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Altered gene expression in hippocampus and depressive-like behavior in young adult female mice by early protein malnutrition

机译:早期蛋白质营养不良导致成年雌性小鼠海马基因表达改变和抑郁样行为

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Perinatal development represents a critical period in the life of an individual. A common cause of poor development is that which comes from undernutrition or malnutrition. In particular, protein deprivation during development has been shown to have deep deleterious effects on brain's growth and plasticity. Early-life stress has also been linked with an increased risk to develop different psychopathologies later in life. We have previously shown that perinatal protein malnutrition in mice leads to the appearance of anxiety-related behaviors in the adulthood. We also found evidence that the female offspring was more susceptible to the development of depression-related behaviors. In the present work, we further investigated this behavior together with its molecular bases. We focused our study on the hippocampus, as it is a structure involved in coping with stressful situations. We found an increase in immobility time in the forced swimming test in perinatally malnourished females, and an alteration in the expression of genes related with neuroplasticity, early growth response 1, calcineurin and c-fos. We also found that perinatal malnutrition causes a reduction in the number of neurons in the hippocampus. This reduction, together with altered gene expression, could be related to the increment in immobility time observed in the forced swimming test.
机译:围产期发育代表着个体生命中的关键时期。发育不良的一个常见原因是营养不良或营养不良。特别是,蛋白质在发育过程中的剥夺已被证明对大脑的生长和可塑性具有深远的有害影响。生命早期的压力也与生命后期发展出不同精神病理学的风险增加有关。先前我们已经表明,小鼠的围产期蛋白质营养不良会导致成年后出现焦虑相关行为。我们还发现有证据表明雌性后代更容易患上与抑郁相关的行为。在目前的工作中,我们进一步研究了这种行为及其分子基础。我们将研究重点放在海马上,因为它是应对压力情况的一种结构。我们发现围产期营养不良的女性在强迫游泳试验中不动时间的增加,以及与神经可塑性,早期生长反应1,钙调神经磷酸酶和c-fos相关的基因表达的改变。我们还发现围产期营养不良会导致海马神经元数量减少。这种减少以及基因表达的改变可能与在强迫游泳试验中观察到的不动时间的增加有关。

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