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ω-3 脂肪酸二十二碳六烯酸促进突触连接和皮层成熟。

Synaptic Connectivity and Cortical Maturation Are Promoted by the ω-3 Fatty Acid Docosahexaenoic Acid.

机构信息

Department of Neuroscience, Tufts University School of Medicine, Boston, MA, USA.

NeuroProof GmbH, Friedrich Barnewitz-Str. 4, Rostock, Germany.

出版信息

Cereb Cortex. 2020 Jan 10;30(1):226-240. doi: 10.1093/cercor/bhz083.

Abstract

Brain development is likely impacted by micronutrients. This is supported by the effects of the ω-3 fatty acid docosahexaenoic acid (DHA) during early neuronal differentiation, when it increases neurite growth. Aiming to delineate DHA roles in postnatal stages, we selected the visual cortex due to its stereotypic maturation. Immunohistochemistry showed that young mice that received dietary DHA from birth exhibited more abundant presynaptic and postsynaptic specializations. DHA also increased density and size of synapses in a dose-dependent manner in cultured neurons. In addition, dendritic arbors of neurons treated with DHA were more complex. In agreement with improved connectivity, DHA enhanced physiological parameters of network maturation in vitro, including bursting strength and oscillatory behavior. Aiming to analyze functional maturation of the cortex, we performed in vivo electrophysiological recordings from awake mice to measure responses to patterned visual inputs. Dietary DHA robustly promoted the developmental increase in visual acuity, without altering light sensitivity. The visual acuity of DHA-supplemented animals continued to improve even after their cortex had matured and DHA abolished the acuity plateau. Our findings show that the ω-3 fatty acid DHA promotes synaptic connectivity and cortical processing. These results provide evidence that micronutrients can support the maturation of neuronal networks.

摘要

大脑发育可能受到微量营养素的影响。ω-3 脂肪酸二十二碳六烯酸 (DHA) 在早期神经元分化过程中增加神经突生长的作用支持了这一点。为了描绘 DHA 在出生后阶段的作用,我们选择了视觉皮层,因为它具有典型的成熟过程。免疫组织化学显示,从出生起就接受膳食 DHA 的幼鼠表现出更丰富的突触前和突触后特化。DHA 还以剂量依赖的方式增加培养神经元中突触的密度和大小。此外,用 DHA 处理的神经元的树突枝更加复杂。与增强的连接性一致,DHA 增强了体外网络成熟的生理参数,包括爆发强度和振荡行为。为了分析皮层的功能成熟,我们从清醒的小鼠中进行了体内电生理记录,以测量对模式化视觉输入的反应。膳食 DHA 有力地促进了视觉锐度的发育性增加,而不改变光敏感性。补充 DHA 的动物的视力甚至在皮层成熟后仍继续提高,并且 DHA 消除了视力平台期。我们的发现表明,ω-3 脂肪酸 DHA 促进了突触连接和皮层处理。这些结果提供了证据,证明微量营养素可以支持神经网络的成熟。

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