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Inhibitory projections from the ventral nucleus of the trapezoid body to the medial nucleus of the trapezoid body in the mouse

机译:从小鼠的梯形体腹核到梯形体内侧核的抑制性投射

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摘要

Neurons in the medial nucleus of the trapezoid body (MNTB) receive prominent excitatory input through the calyx of Held, a giant synapse that produces large and fast excitatory currents. MNTB neurons also receive inhibitory glycinergic inputs that are also large and fast, and match the calyceal excitation in terms of synaptic strength. GABAergic inputs provide additional inhibition to MNTB neurons. Inhibitory inputs to MNTB modify spiking of MNTB neurons both in-vitro and in-vivo, underscoring their importance. Surprisingly, the origin of the inhibitory inputs to MNTB has not been shown conclusively. We performed retrograde tracing, anterograde tracing, immunohistochemical experiments, and electrophysiological recordings to address this question. The results support the ventral nucleus of the trapezoid body (VNTB) as at least one major source of glycinergic input to MNTB. VNTB fibers enter the ipsilateral MNTB, travel along MNTB principal neurons and produce several bouton-like presynaptic terminals. Further, the contribution of GABA to the total inhibition declines during development, resulting in only a very minor fraction of GABAergic inhibition in adulthood, which is matched in time by a reduction in expression of a GABA synthetic enzyme in VNTB principal neurons.
机译:梯形体内侧核(MNTB)中的神经元通过Held花萼接收重要的兴奋性输入,该花萼是一个巨大的突触,会产生大而快速的兴奋性电流。 MNTB神经元还接受抑制性的甘氨酸输入,该输入也很大且很快,并且在突触强度方面与肾上腺的兴奋相匹配。 GABA能量输入可进一步抑制MNTB神经元。对MNTB的抑制性输入会在体内和体外改变MNTB神经元的突增,突显了它们的重要性。令人惊讶的是,尚无定论显示MNTB抑制性输入的起源。我们进行了逆行追踪,顺行追踪,免疫组织化学实验和电生理记录,以解决这个问题。结果支持梯形体(VNTB)的腹核,作为向MNTB提供至少一个主要的甘氨酸输入的主要来源。 VNTB纤维进入同侧MNTB,沿着MNTB主要神经元行进,并产生数个钮扣状突触前末端。此外,在发育过程中,GABA对总抑制作用的贡献下降,导致成年期仅有极小部分的GABA能抑制作用,这在时间上与VNTB主要神经元中GABA合成酶表达的减少相匹配。

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