Developmental neurogenetics and multimodal neuroimaging of sex differences in autism

被引:29
|
作者
Chen, Christina [1 ]
Van Horn, John Darrell [2 ,3 ]
机构
[1] Univ Southern Calif, Neurosci Grad Program, 2001 North Soto St SSB1 Room 102, Los Angeles, CA 90032 USA
[2] Univ Southern Calif, USC Mark & Mary Stevens Neuroimaging & Informat I, 2001 North Soto St SSB1 Room 102, Los Angeles, CA 90032 USA
[3] Univ Southern Calif, Lab Neuro Imaging, Keck Sch Med, 2001 North Soto St SSB1 Room 102, Los Angeles, CA 90032 USA
关键词
Sex differences; Autism; Neurogenetics; Neuroimaging; Brain development; HIGH-FUNCTIONING AUTISM; DE-NOVO MUTATIONS; SPECTRUM DISORDERS; GENDER-DIFFERENCES; MICRODELETION SYNDROME; MONOAMINE-OXIDASE; ADOLESCENT BRAIN; CORPUS-CALLOSUM; GENE-EXPRESSION; TURNER-SYNDROME;
D O I
10.1007/s11682-015-9504-3
中图分类号
R445 [影像诊断学];
学科分类号
100207 ;
摘要
Examining sex differences in the brain has been historically contentious but is nonetheless important for advancing mental health for both girls and boys. Unfortunately, females in biomedical research remain underrepresented in most mental health conditions including autism spectrum disorders (ASD), even though equal inclusion of females would improve treatment for girls and yield benefits to boys. This review examines sex differences in the relationship between neuroanatomy and neurogenetics of ASD. Recent findings reveal that girls diagnosed with ASD exhibit more intellectual and behavioral problems compared to their male counterparts, suggesting that girls may be less likely diagnosed in the absence of such problems or that they require a higher mutational load to meet the diagnostic criteria. Thus far, the female biased effect of chromosome 4, 5p15.33, 8p, 9p24.1, 11p12-13, 15q, and Xp22.3 and the male biased effect of 1p31.3, 5q12.3, 7q, 9q33.3, 11q13.4, 13q33.3, 16p11.2, 17q11-21, Xp22.33/Yp11.31, DRD1, NLGN3, MAOA, and SHANK1 deletion have been discovered in ASD. The SNPs of genes such as RYR2, UPP2, and the androgen receptor gene have been shown to have sex-biasing factors in both girls and boys diagnosed with ASD. These sex-related genetic factors may drive sex differences in the neuroanatomy of these girls and boys, including abnormal enlargement in temporal gray and white matter volumes, and atypical reduction in cerebellar gray matter volumes and corpus callosum fibers projecting to the anterior frontal cortex in ASD girls relative to boys. Such factors may also be responsible for the attenuation of brain sexual differentiation in adult men and women with ASD; however, much remains to be uncovered or replicated. Future research should leverage further the association between neuroanatomy and genetics in girls for an integrated and interdisciplinary understanding of ASD.
引用
收藏
页码:38 / 61
页数:24
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