Piglet Nutrition and Cognition Laboratory, Department of Animal Sciences, University of Illinois, Urbana, IL 61801, USA.
Neuroscience Program, University of Illinois, Urbana, IL 61801, USA.
Nutrients. 2020 Jul 17;12(7):2131. doi: 10.3390/nu12072131.
Mounting evidence suggests that dietary oligosaccharides promote brain development. This study assessed the capacity of oligofructose (OF) alone or in combination with 2'-fucosyllactose (2'-FL) to alter recognition memory, structural brain development, and hippocampal gene expression. Beginning on postnatal day (PND) 2, male pigs received one of three milk replacers formulated to contain OF, OF + 2'-FL, or no oligosaccharides (CON). Pigs were tested on the novel object recognition task using delays of 1 or 48 h at PND 22. At PND 32-33, magnetic resonance imaging (MRI) procedures were used to assess structural brain development and hippocampal tissue was collected for analysis of mRNA expression. Pigs that consumed the OF diet demonstrated increased recognition memory after a 1 h delay, whereas those consuming diets containing OF + 2'-FL displayed increased recognition memory after a 48 h delay. Pigs fed OF or OF + 2'-FL exhibited a larger relative volume of the olfactory bulbs compared with CON pigs. Provision of OF or OF + 2'-FL altered gene expression related to dopaminergic, GABAergic, cholinergic, cell adhesion, and chromatin remodeling processes. Collectively, these data indicate that dietary OF and OF + 2'-FL differentially improve cognitive performance and affect olfactory bulb structural development and hippocampal gene expression.
越来越多的证据表明,饮食中的低聚糖能促进大脑发育。本研究评估了低聚果糖(OF)单独或与 2'-岩藻糖基乳糖(2'-FL)联合使用对改变识别记忆、大脑结构发育和海马基因表达的能力。从出生后第 2 天(PND)开始,雄性仔猪接受三种配方的代乳料,分别含有 OF、OF+2'-FL 或不含低聚糖(CON)。在 PND 22 时,仔猪通过 1 或 48 小时的延迟进行新物体识别任务测试。在 PND 32-33 时,使用磁共振成像(MRI)程序评估大脑结构发育,并收集海马组织以分析 mRNA 表达。食用 OF 饮食的仔猪在 1 小时延迟后表现出增强的识别记忆,而食用含有 OF+2'-FL 的饮食的仔猪在 48 小时延迟后表现出增强的识别记忆。与 CON 仔猪相比,喂食 OF 或 OF+2'-FL 的仔猪嗅球的相对体积更大。提供 OF 或 OF+2'-FL 改变了与多巴胺能、GABA 能、胆碱能、细胞黏附和染色质重塑过程相关的基因表达。总的来说,这些数据表明,饮食中的 OF 和 OF+2'-FL 可改善认知表现,影响嗅球结构发育和海马基因表达。