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关于阿巴氯芬(R-巴氯芬)治疗16p11.2缺失综合征的临床前验证

Towards Preclinical Validation of Arbaclofen (R-baclofen) Treatment for 16p11.2 Deletion Syndrome.

作者信息

Gundersen Brigitta B, O'Brien William T, Schaffler Melanie D, Schultz Maria N, Tsukahara Tatsuya, Lorenzo Sandra Martin, Nalesso Valerie, Luo Clayton Alice H, Abel Ted, Crawley Jacqueline N, Datta Sandeep Robert, Herault Yann

机构信息

Simons Foundation, New York, NY.

University of Pennsylvania, Philadelphia, PA.

出版信息

bioRxiv. 2023 Sep 14:2023.05.01.538987. doi: 10.1101/2023.05.01.538987.

Abstract

A microdeletion on human chromosome 16p11.2 is one of the most common copy number variants associated with autism spectrum disorder and other neurodevelopmental disabilities. Arbaclofen, a GABA(B) receptor agonist, is a component of racemic baclofen, which is FDA-approved for treating spasticity, and has been shown to alleviate behavioral phenotypes, including recognition memory deficits, in animal models of 16p11.2 deletion. Given the lack of reproducibility sometimes observed in mouse behavioral studies, we brought together a consortium of four laboratories to study the effects of arbaclofen on behavior in three different mouse lines with deletions in the mouse region syntenic to human 16p11.2 to test the robustness of these findings. Arbaclofen rescued cognitive deficits seen in two 16p11.2 deletion mouse lines in traditional recognition memory paradigms. Using an unsupervised machine-learning approach to analyze behavior, one lab found that arbaclofen also rescued differences in exploratory behavior in the open field in 16p11.2 deletion mice. Arbaclofen was not sedating and had modest off-target behavioral effects at the doses tested. Our studies show that arbaclofen consistently rescues behavioral phenotypes in 16p11.2 deletion mice, providing support for clinical trials of arbaclofen in humans with this deletion.

摘要

人类16号染色体p11.2区域的微缺失是与自闭症谱系障碍和其他神经发育障碍相关的最常见的拷贝数变异之一。阿巴氯芬是一种GABA(B)受体激动剂,是消旋巴氯芬的一种成分,已获美国食品药品监督管理局批准用于治疗痉挛,并且在16p11.2缺失的动物模型中已显示可缓解行为表型,包括识别记忆缺陷。鉴于有时在小鼠行为研究中观察到缺乏可重复性,我们召集了四个实验室组成的联盟,以研究阿巴氯芬对三种不同小鼠品系行为的影响,这些小鼠品系在与人类16p11.2同线性的小鼠区域存在缺失,以测试这些发现的稳健性。在传统的识别记忆范式中,阿巴氯芬挽救了两个16p11.2缺失小鼠品系中出现的认知缺陷。一个实验室使用无监督机器学习方法分析行为,发现阿巴氯芬还挽救了16p11.2缺失小鼠在旷场试验中探索行为的差异。在所测试的剂量下,阿巴氯芬没有镇静作用,且具有适度的脱靶行为效应。我们的研究表明,阿巴氯芬能持续挽救16p11.2缺失小鼠的行为表型,为在携带这种缺失的人类中进行阿巴氯芬的临床试验提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb70/10515778/9fbc758fd01b/nihpp-2023.05.01.538987v2-f0001.jpg

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