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幼年后环境丰容对 Angelman 综合征模型小鼠的性别依赖性影响。

Sex-dependent influence of postweaning environmental enrichment in Angelman syndrome model mice.

机构信息

Department of Biology, Augustana University, 2001 S. Summit Avenue, Sioux Falls, South Dakota, USA.

出版信息

Brain Behav. 2022 Feb;12(2):e2468. doi: 10.1002/brb3.2468. Epub 2022 Jan 4.

Abstract

INTRODUCTION

Angelman syndrome (AS) is a rare neurodevelopmental disorder caused by mutation or loss of UBE3A and marked by intellectual disability, ataxia, autism-like symptoms, and other atypical behaviors. One route to treatment may lie in the role that environment plays early in postnatal life. Environmental enrichment (EE) is one manipulation that has shown therapeutic potential in preclinical models of many brain disorders, including neurodevelopmental disorders. Here, we examined whether postweaning EE can rescue behavioral phenotypes in Ube3a maternal deletion mice (AS mice), and whether any improvements are sex-dependent.

METHODS

Male and female mice (C57BL/6J Ube3a mice and wild-type (WT) littermates; ≥10 mice/group) were randomly assigned to standard housing (SH) or EE at weaning. EE had a larger footprint, a running wheel, and a variety of toys that promoted foraging, burrowing, and climbing. Following 6 weeks of EE, animals were submitted to a battery of tests that reliably elicit behavioral deficits in AS mice, including rotarod, open field, marble burying, and forced swim; weights were also monitored.

RESULTS

In male AS-EE mice, we found complete restoration of motor coordination, marble burying, and forced swim behavior to the level of WT-SH mice. We also observed a complete normalization of exploratory distance traveled in the open field, but we found no rescue of vertical behavior or center time. AS-EE mice also had weights comparable to WT-SH mice. Intriguingly, in the female AS-EE mice, we found a failure of EE to rescue the same behavioral deficits relative to female WT-SH mice.

CONCLUSIONS

Environmental enrichment is an effective route to correcting the most penetrant phenotypes in male AS mice but not female AS mice. This finding has important implications for the translatability of early behavioral intervention for AS patients, most importantly the potential dependency of treatment response on sex.

摘要

简介

天使综合征(AS)是一种由 UBE3A 突变或缺失引起的罕见神经发育障碍,其特征为智力障碍、共济失调、类自闭症症状和其他非典型行为。治疗方法之一可能在于出生后早期环境的作用。环境丰富(EE)是一种在许多脑疾病的临床前模型中显示出治疗潜力的操作,包括神经发育障碍。在这里,我们研究了断奶后 EE 是否可以挽救 Ube3a 母系缺失小鼠(AS 小鼠)的行为表型,以及任何改善是否具有性别依赖性。

方法

雄性和雌性小鼠(C57BL/6J Ube3a 小鼠和野生型(WT)同窝仔;≥10 只/组)在断奶时随机分配到标准饲养(SH)或 EE。EE 有更大的足迹、一个跑步轮和各种玩具,以促进觅食、挖掘和攀爬。在进行 6 周的 EE 后,动物被进行一系列测试,这些测试可靠地诱发 AS 小鼠的行为缺陷,包括旋转棒、旷场、埋珠和强迫游泳;同时还监测体重。

结果

在雄性 AS-EE 小鼠中,我们发现运动协调、埋珠和强迫游泳行为完全恢复到 WT-SH 小鼠的水平。我们还观察到旷场中探索距离的完全正常化,但未发现垂直行为或中心时间的恢复。AS-EE 小鼠的体重也与 WT-SH 小鼠相当。有趣的是,在雌性 AS-EE 小鼠中,我们发现 EE 未能挽救相对于雌性 WT-SH 小鼠的相同行为缺陷。

结论

环境丰富是纠正雄性 AS 小鼠最明显表型的有效途径,但不是雌性 AS 小鼠。这一发现对 AS 患者早期行为干预的可转化性具有重要意义,最重要的是,治疗反应对性别的潜在依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93a2/8865162/eddcf37729e9/BRB3-12-e2468-g007.jpg

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