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Fluoxetine Administration in Juvenile Monkeys: Implications for Pharmacotherapy in Children

机译:氟西汀在幼猴中的使用:对儿童药物治疗的意义。

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摘要

Fluoxetine therapy has been approved for children with major depressive disorder and obsessive compulsive disorder for over 14 years and has expanded to other childhood behavior disorders. As use increases, more detail on fluoxetine effects during juvenile brain development can help maintain safe and effective use of this therapy. Here, a narrative review is provided of previously published findings from a large nonhuman primate project. Fluoxetine was administered to juvenile male rhesus monkeys for an extended period (2 years) prior to puberty. Compared to controls, treated monkeys showed sleep disruption, facilitated social interaction, greater impulsivity, and impaired sustained attention during treatment. No effects on growth were seen. Metabolomics assays characterized a distinctive response to fluoxetine and demonstrated individual differences that were related to the impulsivity measure. Fluoxetine interactions with monoamine oxidase A polymorphisms that influenced behavior and metabolomics markers were an important, previously unrecognized finding of our studies. After treatment was discontinued, some behavioral effects persisted, but short-term memory and cognitive flexibility testing did not show drug effects. This detailed experimental work can contribute to clinical research and continued safe and effective fluoxetine pharmacotherapy in children.
机译:氟西汀治疗已被批准用于患有重度抑郁症和强迫症的儿童超过14年,并已扩展到其他儿童行为障碍。随着使用量的增加,关于氟西汀在青少年大脑发育过程中作用的更多细节可以帮助维持该疗法的安全有效使用。在这里,对大型非人类灵长类动物项目先前发表的发现进行叙述性评论。在青春期之前,将氟西汀长期施用于幼年的恒河猴(2年)。与对照组相比,经过治疗的猴子表现出睡眠中断,社交互动便利,冲动性增强以及治疗期间持续注意力受损的情况。没有观察到对生长的影响。代谢组学分析表征了对氟西汀的独特反应,并证明了与冲动性测量相关的个体差异。氟西汀与单胺氧化酶的相互作用A多态性影响行为和代谢组学标记是我们研究中一个重要的,以前未被发现的发现。停药后,一些行为影响持续存在,但短期记忆和认知柔韧性测试未显示药物作用。这项详尽的实验工作可有助于临床研究,并继续为儿童提供安全有效的氟西汀药物治疗。

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