首页> 美国卫生研究院文献>The Journal of Neuroscience >Systemic Administration of a Nerve Growth Factor Conjugate Reverses Age-Related Cognitive Dysfunction and Prevents Cholinergic Neuron Atrophy
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Systemic Administration of a Nerve Growth Factor Conjugate Reverses Age-Related Cognitive Dysfunction and Prevents Cholinergic Neuron Atrophy

机译:神经生长因子的系统管理可以逆转与年龄有关的认知功能障碍并预防胆碱能神经元萎缩

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摘要

Intraventricular administration of nerve growth factor (NGF) in rats has been shown to reduce age-related atrophy of central cholinergic neurons and the accompanying memory impairment. Intraventricular administration of NGF is necessary because NGF will not cross the blood–brain barrier (BBB). Here we have used a novel carrier system, consisting of NGF covalently linked to an anti-transferrin receptor antibody (OX-26), to transport biologically active NGF across the BBB. In our experiment, aged (24 months old) Fischer 344 rats received intravenous injections of the OX-26-NGF conjugate or a control solution (a mixture of unconjugated OX-26 and NGF) twice weekly for 6 weeks. The OX-26-NGF injections resulted in a significant improvement in spatial learning in previously impaired rats but disrupted the learning ability of previously unimpaired rats. Neuroanatomical analyses showed that OX-26-NGF conjugate treatment resulted in a significant increase in cholinergic cell size in the medial septal region of rats initially impaired in spatial learning. These results indicate the potential use of the transferrin receptor antibody delivery system for treatment of CNS disorders with neurotrophic proteins.
机译:脑室内给予大鼠神经生长因子(NGF)已显示可减少与年龄相关的中枢胆碱能神经元萎缩和随之而来的记忆障碍。由于NGF不会穿过血脑屏障(BBB),因此需要在脑室内进行NGF给药。在这里,我们使用了一种新型载体系统,该系统由与抗运铁蛋白受体抗体(OX-26)共价连接的NGF组成,可跨BBB转运生物活性NGF。在我们的实验中,年龄(24个月大)的Fischer 344大鼠每周两次接受OX-26-NGF共轭物或对照溶液(非共轭OX-26和NGF的混合物)的静脉注射,持续6周。 OX-26-NGF注射液可显着改善先前受损大鼠的空间学习能力,但会破坏先前未受损大鼠的学习能力。神经解剖学分析表明,OX-26-NGF共轭治疗导致最初在空间学习中受损的大鼠内侧中隔区胆碱能细胞大小显着增加。这些结果表明转铁蛋白受体抗体递送系统在用神经营养蛋白治疗中枢神经系统疾病中的潜在用途。

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