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生物活性营养物质低聚乳酸和发酵大豆提取物可部分通过抗神经炎症和调节肠道微生物群来缓解小鼠的认知衰退。

Bioactive nutraceuticals oligo-lactic acid and fermented soy extract alleviate cognitive decline in mice in part anti-neuroinflammation and modulation of gut microbiota.

作者信息

Abdolmaleky Hamid M, Sheng Yin, Zhou Jin-Rong

机构信息

Nutrition/Metabolism Laboratory, Department of Surgery, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, United States.

出版信息

Front Nutr. 2023 Mar 9;10:1116278. doi: 10.3389/fnut.2023.1116278. eCollection 2023.

Abstract

INTRODUCTION

Cognition decline is associated with aging and certain diseases, such as neurodegenerative or neuropsychiatric disorders, diabetes and chronic kidney disease. Inflammation/neuroinflammation is considered an important causal factor, and experimental evidence suggests that anti-inflammatory natural compounds may effectively prevent cognitive decline. The goal of this study was to evaluate the effects of two natural bioactive agents, oligo-lactic acid (LAP) and fermented soy extract (ImmunBalance, IMB), on cognition in an adenine-induced cognitive impairment mouse model and to investigate the modulation of related biomarkers.

METHODS

Male C57 black mice were randomly assigned into the following experimental groups and received the corresponding treatments for 2 weeks before the use of adenine for model development: (1) negative control; (2) model control: injection of adenine at 50 mg/kg daily for 4 weeks; (3, 4) IMB groups: adenine injection and IMB oral gavage at 250 and 1,000 mg/kg BW, respectively; and (5) LAP group: adenine injection and LAP oral gavage at 1,000 mg/kg BW. One week after the model was developed, mice were evaluated for cognitive performances by using Y maze test, novel object recognition test, open field test, and Barnes maze tests. At the end of the experiment, brain tissues and cecum fecal samples were collected for analysis of gene expression and gut microbiota.

RESULTS

Mice treated with LAP or IMB had significantly improved spatial working memory, spatial recognition memory (LAP only), novel object recognition, and spatial learning and memory, compared with those in the model group. Gene expression analysis showed that, among a panel of cognition related genes, six of them (ELOVL2, GLUT4, Nestein, SNCA, TGFB1, and TGFB2) were significantly altered in the model group. LAP treatment significantly reversed expression levels of inflammatory/neuroinflammatory genes (SNCA, TGFB1), and IMB significantly reversed expression levels of genes related to inflammation/neuroinflammation, neurogenesis, and energy metabolism (ELOVL2, GLUT4, Nestin, TGFB1, and TGFB2). The altered microbiome was attenuated only by IMB.

DISCUSSION

In conclusion, our data showed that LAP improved cognition associated with regulating biomarkers related to neuroinflammation and energy metabolism, whereas IMB improved cognition associated with regulating biomarkers related to neuroinflammation, energy metabolism, and neurogenesis, and modulating gut microbiota. Our results suggest that LAP and IMB may improve cognitive performance in mice distinct mechanisms of action.

摘要

引言

认知能力下降与衰老及某些疾病相关,如神经退行性或神经精神性疾病、糖尿病和慢性肾病。炎症/神经炎症被认为是一个重要的致病因素,实验证据表明抗炎天然化合物可能有效预防认知能力下降。本研究的目的是评估两种天然生物活性物质,低聚乳酸(LAP)和发酵大豆提取物(免疫平衡素,IMB),对腺嘌呤诱导的认知障碍小鼠模型认知能力的影响,并研究相关生物标志物的调节作用。

方法

将雄性C57黑小鼠随机分为以下实验组,并在使用腺嘌呤建立模型前接受相应治疗2周:(1)阴性对照组;(2)模型对照组:每天注射50mg/kg腺嘌呤,共4周;(3、4)IMB组:分别以250mg/kg体重和1000mg/kg体重进行腺嘌呤注射及IMB灌胃;(5)LAP组:以1000mg/kg体重进行腺嘌呤注射及LAP灌胃。模型建立1周后,通过Y迷宫试验、新物体识别试验、旷场试验和巴恩斯迷宫试验评估小鼠的认知能力。实验结束时,收集脑组织和盲肠粪便样本,用于基因表达和肠道微生物群分析。

结果

与模型组相比,接受LAP或IMB治疗的小鼠在空间工作记忆、空间识别记忆(仅LAP)、新物体识别以及空间学习和记忆方面均有显著改善。基因表达分析表明,在一组与认知相关的基因中,模型组中有六个基因(ELOVL2、GLUT4、巢蛋白、α-突触核蛋白、转化生长因子β1和转化生长因子β2)发生了显著变化。LAP治疗显著逆转了炎症/神经炎症基因(α-突触核蛋白、转化生长因子β1)的表达水平,IMB显著逆转了与炎症/神经炎症、神经发生和能量代谢相关基因(ELOVL2、GLUT4、巢蛋白、转化生长因子β1和转化生长因子β2)的表达水平。微生物群的改变仅被IMB减弱。

讨论

总之,我们的数据表明,LAP通过调节与神经炎症和能量代谢相关的生物标志物改善认知,而IMB通过调节与神经炎症、能量代谢和神经发生相关的生物标志物以及调节肠道微生物群来改善认知。我们的结果表明,LAP和IMB可能通过不同的作用机制改善小鼠的认知表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fe1/10034322/fca6555adcd8/fnut-10-1116278-g001.jpg

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