Natural antioxidant formula ameliorates lipopolysaccharide-induced impairment of hippocampal neurogenesis and contextual fear memory through suppression of neuroinflammation in rats

IF 2.7 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Wen Zeng , Kazumi Takashima , Qian Tang , Xinyu Zou , Ryota Ojiro , Shunsuke Ozawa , Meilan Jin , Yujiro Ando , Toshinori Yoshida , Makoto Shibutani
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引用次数: 0

Abstract

This study investigated the ameliorating effects of a natural antioxidant formula (NAF) consisting of Ginkgo biloba leaf extract, docosahexaenoic acid/eicosapentaenoic acid, ferulic acid, flaxseed oil, vitamin E, and vitamin B12 on a lipopolysaccharide (LPS)-induced cognitive dysfunction model in rats. Six-week-old rats received a diet containing 0.5% (w/w) NAF for 38 days from Day 1, and LPS (1 mg/kg body weight) was administered intraperitoneally once daily on Days 8 and 10. On Day 11, LPS alone increased interleukin-1β and tumor necrosis factor-α in the hippocampus and cerebral cortex and the numbers of M1-type microglia/macrophages and GFAP+ reactive astrocytes in the hilus of the hippocampal dentate gyrus. NAF treatment decreased brain proinflammatory cytokine levels and increased the number of M2-type microglia/macrophages. During Days 34–38, LPS alone impaired fear memory acquisition and the extinction learning process, and NAF facilitated fear extinction learning. On Day 38, LPS alone decreased the number of type-3 neural progenitor cells in the hippocampal neurogenic niche, and NAF restored the number of type-3 neural progenitor cells and increased the numbers of both immature granule cells in the neurogenic niche and reelin+ hilar interneurons. Thus, NAF exhibited anti-inflammatory effects and ameliorated LPS-induced adverse effects on hippocampal neurogenesis and fear memory learning, possibly through amplification of reelin signaling by hilar interneurons. These results suggest that neuroinflammation is a key factor in the development of LPS-induced impairment of fear memory learning, and supplementation with NAF in the present study helped to prevent hippocampal neurogenesis and disruptive neurobehaviors caused by neuroinflammation.

天然抗氧化配方通过抑制神经炎症改善脂多糖诱导的大鼠海马神经发生和情境恐惧记忆损伤
研究了由银杏叶提取物、二十二碳六烯酸/二十碳五烯酸、阿威酸、亚麻籽油、维生素E和维生素B12组成的天然抗氧化配方(NAF)对脂多糖(LPS)诱导的大鼠认知功能障碍模型的改善作用。6周龄大鼠从第1天开始饲喂含0.5% NAF (w/w)的日粮38 d,第8天和第10天每天腹腔注射LPS (1 mg/kg体重)1次。在第11天,LPS单独增加海马和大脑皮层的白细胞介素-1β和肿瘤坏死因子-α以及海马齿状回门m1型小胶质细胞/巨噬细胞和GFAP+反应性星形胶质细胞的数量。NAF治疗降低脑促炎细胞因子水平,增加m2型小胶质细胞/巨噬细胞数量。在第34 ~ 38天,LPS对大鼠的恐惧记忆习得和消退学习过程有抑制作用,NAF对大鼠的恐惧消退学习有促进作用。第38天,LPS降低海马神经源性小生境中3型神经祖细胞的数量,NAF恢复了海马神经源性小生境中3型神经祖细胞的数量,增加了海马神经源性小生境中未成熟颗粒细胞和reelin+ hilar中间神经元的数量。因此,NAF表现出抗炎作用,并改善了lps诱导的海马神经发生和恐惧记忆学习的不良反应,可能是通过肝门中间神经元放大reelin信号。这些结果表明,神经炎症是lps诱导的恐惧记忆学习障碍发展的关键因素,本研究中补充NAF有助于预防神经炎症引起的海马神经发生和破坏性神经行为。
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来源期刊
Journal of chemical neuroanatomy
Journal of chemical neuroanatomy 医学-神经科学
CiteScore
4.50
自引率
3.60%
发文量
87
审稿时长
62 days
期刊介绍: The Journal of Chemical Neuroanatomy publishes scientific reports relating the functional and biochemical aspects of the nervous system with its microanatomical organization. The scope of the journal concentrates on reports which combine microanatomical, biochemical, pharmacological and behavioural approaches. Papers should offer original data correlating the morphology of the nervous system (the brain and spinal cord in particular) with its biochemistry. The Journal of Chemical Neuroanatomy is particularly interested in publishing important studies performed with up-to-date methodology utilizing sensitive chemical microassays, hybridoma technology, immunocytochemistry, in situ hybridization and receptor radioautography, to name a few examples. The Journal of Chemical Neuroanatomy is the natural vehicle for integrated studies utilizing these approaches. The articles will be selected by the editorial board and invited reviewers on the basis of their excellence and potential contribution to this field of neurosciences. Both in vivo and in vitro integrated studies in chemical neuroanatomy are appropriate subjects of interest to the journal. These studies should relate only to vertebrate species with particular emphasis on the mammalian and primate nervous systems.
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