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青春期睾酮与年轻男性大脑皮质结构。

Pubertal Testosterone and the Structure of the Cerebral Cortex in Young Men.

机构信息

Department of Psychology, University of Toronto, Toronto, ON M5S3G3, Canada.

Institute of Medical Sciences, University of Toronto, Toronto, ON M5S3G3, Canada.

出版信息

Cereb Cortex. 2021 May 10;31(6):2812-2821. doi: 10.1093/cercor/bhaa389.

Abstract

Adolescence is a period of brain maturation that may involve a second wave of organizational effects of sex steroids on the brain. Rodent studies suggest that, overall, organizational effects of gonadal steroid hormones decrease from the prenatal/perinatal period to adulthood. Here we used multimodal magnetic resonance imaging to investigate whether 1) testosterone exposure during adolescence (9-17 years) correlates with the structure of cerebral cortex in young men (n = 216, 19 years of age); 2) this relationship is modulated by the timing of testosterone surge during puberty. Our results showed that pubertal testosterone correlates with structural properties of the cerebral cortex, as captured by principal component analysis of T1 and T2 relaxation times, myelin water fraction, magnetization transfer ratio, fractional anisotropy and mean diffusivity. Many of the correlations between pubertal testosterone and the cortical structure were stronger in individuals with earlier (vs. later) testosterone surge. We also demonstrated that the strength of the relationship between pubertal testosterone and cortical structure across the cerebral cortex varies as a function of inter-regional profiles of gene expression specific to dendrites, axonal cytoskeleton, and myelin. This finding suggests that the cellular substrate underlying the relationships between pubertal testosterone and cerebral cortex involves both dendritic arbor and axon.

摘要

青春期是大脑成熟的一个时期,这一时期可能会经历第二波性激素对大脑的组织效应。啮齿动物研究表明,总的来说,性腺类固醇激素的组织效应从产前/围产期到成年期逐渐减少。在这里,我们使用多模态磁共振成像来研究青春期(9-17 岁)期间的睾酮暴露是否与年轻男性(n=216,19 岁)大脑皮质的结构相关;2)青春期睾酮激增的时间是否会调节这种关系。我们的研究结果表明,青春期的睾酮与大脑皮质的结构特性有关,这可以通过 T1 和 T2 弛豫时间、髓鞘水分数、磁化传递率、各向异性分数和平均扩散系数的主成分分析来捕捉。在青春期睾酮水平较高的个体中,青春期睾酮与皮质结构之间的许多相关性更强。我们还证明,青春期睾酮与皮质结构之间的关系强度在大脑皮质中作为特定于树突、轴突细胞骨架和髓鞘的区域间基因表达图谱的函数而变化。这一发现表明,青春期睾酮与大脑皮质之间关系的细胞基础既涉及树突,也涉及轴突。

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