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红藻龙须菜及其活性成分花生四烯酸通过树突状丝状伪足促进脊柱动力学并增强海马神经元的功能性突触可塑性。

The Red Alga Gracilariopsis chorda and Its Active Constituent Arachidonic Acid Promote Spine Dynamics via Dendritic Filopodia and Potentiate Functional Synaptic Plasticity in Hippocampal Neurons.

作者信息

Mohibbullah Md, Choi Jae-Suk, Bhuiyan Mohammad Maqueshudul Haque, Haque Md Nazmul, Rahman Md Khalilur, Moon Il Soo, Hong Yong-Ki

机构信息

1 Department of Biotechnology, Pukyong National University , Busan, Korea.

2 Division of Bioindustry, Silla University , Busan, Korea.

出版信息

J Med Food. 2018 May;21(5):481-488. doi: 10.1089/jmf.2017.4026. Epub 2018 Mar 2.

DOI:10.1089/jmf.2017.4026
PMID:29498567
Abstract

Exogenous neurotrophins can induce neuronal differentiation, outgrowth, survival, and synaptic function in the central nervous system. In primary cultures of rat hippocampal neurons, an ethanol extract of the red alga Gracilariopsis chorda (GCE) and its active compound arachidonic acid (AA) significantly increased the densities of dendritic filopodia and spines, promoted the expression of presynaptic vesicle protein 2 (SV2) and postsynaptic density protein 95 (PSD-95), induced robust synaptogenesis, and increased the expression of cell division control protein 42 (CDC42) and actin-related protein 2 (ARP2), which are important for actin organization in dendritic protrusions, and facilitated presynaptic plasticity by increasing the size of the synaptic vesicle pool at presynaptic nerve terminals. In addition, oral administration of GCE and AA for 10 days, at concentrations of 1 mg/g and 2.2 μg/g body weight, respectively, significantly protected against scopolamine-induced memory impairment in mice by increasing the latency time in the passive avoidance test. These results provide strong scientific evidence that these natural products can be used as neurotrophic substances and/or dietary supplements for the prevention and treatment of memory-related neurological disorders via the reconstruction of axo-dendrites and its synapses.

摘要

外源性神经营养因子可诱导中枢神经系统中的神经元分化、生长、存活及突触功能。在大鼠海马神经元原代培养物中,红藻龙须菜乙醇提取物(GCE)及其活性化合物花生四烯酸(AA)显著增加了树突丝状伪足和棘的密度,促进了突触前囊泡蛋白2(SV2)和突触后致密蛋白95(PSD - 95)的表达,诱导了强大的突触形成,并增加了细胞分裂控制蛋白42(CDC42)和肌动蛋白相关蛋白2(ARP2)的表达,这两种蛋白对树突突起中的肌动蛋白组织很重要,还通过增加突触前神经末梢突触囊泡池的大小促进了突触前可塑性。此外,分别以1 mg/g和2.2 μg/g体重的浓度口服GCE和AA 10天,可通过增加被动回避试验中的潜伏期,显著保护小鼠免受东莨菪碱诱导的记忆损伤。这些结果提供了强有力的科学证据,表明这些天然产物可作为神经营养物质和/或膳食补充剂,通过轴突 - 树突及其突触的重建来预防和治疗与记忆相关的神经疾病。

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