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海洛因处理下大鼠脑内神经肽FF和神经肽Y免疫组化模式的变化。

Changes in neuropeptide FF and NPY immunohistochemical patterns in rat brain under heroin treatment.

作者信息

D'Este Loredana, Casini Arianna, Pontieri Francesco E, Renda Tindaro G

机构信息

Department of Human Anatomy, Via Borelli 50, 00161 Rome, Italy.

出版信息

Brain Res. 2006 Apr 14;1083(1):151-8. doi: 10.1016/j.brainres.2006.02.009. Epub 2006 Mar 10.

Abstract

Immunohistochemical distribution patterns of neuropeptide FF (NPFF) and neuropeptide tyrosine (NPY) were studied in the brain of rats submitted to two different protocols of heroin treatment. In drug-naive rats, acutely injected heroin significantly depleted NPFF-immunoreactive material within the neurons of the nucleus of solitary tract (NTS), significantly decreased the density of NPFF-immunoreactive nerve fibers within the median eminence, pituitary stalk, and neurohypophysis, and markedly increased NPY-immunoreactive neurons and nerve fibers in the thalamic paraventricular nucleus and bed nucleus of stria terminalis. In drug-sensitized rats, heroin significantly increased the number and immunostaining intensity of the NPFF-immunoreactive neurons within the NTS and induced minor changes in the NPFF-immunoreactive nerve fiber network of the median eminence, pituitary stalk, and neurohypophysis and a relatively minor increase in NPY neurons in the thalamic paraventricular nucleus and bed nucleus of stria terminalis. These heroin-induced changes suggest that NPFF is involved in regulating the effects of the heroin injection and in the mechanisms underlying behavioral sensitization. They also add further support to the key role of NPY in any conditions tending to change the animal homeostasis.

摘要

在接受两种不同海洛因处理方案的大鼠脑中,研究了神经肽FF(NPFF)和神经肽Y(NPY)的免疫组织化学分布模式。在未接触过药物的大鼠中,急性注射海洛因可显著减少孤束核(NTS)神经元内的NPFF免疫反应性物质,显著降低正中隆起、垂体柄和神经垂体中NPFF免疫反应性神经纤维的密度,并显著增加丘脑室旁核和终纹床核中NPY免疫反应性神经元和神经纤维。在对药物敏感的大鼠中,海洛因显著增加了NTS内NPFF免疫反应性神经元的数量和免疫染色强度,并在正中隆起、垂体柄和神经垂体的NPFF免疫反应性神经纤维网络中引起轻微变化,同时丘脑室旁核和终纹床核中NPY神经元有相对较小的增加。这些海洛因诱导的变化表明,NPFF参与调节海洛因注射的效应以及行为敏化的潜在机制。它们还进一步支持了NPY在任何倾向于改变动物体内稳态的情况下的关键作用。

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