首页> 外文期刊>The Journal of Comparative Neurology >Estrogen receptor-alpha and -beta immunoreactive neurons in the brainstem and spinal cord of male and female mice: Relationships to monoaminergic, cholinergic, and spinal projection systems.
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Estrogen receptor-alpha and -beta immunoreactive neurons in the brainstem and spinal cord of male and female mice: Relationships to monoaminergic, cholinergic, and spinal projection systems.

机译:雄性和雌性小鼠脑干和脊髓中的雌激素受体α和β免疫反应性神经元:与单胺能,胆碱能和脊髓投射系统的关系。

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摘要

For many populations of estrogen-sensitive neurons it remains unknown how they are associated with central nervous system circuitries that mediate estrogen-induced modulation of behavioral components. With the use of double-labeling immunohistochemistry and tracing techniques, the relationships of estrogen receptor (ER)-alpha- and ER-beta-immunoreactive (IR) neurons in the mouse brainstem and spinal cord to monoaminergic, cholinergic, and spinal projection systems are explored. Similar distributions of ER-IR neurons were present in females and males, with differences in labeling intensity of ER-alpha immunoreactivity among males and estrogen-, and oil-treated females. Barrington's nucleus, the ventrolateral medulla, and the nucleus of the solitary tract contained spinal-projecting ER-alpha-IR neurons, whereas ER-alpha-IR neurons in the periaqueductal gray, parabrachial nucleus, and catecholaminergic A1 cell group received spinal input. Numerous tyrosine hydroxylase (TH)-IR ER-alpha-IR neurons were present in the ventral periaqueductal gray, nucleus of the solitary tract, A1 cell group, and lumbosacral cord. The dorsal raphe nucleus contained ER-alpha-IR and ER-beta-IR neurons that colocalized with serotonin (5HT), and the reticulotegmental nucleus contained 5HT-IR ER-alpha-IR neurons. Fibers IR for vesicular acetylcholine transporter (VAChT), TH, and 5HT were located among ER-alpha-IR neurons in the dorsal horn and spinal autonomic regions. Robust staining for TH and VAChT, but not 5HT, was present among ER-alpha-IR neurons in the lumbosacral lateral collateral pathway. Possible modulatory actions of estrogen on each of these ER-IR populations are discussed in the context of their specific function, including micturition, sexual behavior, ejaculation, cardiovascular and respiratory control, tactile and nociceptive sensory processing, anti-nociception, endocrine regulation, and feeding. J. Comp. Neurol. 488:152-179, 2005. (c) 2005 Wiley-Liss, Inc.
机译:对于许多对雌激素敏感的神经元来说,它们与中枢神经系统回路如何介导雌激素诱导的行为成分调节之间的关联仍然未知。通过使用双标记免疫组织化学和示踪技术,小鼠脑干和脊髓中雌激素受体(ER)-α-和ER-β-免疫反应性(IR)神经元与单胺能,胆碱能和脊柱投射系统之间的关系为探索。雌性和雄性中存在类似的ER-IR神经元分布,在雄性以及雌激素和油处理雌性中,ER-α免疫反应性的标记强度存在差异。 Barrington的核,腹外侧延髓和孤立道的核包含脊柱投射的ER-α-IR神经元,而在导水管周围的灰色,肱臂旁核和儿茶酚胺能A1细胞组中的ER-α-IR神经元接受了脊柱输入。腹周导水管灰色,孤立道核,A1细胞组和腰s部存在大量酪氨酸羟化酶(TH)-IR ER-alpha-IR神经元。背沟核含有与5-羟色胺(5HT)共定位的ER-α-IR和ER-β-IR神经元,网状视网膜核含有5HT-IRER-α-IR神经元。用于囊泡乙酰胆碱转运蛋白(VAChT),TH和5HT的纤维IR位于背角和脊髓自主区的ER-α-IR神经元之间。腰ac外侧支途径的ER-α-IR神经元中存在TH和VAChT的强固染色,但5HT没有。讨论了雌激素对这些ER-IR人群中每个人群可能的调节作用,包括排尿,性行为,射精,心血管和呼吸控制,触觉和伤害性感觉加工,抗伤害感受,内分泌调节以及喂养。 J.比较神经元。 488:152-179,2005.(c)2005 Wiley-Liss,Inc.

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