Beneficial effects of physical exercise and an orally active mGluR2/3 antagonist pro-drug on neurogenesis and behavior in an Alzheimer's amyloidosis model

Georgina S. Perez Garcia, Mesude Bicak, Jacqueline Buros, Jean-Vianney Haure-Mirande, G. Perez, Alena Otero-Pagan, M. A. Gama Sosa, R. De Gasperi, Mary Sano, Fred H. Gage, Carrolee Barlow, Joel T. Dudley, B. Glicksberg, Yanzhuang Wang, B. Readhead, M. Ehrlich, G. Elder, Samuel Gandy
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Abstract

Modulation of physical activity represents an important intervention that may delay, slow, or prevent mild cognitive impairment (MCI) or dementia due to Alzheimer's disease (AD). One mechanism proposed to underlie the beneficial effect of physical exercise (PE) involves the apparent stimulation of adult hippocampal neurogenesis (AHN). BCI-838 is a pro-drug whose active metabolite BCI-632 is a negative allosteric modulator at group II metabotropic glutamate receptors (mGluR2/3). We previously demonstrated that administration of BCI-838 to a mouse model of brain accumulation of oligomeric AβE22Q (APPE693Q = “Dutch APP”) reduced learning behavior impairment and anxiety, both of which are associated with the phenotype of Dutch APP mice.3-month-old mice were administered BCI-838 and/or physical exercise for 1 month and then tested in novel object recognition, neurogenesis, and RNAseq.Here we show that (i) administration of BCI-838 and a combination of BCI-838 and PE enhanced AHN in a 4-month old mouse model of AD amyloid pathology (APPKM670/671NL/PSEN1Δexon9= APP/PS1), (ii) administration of BCI-838 alone or with PE led to stimulation of AHN and improvement in recognition memory, (iii) the hippocampal dentate gyrus transcriptome of APP/PS1 mice following BCI-838 treatment showed up-regulation of brain-derived neurotrophic factor (BDNF), PIK3C2A of the PI3K-mTOR pathway, and metabotropic glutamate receptors, and down-regulation of EIF5A involved in modulation of mTOR activity by ketamine, and (iv) validation by qPCR of an association between increased BDNF levels and BCI-838 treatment.Our study points to BCI-838 as a safe and orally active compound capable of mimicking the beneficial effect of PE on AHN and recognition memory in a mouse model of AD amyloid pathology.
体育锻炼和口服活性mGluR2/3拮抗剂前药对阿尔茨海默病淀粉样变模型神经发生和行为的有益影响
调节身体活动是一种重要的干预措施,可以延缓、减缓或预防阿尔茨海默病(AD)引起的轻度认知障碍(MCI)或痴呆。体育锻炼(PE)的有益作用的一种机制涉及对成人海马神经发生(AHN)的明显刺激。BCI-838是一种前药,其活性代谢物BCI-632是II组代谢性谷氨酸受体(mGluR2/3)的负变构调节剂。我们之前证明,BCI-838给大脑积累寡聚物a β e22q (APPE693Q =“荷兰APP”)的小鼠模型,可以减少学习行为障碍和焦虑,这两者都与荷兰APP小鼠的表型有关。3个月大的小鼠给予BCI-838和/或体育锻炼1个月,然后测试新物体识别、神经发生和rna - eq。我们发现(i) BCI-838和BCI-838与PE联合使用可增强4个月大AD淀粉样蛋白病理模型小鼠的AHN (APPKM670/671NL/PSEN1Δexon9= APP/PS1), (ii) BCI-838单独或与PE联合使用可刺激AHN并改善识别记忆,(iii) BCI-838治疗后APP/PS1小鼠海马齿状回转录组上调脑源性神经营养因子(BDNF), PI3K-mTOR通路的PIK3C2A, PI3K-mTOR通路的PIK3C2A。和代谢性谷氨酸受体,以及参与氯胺酮调节mTOR活性的EIF5A的下调,以及(iv)通过qPCR验证BDNF水平升高与BCI-838治疗之间的关联。我们的研究指出,BCI-838是一种安全的口服活性化合物,能够模仿PE对AD淀粉样蛋白病理小鼠模型中AHN和识别记忆的有益作用。
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