Department of Biochemistry, Federal University of Santa Catarina (UFSC), Florianópolis, Brazil.
Experimental Neurology Laboratory, Graduate Program in Health Sciences, University of Southern Santa Catarina (UNESC), Criciúma, Brazil.
J Gerontol A Biol Sci Med Sci. 2021 May 22;76(6):991-995. doi: 10.1093/gerona/glaa298.
Folic acid (FA) supplementation is important during pregnancy to avoid malformations in the offspring. However, it is unknown if it can affect the offspring throughout their lives. To evaluate the offspring, female mother rats (dams) were separated into 5 groups: Four groups received the AIN-93 diet, divided into control and FA (5, 10, and 50 mg/kg), and an additional group received a FA-deficient diet, and the diet was performed during pregnancy and lactation. We evaluated the female offspring of these dams (at 2 and 18 months old). The aged offspring fed with FA-deficient diet presented habituation, spatial and aversive memory impairment and the FA maternal supplementation prevented this. The natural aging caused an increase in the TNF-α and IL-1β levels in the hippocampus from 18-month-old offspring. FA maternal supplementation was able to prevent the increase of these cytokines. IL-4 levels decreased in the prefrontal cortex from aged control rats and FA prevented it. FA deficiency decreased the levels of IL-4 in the hippocampus of the young offspring. In addition, natural aging and FA deficiency decreased brain-derived neurotrophic factor levels in the hippocampus and nerve growth factor levels in the prefrontal cortex and FA supplementation prevented it. Thus, the present study shows for the first time the effect of FA maternal supplementation on memory, cytokines, and neurotrophins in the aged offspring.
叶酸(FA)补充在怀孕期间很重要,可以避免后代畸形。然而,目前尚不清楚它是否会影响后代的一生。为了评估后代,雌性母鼠(母鼠)被分为 5 组:4 组接受 AIN-93 饮食,分为对照组和 FA(5、10 和 50mg/kg),还有一组接受 FA 缺乏饮食,饮食在怀孕期间和哺乳期进行。我们评估了这些母鼠的雌性后代(在 2 个月和 18 个月大时)。在缺乏 FA 的饮食下饲养的老年后代表现出习惯化、空间和厌恶记忆障碍,而母鼠补充 FA 则可以预防这种情况。自然衰老会导致 18 个月大的后代海马体中的 TNF-α 和 IL-1β 水平升高。FA 母鼠补充能够预防这些细胞因子的增加。衰老对照大鼠的前额叶皮质中 IL-4 水平下降,FA 可预防这种情况。FA 缺乏会降低年轻后代海马体中的 IL-4 水平。此外,自然衰老和 FA 缺乏会降低海马体中的脑源性神经营养因子水平以及前额叶皮质中的神经生长因子水平,而 FA 补充则可以预防这种情况。因此,本研究首次表明 FA 母鼠补充对老年后代的记忆、细胞因子和神经营养因子的影响。