大麻二酚作为神经保护剂对新生缺氧大鼠神经发育障碍的影响

IF 1.4 4区 医学 Q4 CLINICAL NEUROLOGY Brain & Development Pub Date : 2024-07-26 DOI:10.1016/j.braindev.2024.07.002
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引用次数: 0

摘要

研究目的本研究旨在探讨大麻二酚(CBD)对新生缺氧大鼠神经发育障碍的神经保护作用,特别是在没有缺血混杂影响的情况下,研究大麻二酚缓解运动和感觉障碍的潜力:新生 Sprague-Dawley 大鼠被分为四组:对照组、对照-CBD组、缺氧组和缺氧-CBD组。从出生后第 0 天开始,连续 14 天口服 CBD(50 毫克/千克)。使用新生幼鼠神经发育反射测试量表和啮齿动物神经行为严重程度修订量表评估神经发育结果。统计分析采用双向和单向方差分析,组间比较采用Tukey事后检验:结果:在指定的产后天数记录幼鼠体重,各组间无显著差异(p = 0.1834)。与缺氧组相比,对照组因缺氧导致的神经系统损伤显著,尤其是在出生后第 3 天的后肢抓握能力(p = 0.0025)、出生后第 12 天的姿势(p = 0.0073)以及出生后第 20 天的一般平衡和声音反射(分别为 p = 0.0016 和 p = 0.0068)方面。此外,与单独缺氧组相比,缺氧-CBD 组的姿势有显著改善(p = 0.0024):我们的研究结果表明,CBD 具有神经保护特性,能显著抵消新生儿缺氧对大鼠神经发育造成的损害。这项研究不仅支持了 CBD 在应对缺氧导致的神经发育挑战方面的治疗潜力,还强调了进一步研究驱动 CBD 神经保护作用的特定分子机制的必要性。进一步的研究对于探索 CBD 的临床应用及其在治疗人类神经发育疾病中的潜在作用至关重要。
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Effect of cannabidiol as a neuroprotective agent on neurodevelopmental impairment in rats with neonatal hypoxia

Objective

This study aims to investigate the neuroprotective effects of cannabidiol (CBD) on neurodevelopmental impairments in rats subjected to neonatal hypoxia, specifically examining its potential to mitigate motor and sensory deficits without the confounding effects of ischemia.

Methods

Neonatal Sprague-Dawley rats were allocated to one of four groups: Control, Control-CBD, Hypoxia, and Hypoxia-CBD. Hypoxia was induced on postnatal days 0 and 1. CBD (50 mg/kg) was administered orally for 14 days starting at postnatal day 0. Neurodevelopmental outcomes were assessed using the Neurodevelopmental Reflex Testing in Neonatal Rat Pups scale and the Revised Neurobehavioral Severity Scale for rodents. Statistical analyses were conducted using two-way and one-way ANOVA, with Tukey’s post-hoc tests for group comparisons.

Results

Pup weights were recorded on specified postnatal days, with no significant differences observed across the groups (p = 0.1834). Significant neurological impairments due to hypoxia were noted in the Control group compared to the Hypoxia group, particularly in hindlimb grasping on postnatal day 3 (p = 0.0025), posture on postnatal day 12 (p = 0.0073), and in general balance and sound reflex on postnatal day 20 (p = 0.0016 and p = 0.0068, respectively). Additionally, a statistically significant improvement in posture was observed in the Hypoxia-CBD group compared to the Hypoxia group alone (p = 0.0024).

Conclusion

Our findings indicate that CBD possesses neuroprotective properties that significantly counteract the neurodevelopmental impairments induced by neonatal hypoxia in rats. This study not only supports the therapeutic potential of CBD in managing conditions characterized by neurodevelopmental challenges due to hypoxia but also underscores the necessity for further investigation into the specific molecular mechanisms driving CBD’s neuroprotective effects. Further research is essential to explore CBD’s clinical applications and its potential role in treating human neurodevelopmental disorders.

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来源期刊
Brain & Development
Brain & Development 医学-临床神经学
CiteScore
3.60
自引率
0.00%
发文量
153
审稿时长
50 days
期刊介绍: Brain and Development (ISSN 0387-7604) is the Official Journal of the Japanese Society of Child Neurology, and is aimed to promote clinical child neurology and developmental neuroscience. The journal is devoted to publishing Review Articles, Full Length Original Papers, Case Reports and Letters to the Editor in the field of Child Neurology and related sciences. Proceedings of meetings, and professional announcements will be published at the Editor''s discretion. Letters concerning articles published in Brain and Development and other relevant issues are also welcome.
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