Causal influences of testosterone on brain structure change rate: A sex-stratified Mendelian randomization study

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-30 DOI:10.1016/j.jsbmb.2024.106629
Xin Lian , Yaqi Bai , Pengyang Du , Zhinan Jing , Jimi Gao , Fan Liu , Jingjing Hu , Yujia Xi
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Abstract

The impact of testosterone levels on changes in brain structure has been reported. However, it is still unclear which specific brain region could be affected. This study approached Mendelian randomization method to reveal the causal relationship between testosterone levels and the rate of longitudinal structural changes in the brain. The testosterone-related GWAS data were determined from 425,097 European participants. The GWAS data on the rate of longitudinal structural changes in the brain came from the ENIGMA consortium, which included 15,640 all-age participants from 40 longitudinal cohorts. The inverse variance weighted was considered as the main estimate, MR Egger and weighted median methods were used to supplement IVW. A positive correlation was found between total testosterone levels and bioavailable testosterone levels in women and age-independent longitudinal changes in cerebral WM and surface area. The sex hormone-binding globulin levels were found a negative correlation with age-dependent longitudinal structural changes of cortical GM in men. Additionally, we also found that the bioavailable testosterone level in males was negatively associated with the quadratic age-dependent longitudinal change rate in the globus pallidum. We also found estradiol levels and sex hormone-binding globulin levels were negatively associated with the quadratic age-dependent longitudinal change rate of total brain in men. Moreover, we found a positive correlation between total testosterone levels and linear age-dependent longitudinal changes in the hippocampus in both males and females. The testosterone levels in different genders may have varying degrees of causal effects on the structural changes of brain regions. These findings provide evidence for the influence of the brain glandular axis on brain structure, particularly during female brain development.
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睾酮对大脑结构变化率的因果影响:性别分层孟德尔随机研究
睾酮水平对大脑结构变化的影响已有报道。然而,具体哪个脑区会受到影响仍不清楚。本研究采用孟德尔随机方法揭示睾酮水平与大脑纵向结构变化率之间的因果关系。与睾酮相关的 GWAS 数据来自 425 097 名欧洲参与者。关于大脑纵向结构变化率的基因组学分析数据来自ENIGMA联盟,其中包括来自40个纵向队列的15640名全年龄段参与者。反方差加权法被认为是主要的估计方法,MR Egger法和加权中位数法被用来补充反方差加权法。研究发现,女性的总睾酮水平和生物可利用睾酮水平与大脑WM和表面积的纵向变化呈正相关,且与年龄无关。性激素结合球蛋白水平与男性皮质基因组的纵向结构变化呈负相关。此外,我们还发现男性的生物可利用睾酮水平与球状苍白球随年龄变化的二次纵向变化率呈负相关。我们还发现,雌二醇水平和性激素结合球蛋白水平与男性全脑随年龄变化的二次纵向变化率呈负相关。此外,我们还发现男性和女性的总睾酮水平与海马的线性年龄依赖性纵向变化之间呈正相关。不同性别的睾酮水平可能对大脑区域的结构变化产生不同程度的因果影响。这些发现为脑腺轴对大脑结构的影响提供了证据,尤其是在女性大脑发育过程中。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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