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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Acute capsaicin injection increases nicotinamide adenine dinucleotide phosphate diaphorase staining independent of Fos activation in the rat dorsolateral periaqueductal gray.
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Acute capsaicin injection increases nicotinamide adenine dinucleotide phosphate diaphorase staining independent of Fos activation in the rat dorsolateral periaqueductal gray.

机译:急性辣椒素注射增加烟酰胺腺嘌呤二核苷酸磷酸心肌黄递酶染色,独立于大鼠背外侧导水管周围灰色的Fos激活。

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摘要

The mesencephalic dorsolateral periaqueductal gray (dlPAG) mediates different modalities of aversive behaviors including pain and nociception and is anatomically delineated from other columns of the PAG by its content of nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d). In many brain regions, neuronal NADPH-d is a nitric oxide (NO) synthase (NOS) and NO production mediates many nociceptive and aversive behavioral responses. The aim of this study was to determine how the noxious stimulant capsaicin affects intracellular dynamics in the dlPAG evidenced by Fos protein immunoreactivity (index of intracellular activation) and the NADPH-d reactivity. The basic hypothesis tested was that the effect of systemic capsaicin administration involved activation of the NO-producing machinery in the dlPAG. Compared to vehicle, capsaicin (50mg/kg, subcutaneous) significantly increased NADPH-d reactivity and Fos expression along the dlPAG neuraxis. However, less than one percent of the capsaicin-induced Fos activation occurred in NADPH-d-positive cells. This suggests that different intracellular mechanisms involving NO and activation of at least one other transmitter substance underlie the effects of capsaicin in the dlPAG. Although NADPH-d is a marker for constitutive NOS, only about two-thirds of the NADPH-d-positive neurons in the dlPAG were colocalized with neuronal NOS immunoreactive cells. This observation suggests that in contrast to other brain regions, neuronal NOS is unlikely to account for all NADPH-d activity in the dlPAG. Taken together, the present results show that the effect of capsaicin requires activation of at least one other transmitter and NADPH-d-dependent NO synthesis involving, but not limited to, the neuronal NOS isoform.
机译:中脑背外侧腹膜周围导水管灰色(dlPAG)介导包括疼痛和伤害感受在内的各种厌恶行为,并通过烟酰胺腺嘌呤二核苷酸磷酸黄递酶(NADPH-d)的含量在解剖学上与PAG的其他列进行了描述。在许多大脑区域,神经元NADPH-d是一氧化氮(NO)合酶(NOS),NO的产生介导了许多伤害性和厌恶性行为反应。这项研究的目的是确定有害刺激性辣椒素如何通过Fos蛋白免疫反应性(细胞内活化指数)和NADPH-d反应性来证明dlPAG中的细胞内动力学。检验的基本假设是全身施用辣椒素的作用涉及dlPAG中NO产生机制的激活。与赋形剂相比,辣椒素(50mg / kg,皮下)沿dlPAG神经轴显着增加NADPH-d反应性和Fos表达。然而,少于百分之一的辣椒素诱导的Fos活化发生在NADPH-d阳性细胞中。这表明涉及NO和至少一种其他递质的激活的不同细胞内机制是dlPAG中辣椒素作用的基础。尽管NADPH-d是组成型NOS的标志物,但dlPAG中只有约三分之二的NADPH-d阳性神经元与神经元NOS免疫反应性细胞共定位。该观察结果表明,与其他大脑区域相比,神经元NOS不可能解释dlPAG中所有NADPH-d的活性。综上所述,目前的结果表明,辣椒素的作用需要激活至少一种其他递质和依赖NADPH-d的NO合成,包括但不限于神经元NOS同工型。

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