首页> 美国卫生研究院文献>Frontiers in Neuroscience >High Content Analysis of Hippocampal Neuron-Astrocyte Co-cultures Shows a Positive Effect of Fortasyn Connect on Neuronal Survival and Postsynaptic Maturation
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High Content Analysis of Hippocampal Neuron-Astrocyte Co-cultures Shows a Positive Effect of Fortasyn Connect on Neuronal Survival and Postsynaptic Maturation

机译:海马神经元-星形胶质细胞共培养物的高含量分析显示Fortasyn Connect对神经元存活和突触后成熟有积极作用

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摘要

Neuronal and synaptic membranes are composed of a phospholipid bilayer. Supplementation with dietary precursors for phospholipid synthesis –docosahexaenoic acid (DHA), uridine and choline– has been shown to increase neurite outgrowth and synaptogenesis both in vivo and in vitro. A role for multi-nutrient intervention with specific precursors and cofactors has recently emerged in early Alzheimer's disease, which is characterized by decreased synapse numbers in the hippocampus. Moreover, the medical food Souvenaid, containing the specific nutrient combination Fortasyn Connect (FC), improves memory performance in early Alzheimer's disease patients, possibly via maintaining brain connectivity. This suggests an effect of FC on synapses, but the underlying cellular mechanism is not fully understood. Therefore, we investigated the effect of FC (consisting of DHA, eicosapentaenoic acid (EPA), uridine, choline, phospholipids, folic acid, vitamins B12, B6, C and E, and selenium), on synaptogenesis by supplementing it to primary neuron-astrocyte co-cultures, a cellular model that mimics metabolic dependencies in the brain. We measured neuronal developmental processes using high content screening in an automated manner, including neuronal survival, neurite morphology, as well as the formation and maturation of synapses. Here, we show that FC supplementation resulted in increased numbers of neurons without affecting astrocyte number. Furthermore, FC increased postsynaptic PSD95 levels in both immature and mature synapses. These findings suggest that supplementation with FC to neuron-astrocyte co-cultures increased both neuronal survival and the maturation of postsynaptic terminals, which might aid the functional interpretation of FC-based intervention strategies in neurological diseases characterized by neuronal loss and impaired synaptic functioning.
机译:神经元和突触膜由磷脂双层构成。补充膳食中的磷脂合成前体-二十二碳六烯酸(DHA),尿苷和胆碱-在体内和体外均可增加神经突的长出和突触形成。最近在早老性阿尔茨海默氏病中出现了采用特定前体和辅助因子进行多种营养干预的作用,该疾病的特征是海马中的突触数量减少。此外,包含特定营养组合Fortasyn Connect(FC)的医用食品Souvenaid可能通过维持脑部连通性来改善早期阿尔茨海默氏病患者的记忆力。这暗示了FC对突触的作用,但是尚未完全理解潜在的细胞机制。因此,我们研究了FC(由DHA,二十碳五烯酸(EPA),尿苷,胆碱,磷脂,叶酸,维生素B12,B6,C和E和硒组成)对突触形成的影响,方法是将其补充至原代神经元。星形胶质细胞共培养物,一种模拟大脑中新陈代谢依赖性的细胞模型。我们以自动化的方式使用高内涵筛选来测量神经元发育过程,包括神经元存活,神经突形态以及突触的形成和成熟。在这里,我们显示FC补充导致增加的神经元数量而不影响星形胶质细胞的数量。此外,FC增加未成熟和成熟突触中突触后PSD95水平。这些发现表明,在神经元-星形胶质细胞共培养物中添加FC可增加神经元存活和突触后末端的成熟,这可能有助于对以神经元丧失和突触功能受损为特征的神经疾病中基于FC的干预策略进行功能性解释。

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