发育期暴露于17-α-羟基己酸孕酮会干扰成年雌性大鼠的决策:多巴胺能机制的潜在作用

IF 2.5 3区 医学 Q2 BEHAVIORAL SCIENCES Hormones and Behavior Pub Date : 2024-04-25 DOI:10.1016/j.yhbeh.2024.105550
Paige L. Graney , Michael Y. Chen , Ruth I. Wood , Christine K. Wagner
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引用次数: 0

摘要

合成孕激素--17α-羟基己酸孕酮(17-OHPC)可用于有早产风险的孕妇,并有可能从母体转移给胎儿。然而,有关服用 17-OHPC 对后代行为和神经发育的潜在影响的信息却很少。在大鼠体内,新生儿暴露于 17-OHPC 会分别改变新生儿和青少年边缘前内侧前额叶皮层(mPFC)中多巴胺能纤维的分布和密度。此外,雄性大鼠在新生儿期接触 17-OHPC 会增加冲动决策延迟折现任务中的反应遗漏。由于发育期接触 17-OHPC 对雌雄大鼠的影响不同,因此有必要研究 17-OHPC 对雌性大鼠冲动决策的影响。本研究测试了发育期 17-OHPC 暴露(P1-P14)对延迟折现任务的影响,在这项任务中,雌性大鼠会在小额即时奖励和较大的延迟(0、15 30 或 45 秒)奖励之间做出选择。与对照组相比,暴露于 17-OHPC 的雌鼠会做出更多的遗漏。17-OHPC 对大额奖励偏好和反应时间均无影响,在自由选择和强迫选择试验中,遗漏的情况相似。本研究还旨在研究暴露于 17-OHPC 的雌性大鼠遗漏行为的神经机制。在进行延迟折现测试之前,给大鼠注射多巴胺转运体抑制剂哌醋甲酯(MPH)。MPH 治疗并没有减少暴露于 17-OHPC 的雌性大鼠的遗漏。相反,在最长的延迟期间,MPH 会将对照组雌性的遗漏率提高近四倍。这些结果表明,发育期暴露于 17-OHPC 会增加遗漏,但不会影响冲动或减缓决策速度。此外,遗漏可能至少部分是由多巴胺能机制调节的。
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Developmental exposure to 17-α-hydroxyprogesterone caproate disrupts decision-making in adult female rats: A potential role for a dopaminergic mechanism

The synthetic progestin, 17α-hydroxyprogesterone caproate (17-OHPC), is administered to pregnant individuals at risk for preterm birth and is likely transferred from mother to fetus. Yet, there is little information regarding the potential effects of 17-OHPC administration on behavioral and neural development in offspring. In rats, neonatal 17-OHPC exposure altered dopaminergic fiber distribution and density in the prelimbic medial prefrontal cortex (mPFC) in neonates and adolescents, respectively. Additionally, neonatal 17-OHPC exposure in male rats increased response omissions in a delay discounting task of impulsive decision-making. Because developmental 17-OHPC exposure has differential effects in males and females, investigating the effects of 17-OHPC on impulsive decision-making in female rats is necessary. The present study tested the effects of developmental 17-OHPC exposure (P1–P14) in a delay discounting task in which female rats chose between a small immediate reward and a larger delayed (0, 15 30, or 45 s) reward. 17-OHPC-exposed females made more omissions than controls. There was no effect of 17-OHPC on large reward preference nor on response time, and omissions were similar during both free- and forced-choice trials. The present study also aimed to investigate the neural mechanisms underlying omissions in 17-OHPC-exposed female rats. The dopamine transporter inhibitor, methylphenidate (MPH), was administered prior to delay discounting testing. MPH treatment did not reduce omissions in 17-OHPC-exposed females. If anything, MPH increased omissions in control females nearly fourfold during the longest delays. These results suggest that developmental 17-OHPC exposure increased omissions without affecting impulsivity or slowing decision-making. Furthermore, omissions may be regulated, at least in part, by dopaminergic mechanisms.

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来源期刊
Hormones and Behavior
Hormones and Behavior 医学-行为科学
CiteScore
6.70
自引率
8.60%
发文量
139
审稿时长
91 days
期刊介绍: Hormones and Behavior publishes original research articles, reviews and special issues concerning hormone-brain-behavior relationships, broadly defined. The journal''s scope ranges from laboratory and field studies concerning neuroendocrine as well as endocrine mechanisms controlling the development or adult expression of behavior to studies concerning the environmental control and evolutionary significance of hormone-behavior relationships. The journal welcomes studies conducted on species ranging from invertebrates to mammals, including humans.
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