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The effects of dietary edible bird nest supplementation on learning and memory functions of multigenerational mice

机译:膳食食用鸟巢补充对多血鼠的学习记忆功能的影响

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Introduction Edible bird nest (EBN) is a natural food product produced from edible nest swiftlet's saliva which consists of glycoproteins as one of its main components; these glycoproteins contain an abundant of sialic acid. The dietary EBN supplementation has been reported to enhance brain functions in mammals and that the bioactivities and nutritional value of EBN are important during periods of rapid brain growth particularly for preterm infant. However, the effects of EBN in maternal on multigeneration learning and memory function still remain unclear. Thus, the present study aimed to determine the effects of maternal EBN supplementation on learning and memory function of their first (F1)‐ and second (F2)‐generation mice. Methods CJ57BL/6 breeder F0 mice were fed with EBN (10?mg/kg) from different sources. After 6?weeks of diet supplementations, the F0 animals were bred to produce F1 and F2 animals. At 6?weeks of age, the F1 and F2 animals were tested for spatial recognition memory using a Y‐maze test. The sialic acid content from EBN and brain gene expression were analyzed using HPLC and PCR, respectively. Results All EBN samples contained glycoprotein with high level of sialic acid. Dietary EBN supplementation also showed an upregulation of GNE, ST8SiaIV, SLC17A5, and BDNF mRNA associated with an improvement in Y‐maze cognitive performance in both generations of animal. Qualitatively, the densities of synaptic vesicles in the presynaptic terminal were higher in the F1 and F2 animals which might derive from maternal EBN supplementation. Conclusion This study provided a solid foundation toward the growing research on nutritional intervention from dietary EBN supplementation on cognitive and neurological development in the generation of mammals.
机译:简介可食用的鸟巢(EBN)是一种由食用巢SWITLET的唾液生产的天然食品,其由糖蛋白作为其主要成分之一;这些糖蛋白含有丰富的唾液酸。据报道,膳食EBN补充剂以增强哺乳动物的大脑功能,并且EBN的生物活性和营养价值在快速脑增长期间都很重要,特别是对于早产儿。然而,EBN在母体中对多粒程学习和记忆功能的影响仍然不明确。因此,本研究旨在确定母体EBN补充对其第一(F1) - 和第二(F2)的学习功能的影响。方法将CJ57BL / 6种育种者F0小鼠从不同来源中加入EBN(10?Mg / kg)。在饮食7周后,F0动物被培养以生产F1和F2动物。在6个?几周,使用Y型迷宫测试测试F1和F2动物的空间识别记忆。使用HPLC和PCR分别分析来自EBN和脑基因表达的唾液酸含量。结果所有EBN样品含有高水平唾液酸的糖蛋白。膳食EBN补充还表明,GNE,ST8SIAIV,SLC17A5和BDNF mRNA的上调,与两种动物的Y型迷宫认知性能提高相关。定性地,F1和F2动物的突触末端突触囊泡中的突触囊泡的密度较高,这可能导出母体EBN补充。结论本研究为养殖饮食营养干预越来越多的营养干预研究,对哺乳动物产生的认知和神经发育的营养干预越来越多的核心基础。

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