首页> 美国卫生研究院文献>The Journal of Physiology >Developmental changes in brain-derived neurotrophic factor-mediated modulations of synaptic activities in the pontine Kölliker–Fuse nucleus of the rat
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Developmental changes in brain-derived neurotrophic factor-mediated modulations of synaptic activities in the pontine Kölliker–Fuse nucleus of the rat

机译:大鼠脑桥Kölliker–Fuse核中脑源性神经营养因子介导的突触活动调节的发育变化

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摘要

The Kölliker–Fuse nucleus (KF), part of the respiratory network, is involved in the modulation of respiratory phase durations in response to peripheral and central afferent inputs. The KF is immature at birth. Developmental changes in its physiological and anatomical properties have yet to be investigated. Since brain-derived neurotrophic factor (BDNF) is of major importance for the maturation of neuronal networks, we investigated its effects on developmental changes in the KF on different postnatal days (neonatal, P1–5; intermediate, P6–13; juvenile, P14–21) by analysing single neurones in the in vitro slice preparation and network activities in the perfused brainstem preparation in situ. The BDNF had only weak effects on the frequency of mixed excitatory and inhibitory spontaneous postsynaptic currents (sPSCs) in neonatal slice preparations. Postnatally, in the intermediate and juvenile age groups, a significant augmentation of the sPSC frequency was observed in the presence of 100 pm BDNF (+23.5 ± 12.6 and +76.7 ± 28.4%, respectively). Subsequent analyses of BDNF effects on evoked excitatory postsynaptic currents (eEPSCs) revealed significant enhancement of eEPSC amplitude of +20.8 ± 7.0% only in juvenile stages (intermediates, −13.2 ± 4.8%). On the network level, significant modulation of phrenic nerve activity following BDNF microinjection into the KF was also observed only in juveniles. The data suggest that KF neurones are subject to BDNF-mediated fast synaptic modulation after completion of postnatal maturation. After maturation, BDNF contributes to modulation of fast excitatory neurotransmission in respiratory-related KF neurones. This may be important for network plasticity associated with the processing of afferent information.
机译:Kölliker-Fuse核(KF)是呼吸网络的一部分,响应周围和中央传入输入而参与呼吸阶段持续时间的调节。 KF出生时不成熟。其生理和解剖学性质的发育变化尚待研究。由于脑源性神经营养因子(BDNF)对于神经网络的成熟至关重要,因此我们研究了其对出生后不同天(新生儿,P1-5;中级,P6-13;少年,P14)KF发育变化的影响。 –21)通过分析体外切片准备中的单个神经元和灌注脑干准备中的网络活动。在新生儿切片制剂中,BDNF对兴奋性和抑制性自发突触后混合电流(sPSC)的频率仅具有微弱的影响。出生后,在中年和少年年龄组中,在存在100 pm BDNF的情况下观察到sPSC频率显着增加(分别为+23.5±12.6和+76.7±28.4%)。随后对BDNF对诱发的兴奋性突触后电流(eEPSC)的影响的分析表明,仅在青少年阶段,eEPSC幅度才显着增加+20.8±7.0%(中间水平,-13.2±4.8%)。在网络水平上,也仅在青少年中观察到了BDNF显微注射入KF后of神经活动的显着调节。数据表明,KF神经元在出生后成熟后会受到BDNF介导的快速突触调节。成熟后,BDNF有助于调节呼吸相关KF神经元中的快速兴奋性神经传递。这对于与传入信息处理相关的网络可塑性可能很重要。

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