首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Chronic mild corticosterone exposure during adolescence enhances behaviors and upregulates neuroplasticity-related proteins in rat hippocampus
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Chronic mild corticosterone exposure during adolescence enhances behaviors and upregulates neuroplasticity-related proteins in rat hippocampus

机译:青春期期间的慢性温和皮质酮暴露在大鼠海马中增强行为和上调神经塑性相关蛋白质

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Adolescence is a critical period with ongoing maturational processes in stress-sensitive systems. It remains unknown how adolescent individuals would be affected by chronic exposure to corticosterone (the major stress hormone in rodents, CORT) at the doses that are usually not detrimental in adults. In this study, male Sprague-Dawley rats were injected with CORT (5 mg/kg) or vehicle for 21 days during adolescence (postnatal day (PND) 29-49) or adulthood (PND 71-91) and then subjected to behavioral testing or sacrifice for neurobiological analyses. Shortly after treatment cessation, different from CORT-treated adults showing increased anxiety-like behaviors, CORT-treated adolescents exhibited enhanced prepulse inhibition and spatial learning. They also showed increased expression of hippocampal neuroplasticity-related proteins, including BDNF, nectin3, and AMPA receptor subunits. These effects became undetectable after a four-week washout period when CORT-treated adolescents exhibited improved reversal learning. Together, these findings demonstrate that chronic CORT exposure at the dose of 5 mg/kg endows adolescent individuals with enhanced cognitive capacities, possibly supported by increased hippocampal neuroplasticity. This study also highlights mild elevation of CORT levels during adolescence as a potential approach of promoting adaptive behaviors.
机译:青春期是持续持续的良好过程在应力敏感系统中的关键时期。它仍然未知青少年个体如何受到慢性暴露于皮质酮(啮齿动物的主要压力激素,皮质)在成年人中通常不损害的剂量的影响。在这项研究中,在青春期(产后期(PND)29-49)或成年(PND 71-91)期间,将雄性Sprague-Dawley大鼠注射成皮质(5mg / kg)或载体21天,然后进行行为测试或牺牲神经生物学分析。治疗后不久,与皮质治疗的成年人不同,表现出类似的焦虑的行为,皮质处理的青少年表现出增强的预布抑制和空间学习。他们还显示出海马神经塑性相关蛋白表达的增加,包括BDNF,Nectin3和AMPA受体亚基。当皮质处理的青少年表现出改善的逆转学习后,在四周的洗涤期后,这些效果变得无法察觉。这些研究结果表明,5mg / kg剂量的慢性皮质暴露赋予青少年个体具有增强的认知能力,可能通过增加的海马神经塑性。本研究还突出了青春期期间的皮质水滴层的温和升高,作为促进自适应行为的潜在方法。

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