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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >In vivo neurogenesis in the dorsal vagal complex of the adult rat brainstem.
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In vivo neurogenesis in the dorsal vagal complex of the adult rat brainstem.

机译:成年大鼠脑干背迷走神经复合体的体内神经发生。

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The dorsal vagal complex (DVC) encompasses the nucleus tractus solitarii (NTS), the dorsal motor nucleus of the vagus nerve (DMX) and the area postrema (AP), that altogether provide the major integrative center for the mammalian autonomic nervous system. The adult rat DVC has been reported to contain afferent-dependent concentration of the plasticity-promoting polysialylated form of neural cell adhesion molecule [J Neurosci 21 (2001) 4721; Eur J Neurosci 14 (2001) 1194]. This prompted us to assess the occurrence of neurogenesis in the DVC of adult rats. Cumulative in vivo labeling of cell proliferation with i.p. bromodeoxyuridine (BrdU) injections was combined with phenotypic markers and confocal microscopy on serial brainstem sections throughout the DVC extent. In basal condition, sparse BrdU+ nuclei were selectively detected in the DVC according to a discrete and reproducible pattern. Some of them were found to colocalize with the neuronal markers doublecortin, HuC/D, or neuronal-specific antigen (NeuN), demonstrating that neurogenesis does occur within the DVC of adult rat. In the NTS, 10% of the BrdU+ nuclei were also NeuN+. A comparable proportion of astrogliogenesis was found in the DVC. Nestin immunohistochemistry yielded a highly specific labeling pattern at the border between AP and NTS. These data may relate to the neural stem cells that have been reported in the floor of the IVth ventricle [J Neurosci 16 (1996) 7599]. In order to assess a possible modulation of neurogenesis by afferent input in vivo, unilateral vagotomy was performed prior to cumulative BrdU treatment. Such DVC deafferentation triggered a large increase of BrdU incorporation in the ipsilateral DVC, which was associated with microglial proliferation in the DMX and with increased genesis of neurons and astrocytes in the NTS. These findings establish DVC as a novel model of adult neurogenesis that is reactive to deafferentation.
机译:背迷走神经复合体(DVC)包含孤束核(NTS),迷走神经背运动核(DMX)和后视网膜区域(AP),它们共同构成了哺乳动物自主神经系统的主要整合中心。据报道,成年大鼠DVC包含神经细胞粘附分子的可塑性促进的多唾液酸化形式的传入依赖性浓度[J Neurosci 21(2001)4721; J.Med.Biol.Chem。,2001,42,2257]。 Eur J Neurosci 14(2001)1194]。这促使我们评估成年大鼠DVC中神经发生的发生。 i.p.的累积体内标记细胞增殖在整个DVC范围内,将溴脱氧尿苷(BrdU)注射液与表型标记物和共聚焦显微镜相结合,在连续的脑干切片上进行。在基础条件下,根据离散且可再现的模式在DVC中选择性地检测到稀疏的BrdU +核。发现其中一些与神经元标记doublecortin,HuC / D或神经元特异性抗原(NeuN)共定位,表明成年大鼠的DVC内确实发生了神经发生。在NTS中,10%的BrdU +核也是NeuN +。在DVC中发现了相当比例的星形胶质发生。巢蛋白免疫组织化学在AP和NTS之间的边界产生了高度特异性的标记模式。这些数据可能与第四脑室底部已报道的神经干细胞有关[J Neurosci 16(1996)7599]。为了评估体内传入输入可能对神经发生的调节,在累积BrdU治疗之前进行了单侧迷走神经切断术。这种DVC脱除咖啡因会引起同侧DVC中BrdU掺入的大量增加,这与DMX中的小胶质细胞增殖以及NTS中神经元和星形胶质细胞的起源增加有关。这些发现将DVC确立为对脱除咖啡因反应具有反应性的成年神经发生的新型模型。

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