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Agmatine modulates spontaneous activity in neurons of the rat medial habenular complex—a relevant mechanism in the pathophysiology and treatment of depression?

机译:胍丁胺调节大鼠内侧ha复合体神经元的自发活性,这是抑郁症的病理生理和治疗的相关机制吗?

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The dorsal diencephalic conduction system connects limbic forebrain structures to monaminergic mesencephalic nuclei via a distinct relay station, the habenular complexes. Both habenular nuclei, the lateral as well as the medial nucleus, are considered to play a prominent role in mental disorders like major depression. Herein, we investigate the effect of the polyamine agmatine on the electrical activity of neurons within the medial habenula in rat. We present evidence that agmatine strongly decreases spontaneous action potential firing of medial habenular neurons by activating I1-type imidazoline receptors. Additionally, we compare the expression patterns of agmatinase, an enzyme capable of inactivating agmatine, in rat and human habenula. In the medial habenula of both species, agmatinase is similarly distributed and observed in neurons and, in particular, in distinct neuropil areas. The putative relevance of these findings in the context of depression is discussed. It is concluded that increased activity of the agmatinergic system in the medial habenula may strengthen midbrain dopaminergic activity. Consequently, the habenular–interpeduncular axis may be dysregulated in patients with major depression.
机译:背侧双脑传导系统通过一个独特的中继站(哈贝复合体)将边缘前脑结构连接到单胺能中脑核。 ha状核,外侧核和内侧核都被认为在诸如重度抑郁症等精神疾病中起着重要作用。本文中,我们研究了聚胺胍丁胺对大鼠内侧ha神经元神经元电活动的影响。我们提供的证据表明,胍丁胺可通过激活I1型咪唑啉受体来大大降低内侧ha神经元的自发动作电位。此外,我们比较了大鼠和人ha管中胍丁胺酶(一种能够使胍丁胺失活的酶)的表达模式。在这两个物种的内侧哈贝努拉中,胍丁胺糖酶在神经元中,特别是在不同的神经pil区域中的分布和观察相似。讨论了在抑郁症中这些发现的假定相关性。结论是,内侧哈贝拉中的农杆菌能系统活性增加可能会增强中脑多巴胺能活性。因此,重度抑郁症患者的下颌-椎间轴可能失调。

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