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哺乳期会导致催产素能神经元中抑制性突触后电流(IPSC)发放增加。

Lactation induces increased IPSC bursting in oxytocinergic neurons.

作者信息

Popescu Ion R, Buraei Zafir, Haam Juhee, Weng Feng-Ju, Tasker Jeffrey G

机构信息

Department of Cell and Molecular Biology, Tulane University, New Orleans, Louisiana.

Tulane Brain Institute, Tulane University, New Orleans, Louisiana.

出版信息

Physiol Rep. 2019 Apr;7(8):e14047. doi: 10.14814/phy2.14047.

Abstract

Hypothalamic magnocellular neurosecretory cells (MNCs) undergo dramatic structural reorganization during lactation in female rats that is thought to contribute to the pulsatile secretion of oxytocin critical for milk ejection. MNCs from male rats generate robust bursts of GABAergic synaptic currents, a subset of which are onset-synchronized between MNC pairs, but the functional role of the IPSC bursts is not known. To determine the physiological relevance of IPSC bursts, we compared MNCs from lactating and non-lactating female rats using whole-cell recordings in brain slices. We recorded a sixfold increase in the incidence of IPSC bursts in oxytocin (OT)-MNCs from lactating rats compared to non-lactating rats, whereas there was no change in IPSC bursts in vasopressin (VP)-MNCs. Synchronized bursts of IPSCs were observed in pairs of MNCs in slices from lactating rats. Our data indicate, therefore, that IPSC bursts are upregulated specifically in OT-MNCs during lactation, and may, therefore, contribute via rebound depolarization to the spike trains in OT neurons that lead to reflex milk ejection.

摘要

下丘脑大细胞神经分泌细胞(MNCs)在雌性大鼠哺乳期会经历显著的结构重组,这种重组被认为有助于催产素的脉冲式分泌,而催产素对乳汁排出至关重要。雄性大鼠的MNCs会产生强烈的γ-氨基丁酸能突触电流爆发,其中一部分在MNC对之间起始同步,但抑制性突触后电流爆发的功能作用尚不清楚。为了确定抑制性突触后电流爆发的生理相关性,我们使用脑片全细胞记录技术比较了哺乳期和非哺乳期雌性大鼠的MNCs。我们发现,与非哺乳期大鼠相比,哺乳期大鼠催产素(OT)-MNCs中抑制性突触后电流爆发的发生率增加了六倍,而加压素(VP)-MNCs中抑制性突触后电流爆发没有变化。在哺乳期大鼠脑片的MNC对中观察到了抑制性突触后电流的同步爆发。因此,我们的数据表明,抑制性突触后电流爆发在哺乳期特异性地上调于OT-MNCs,因此可能通过反弹去极化作用于OT神经元的动作电位序列,从而导致反射性乳汁排出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc9e/6475881/b2e82de61a9a/PHY2-7-e14047-g001.jpg

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