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Hippocampal 7α-Hydroxylated Neurosteroids Are Raised by Training and Bolster Remote Spatial Memory with Increase of the Spine Densities

机译:通过训练和撑起脊柱密度的训练和升高的偏远空间记忆提高了海马7α-羟基的神经硬化物

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摘要

Neuroactive steroids, termed neurosteroids, are synthesized locally in the brain and influence biological functions including cognition and behavior. These neurosteroids are synthesized from cholesterol by a series of cytochrome P450 enzymes, among which a member of P450 hydroxylase, cytochrome P450-7b1 (CYP7B1), catalyzes the formation of 7α-hydroxylated neurosteroids, 7α-hydroxypregnenolone (7α-OH-Preg) and 7α-hydroxydehydroepiandrosterone (7α-OH-DHEA). Here we demonstrated the occurrence of these neurosteroids in the mouse hippocampus after spatial-learning tasks. Cyp7b1 deficiency impaired remote spatial memory with recent memory mostly unaffected. The hippocampal dendritic spine densities were reduced in Cyp7b1-deficient mice, and they were no more increased by the training. Furthermore, chronic intracerebroventricular administration of a mixture of 7α-OH-Preg and 7α-OH-DHEA rescued the deteriorated remote memory performance in Cyp7b1-deficient mice. It is concluded that the 7α-hydroxylated neurosteroids are required for long-term maintenance of spatial memory, and we suggest that these neurosteroids may induce synaptic remodeling to maintain the hippocampal function.
机译:神经活性类固醇称为神经硬化,在脑中局部合成,并影响包括认知和行为的生物学功能。这些神经活体通过一系列细胞色素P450酶从胆固醇中合成,其中P450羟化酶的构件是细胞色素P450-7B1(CYP7B1),催化形成7α-羟基化神经活体,7α-羟乙烯醇酮(7α-OH-PREG)和7α-羟基羟基酮(7α-OH-DHEA)。在这里,我们在空间学习任务之后展示了小鼠海马中这些神经硬化的发生。 CYP7B1缺陷近期内存大多不受影响,远程空间记忆受损。在CYP7B1缺陷小鼠中降低了海马树突脊柱密度,并且训练不再增加。此外,7α-OH-PREG和7α-OH-DHEA的混合物的慢性脑内施用施用在CYP7B1缺陷小鼠中拯救了劣化的远程内存性能。得出结论是,7α-羟基化的神经活体需要用于长期维持空间记忆,我们建议这些神经活体可能诱导突触重塑以保持海马功能。

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