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Motherhood mitigates aging-related decrements in learning and memory and positively affects brain aging in the rat.

机译:孕产减轻了与衰老有关的学习和记忆减退,并积极影响了大鼠的大脑衰老。

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The current work examined spatial learning and memory (i.e., latencies to find a baited food well) in age-matched nulliparous, primiparous and multiparous (NULL, PRIM and MULT, zero, one or two pregnancies and lactations, respectively). We tested at 6, 12, 18 and 24 months of age in a dry land version of the Morris water maze (Main task), and at 12, 18 and 24 months in the same task in which the original location of the baited well was changed (Reversal task). We show that PRIM/MULT rats, compared to the age-matched NULL females, learned the spatial tasks significantly better and exhibited attenuated memory decline, up to 24 months of age. Furthermore, at the conclusion of behavioral testing, we investigated levels of these animals' hippocampal (CA1 and dentate gyrus) immunoreactive amyloid precursor protein (APP), a marker of neurodegeneration and age-related cognitive loss. MULTs had significantly reduced APP in both CA1 and DG, relative to PRIMs and NULLs, and PRIMs had a trend (p<0.06) toward a reduction in APP compared to NULLs in DG. Further, level of APP was negatively correlated with performance in the two tasks (viz., more APP, worse maze performance). Reproduction, therefore, with its attendant natural endocrine and postpartum sensory experiences, may facilitate lifelong learning and memory, and may mitigate markers of neural aging, in the rat. Combining natural hormonal exposure with subsequent substantial experience with stimuli from the offspring may preserve the aged parous female brain relative to that of NULL females.
机译:当前的工作检查了年龄匹配的未产,初产和多胎(NULL,PRIM和MULT,分别为零,一两个怀孕和哺乳期)的空间学习和记忆能力(即寻找诱饵食物的潜伏期)。我们在旱地版本的莫里斯水迷宫中测试了6、12、18和24个月大(主要任务),并在相同的任务中测试了12、18和24个月,其中诱饵井的原始位置是已更改(冲销任务)。我们显示,与年龄相匹配的NULL雌性相比,PRIM / MULT大鼠学习的空间任务明显更好,并表现出减弱的记忆力下降,直至24个月大。此外,在行为测试结束时,我们调查了这些动物海马(CA1和齿状回)免疫反应性淀粉样前体蛋白(APP)的水平,这是神经退行性变和年龄相关性认知丧失的标志。相对于PRIM和NULL,MULTs在CA1和DG中均显着降低了APP,与DG中的NULL相比,PRIM具有降低APP的趋势(p <0.06)。此外,APP的水平与两项任务的性能呈负相关(即,APP越多,迷宫性能越差)。因此,繁殖及其伴随的自然内分泌和产后感觉经验,可以促进大鼠的终身学习和记忆,并可以减轻神经衰老的标志。将自然激素暴露与随后对后代的大量刺激相结合,可以相对于NULL雌性保留老年的雌性雌性大脑。

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