首页> 外文期刊>American Journal of Physiology >BDNF-TrkB signaling interacts with the GABAergic system to inhibit rhythmic swallowing in the rat.
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BDNF-TrkB signaling interacts with the GABAergic system to inhibit rhythmic swallowing in the rat.

机译:BDNF-TrkB信号传导与GABA能系统相互作用,以抑制大鼠的节律性吞咽。

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摘要

Brain-derived neurotrophic factor (BDNF) acts as an anorexigenic factor in the dorsal vagal complex (DVC) of the adult rat brain stem. The DVC contains the premotoneurons controlling swallowing, a motor component of feeding behavior. Although rats with transected midbrain do not seek out food, they are able to swallow and to ingest food. Because BDNF and tropomyosin-related kinase B (TrkB) receptors are expressed in the DVC, this study hypothesized that BDNF could modify the activity of premotoneurons involved in swallowing. Repetitive electrical stimulation of the superior laryngeal nerve (SLN) induces rhythmic swallowing that can be recorded with electromyographic electrodes inserted in sublingual muscles. We show that a microinjection of BDNF in the swallowing network induced a rapid, transient, and dose-dependant inhibition of rhythmic swallowing. This BDNF effect appeared to be mediated via TrkB activation, since it no longer occurred when TrkB receptors were antagonized by K-252a. Interestingly, swallowing was inhibited when subthreshold doses of BDNF and GABA were coinjected, suggesting a synergistic interaction between these two signaling substances. Moreover, BDNF no longer had an inhibitory effect on swallowing when coinjected with bicuculline, a GABA(A) receptor antagonist. This blockade of BDNF inhibitory effect on swallowing was reversible, since it reappeared when BDNF was injected 15 min after bicuculline. Finally, we show that stimulation of SLN induced a decrease in BDNF protein within the DVC. Together, our results strongly suggest that BDNF inhibits swallowing via modulation of the GABAergic signaling within the central pattern generator of swallowing.
机译:脑源性神经营养因子(BDNF)在成年大鼠脑干的背迷走神经复合体(DVC)中充当厌食因子。 DVC包含控制吞咽的前运动神经元,这是进食行为的运动成分。尽管患有中脑横断的老鼠不会寻找食物,但是它们能够吞咽和摄取食物。由于BDNF和原肌球蛋白相关的激酶B(TrkB)受体在DVC中表达,因此本研究假设BDNF可以改变吞咽前神经元的活性。喉上神经(SLN)的重复电刺激可引起节律性吞咽,这可通过插入舌下肌肉中的肌电图电极来记录。我们显示吞咽网络中的BDNF显微注射诱导节律性吞咽的快速,短暂和剂量依赖性抑制。这种BDNF效应似乎是通过TrkB激活介导的,因为当TrkB受体被K-252a拮抗时不再发生。有趣的是,当亚阈值剂量的BDNF和GABA共同注射时,吞咽被抑制,表明这两种信号传导物质之间存在协同作用。而且,BDNF与GABA(A)受体拮抗药bicuculline共同注射时,对吞咽不再具有抑制作用。这种对BDNF吞咽抑制作用的阻断作用是可逆的,因为在双小分子15分钟后注射BDNF时,这种阻断作用再次出现。最后,我们表明刺激SLN诱导DVC内BDNF蛋白减少。在一起,我们的结果有力地表明,BDNF通过在吞咽的中心模式发生器内调节GABA能信号来抑制吞咽。

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