首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Delivery of insulin-like growth factor-I to the rat brain and spinal cord along olfactory and trigeminal pathways following intranasal administration.
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Delivery of insulin-like growth factor-I to the rat brain and spinal cord along olfactory and trigeminal pathways following intranasal administration.

机译:鼻内给药后,胰岛素样生长因子-I通过嗅觉和三叉神经途径向大鼠脑和脊髓传递。

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摘要

We investigated the CNS delivery of insulin-like growth factor-I (IGF-I), a 7.65 kDa protein neurotrophic factor, following intranasal administration and the possible pathways and mechanisms underlying transport from the nasal passages to the CNS. Anesthetized adult male Sprague-Dawley rats were given [125I]-IGF-I intranasally or intravenously and then killed by perfusion-fixation within 30 min. Other animals were killed following cisternal puncture and withdrawal of cerebrospinal fluid (CSF) or intranasal administration of unlabeled IGF-I or vehicle. Both gamma counting of microdissected tissue and high resolution phosphor imaging of tissue sections showed that the tissue concentrations and distribution following intranasal administration were consistent with two routes of rapid entry into the CNS: one associated with the peripheral olfactory system connecting the nasal passages with the olfactory bulbs and rostral brain regions (e.g. anterior olfactory nucleus and frontal cortex) and the other associated with the peripheral trigeminal system connecting the nasal passages with brainstem and spinal cord regions. Intranasal administration of [125I]-IGF-I also targeted the deep cervical lymph nodes, consistent with their possible role in lymphatic drainage of both the nasal passages and the CNS. Cisternal CSF did not contain [125I]-IGF-I following intranasal administration. Intravenous [125I]-IGF-I resulted in blood and peripheral tissue exposure similar to that seen following intranasal administration but CNS concentrations were significantly lower. Finally, delivery of IGF-I into the CNS activated IGF-I signaling pathways, confirming some portion of the IGF-I that reached CNS target sites was functionally intact. The results suggest intranasally delivered IGF-I can bypass the blood-brain barrier via olfactory- and trigeminal-associated extracellular pathways to rapidly elicit biological effects at multiple sites within the brain and spinal cord.
机译:我们研究了鼻内给药后中枢神经系统胰岛素样生长因子-I(IGF-I),7.65 kDa蛋白神经营养因子的中枢神经系统递送以及从鼻腔通道传递至中枢神经系统的潜在途径和机制。麻醉的成年雄性Sprague-Dawley大鼠经鼻内或静脉内给予[125I] -IGF-1,然后在30分钟内通过灌注固定杀死。胸骨穿刺并撤回脑脊液(CSF)或鼻内注射未标记的IGF-1或溶媒后杀死了其他动物。显微解剖组织的伽马计数和组织切片的高分辨率磷光成像均显示,鼻内给药后组织浓度和分布与快速进入中枢神经系统的两种途径一致:一种与连接鼻腔通道和嗅觉的外周嗅觉系统相关球和脑延髓的大脑区域(例如,嗅觉前核和额叶皮层),另一个与连接鼻道与脑干和脊髓区域的周围三叉神经系统有关。鼻内给药[125I] -IGF-I还靶向深颈淋巴结,这与它们在鼻腔和CNS淋巴引流中的可能作用一致。鼻内给药后,Csternal CSF不包含[125I] -IGF-1。静脉内[125I] -IGF-I导致血液和周围组织暴露与鼻内给药后相似,但CNS浓度明显降低。最后,将IGF-I递送至CNS激活的IGF-I信号传导途径,确认到达CNS靶位点的IGF-I的某些部分功能上完整。结果表明,鼻内递送的IGF-I可以通过嗅觉和三叉神经相关的细胞外途径绕过血脑屏障,从而在脑和脊髓的多个部位迅速引起生物效应。

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