首页> 外文期刊>Journal of chemical neuroanatomy >Functional and ultrastructural neuroanatomy of interactive intratectal/tectonigral mesencephalic opioid inhibitory links and nigrotectal GABAergic pathways: involvement of GABAA and mu1-opioid receptors in the modulation of panic-like reactions elici
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Functional and ultrastructural neuroanatomy of interactive intratectal/tectonigral mesencephalic opioid inhibitory links and nigrotectal GABAergic pathways: involvement of GABAA and mu1-opioid receptors in the modulation of panic-like reactions elici

机译:相互作用的颅内/耳蜗中脑阿片样物质抑制联系和尼古丁GABA能途径的功能和超微结构神经解剖:GABAA和mu1-阿片受体参与惊恐样反应的调节。

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In the present study, the functional neuroanatomy of nigrotectal-tectonigral pathways as well as the effects of central administration of opioid antagonists on aversive stimuli-induced responses elicited by electrical stimulation of the midbrain tectum were determined. Central microinjections of naloxonazine, a selective mu(1)-opiod receptor antagonist, in the mesencephalic tectum (MT) caused a significant increase in the escape thresholds elicited by local electrical stimulation. Furthermore, either naltrexone or naloxonazine microinjected in the substantia nigra, pars reticulata (SNpr), caused a significant increase in the defensive thresholds elicited by electrical stimulation of the continuum comprised by dorsolateral aspects of the periaqueductal gray matter (dlPAG) and deep layers of the superior colliculus (dlSC), as compared with controls. These findings suggest an opioid modulation of GABAergic inhibitory inputs controlling the defensive behavior elicited by MT stimulation, in cranial aspects.In fact, iontophoretic microinjections of the neurotracer biodextran into the SNpr, a mesencephalic structure rich in GABA-containing neurons, show outputs to neural substrate of the dlSC/dlPAG involved with the generation and organization of fear- and panic-like reactions. Neurochemical lesion of the nigrotectal pathways increased the sensitivity of the MT to electrical (at alertness, freezing and escape thresholds) and chemical (blockade of GABA(A) receptors) stimulation, suggesting a tonic modulatory effect of the nigrotectal GABAergic outputs on the neural networks of the MT involved with the organization of the defensive behavior and panic-like reactions. Labeled neurons of the midbrain tectum send inputs with varicosities to ipsi and contralateral dlSC/dlPAG and ipsilateral substantia nigra, pars reticulata and compacta, in which the anterograde and retrograde tracing from a single injection indicates that the substantia nigra has reciprocal connections with the dlSC/dlPAG featuring close axo-somatic and axo-dendritic appositions in both locations. In addition, ultrastructural approaches show inhibitory axo-axonic synapses in MT and inhibitory axo-somatic/axo-axonic synapses in the SNpr. These findings, in addition to the psychopharmacological evidence for the interaction between opioid and GABAergic mechanisms in the cranial aspects of the MT as well as in the mesencephalic tegmentum, offer a neuroanatomical basis of a pre-synaptic opioid inhibition of GABAergic nigrotectal neurons modulating fear in defensive behavior-related structures of the cranial mesencephalon, in a short link, and through a major neural circuit, also in GABA-containing perikarya and axons of nigrotectal neurons.
机译:在本研究中,确定了黑骨顶-顶-顶神经通路的功能神经解剖学以及阿片类药物拮抗剂的中央给药对中脑顶盖电刺激引起的厌恶刺激诱导的反应的影响。中央微注射纳洛酮嗪,一种选择性的mu(1)-阿片受体拮抗剂,在中脑皮层(MT)中引起局部电刺激引起的逃逸阈值显着增加。此外,微注射入黑质(pars reticulata,SNpr)的纳曲酮或纳洛酮嗪(Naproxoneazine)会导致电刺激引起连续体的防御阈值的显着增加,该连续体由水周导水管灰质(dlPAG)的背外侧和深层覆盖。与对照相比,上丘(dlSC)。这些发现表明,在颅骨方面,阿片调节GABA抑制性输入以控制MT刺激引起的防御行为。实际上,神经示踪剂生物右旋糖酐的电渗显微注射到SNpr中,即富含GABA的神经元的中脑结构,显示出神经输出dlSC / dlPAG的底物与恐惧和恐慌样反应的产生和组织有关。烟盒通道的神经化学损伤增加了MT对电刺激(处于警戒状态,冻结和逃逸阈值)和化学(阻断GABA(A)受体)的敏感性,表明烟盒GABA能量输出对神经网络具有调节作用。 MT与防御行为和恐慌状反应的组织有关。标记的中脑外层神经元向ipsi和对侧dlSC / dlPAG和同侧黑质,pars reticulata和Compacta发送具有静脉曲张性的输入,其中单次注射的顺行和逆行追踪表明黑质与dlSC / dlPAG在两个位置均具有紧密的轴突体和轴突树突并置。此外,超结构方法显示MT中的抑制性轴突突触和SNpr中的抑制性轴突/轴突突触。这些发现,除了在MT的颅骨方面以及在中脑后盖骨中,阿片类药物与GABA能机制之间相互作用的心理药理学证据外,还为突触前阿片类药物抑制GABA能性黑眉毛神经元调节恐惧提供了神经解剖学基础。与颅骨中脑的防御行为有关的结构,在短链上并通过主要的神经回路,也存在于含有GABA的周核神经和黑质顶神经元的轴突中。

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