurons located in the same cortical layer via glutamatergic synapses. A rise in volume-averaged dendritic [Ca2+]i evoked by backpropagating action potentials (APs) reduces glutamatergic excitation via a retrograde signal, presumably dendritic GABA. To measure the rise in local [Ca2+]i at synaptic contacts during suprathreshold excitation, we identified single synaptic contacts in the acute slice preparation in pairs of pyramidal and bitufted cells each loaded with a Ca2+ indicator dye. Repetitive APs (10-15 APs at 50 Hz) evoked in a L2/3 pyramidal neuron gave rise to facilitating unitary EPSPs in the bitufted cell. Subthreshold EPSPs evoked a transient rise in [Ca2+]i of 80-250 nM peak amplitude at the postsynaptic dendritic site. The local postsynaptic [Ca2+]i transient was restricted to 10 microm of dendritic length, lasted for 200 msec, and was mediated predominantly by NMDA receptor channels. When EPSPs were suprathreshold, the evoked AP backpropagated into the apical and basal dendritic arbor and increased the local [Ca2+]i transient at active contacts by approximately twofold, with a peak amplitude reaching 130-450 nM. This value is in the range of the half-maximal dendritic [Ca2+]i, evoking retrograde inhibition of glutamate release from boutons of pyramids. The localized enhancement of dendritic Ca2+ influx at synaptic contacts by synaptically evoked backpropagating APs could represent one mechanism by which a retrograde signal can limit the excitation of bitufted interneurons by L2/3 pyramids when these are repetitively active.
机译:大鼠体感皮层的2/3(L2 / 3)层中的锥体神经元通过谷氨酸能突触激发位于同一皮质层的生长抑素阳性的抑制性联神经元。反向传播动作电位(APs)引起的体积平均树突状[Ca2 +] i升高会通过逆行信号(可能是树突状GABA)降低谷氨酸能兴奋。为了测量超阈值激发过程中突触接触处局部[Ca2 +] i的升高,我们在急性切片制剂中以成对的锥体细胞和节育细胞对中的单个突触接触鉴定,每对细胞均装有Ca2 +指示剂染料。在L2 / 3锥体神经元中诱发的重复性AP(在50 Hz时为10-15个AP)引起了在受精巢细胞中促进单一的EPSP。亚阈值EPSP引起突触后树突状位点[Ca2 +] i的瞬时增加,峰值幅度为80-250 nM。局部突触后[Ca2 +] i瞬变被限制为10微米的树突长度,持续200毫秒,并主要由NMDA受体通道介导。当EPSPs高于阈值时,诱发的AP向后传播到顶端和基底树突状乔木中,并使活动触点处的局部[Ca2 +] i瞬变增加大约两倍,峰值幅度达到130-450 nM。该值在最大树突状[Ca 2+] i的范围内,引起逆行抑制谷氨酸从锥体束中的释放。突触传播的APs在突触接触处树突状Ca 2+内流的局部增强可以代表一种机制,当这些信号重复活跃时,逆行信号可以通过L2 / 3金字塔限制被咬住的中间神经元的激发。

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