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The impact of a CACNA1C gene polymorphism on learning and hippocampal formation in healthy individuals: A diffusion tensor imaging study

机译:CACNA1C基因多态性对健康个体学习和海马结构的影响:扩散张量成像研究

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Background: Genome-wide association studies have identified the CACNA1C single nucleotide polymorphism (SNP) rs1006737 as one of the most consistent genetic findings as susceptibility locus for major psychiatric disorders. Furthermore, animal and genetic imaging studies have reported strong functional evidence for the association of CACNA1C with learning, memory, neural plasticity, and its association with the hippocampal formation. In the present study we investigated the impact of the CACNA1C SNP rs1006737 on the fractional anisotropy (FA) in the hippocampal formation as well as on verbal learning and memory in healthy individuals. Methods: 118 healthy individuals (72 males, 46 females, age 18-56. years) initially underwent diffusion tensor imaging (DTI), 100 of them were included in the final analysis. We used Tract-Based Spatial Statistics (TBSS) to examine the impact of the CACNA1C SNP rs1006737 on the hippocampal formation as predefined region of interest (ROI). Furthermore, all participants completed the Verbal Learning and Memory Test (VLMT). Results: In the VLMT genotype was significantly associated with learning performance. Bonferroni corrected post-hoc tests indicated a diminished performance at the beginning of the learning curve in risk allele carriers compared to non-risk allele carriers. The TBSS ROI analysis revealed one cluster of reduced FA in risk allele carriers compared to non-risk allele carriers located in the right hippocampal formation. Moreover, an association between the initial learning performance and FA values was found. Discussion: These findings demonstrate that genetic variation in the CACNA1C SNP rs1006737 is associated with FA reduction in the hippocampal formation as well as with differences in learning performance in healthy individuals.
机译:背景:全基因组关联研究已确定CACNA1C单核苷酸多态性(SNP)rs1006737是最重要的遗传发现之一,是主要精神疾病的易感性位点。此外,动物和遗传影像学研究报告了强有力的功能证据,表明CACNA1C与学习,记忆,神经可塑性及其与海马结构的关系。在本研究中,我们研究了CACNA1C SNP rs1006737对健康个体海马结构中的分数各向异性(FA)以及言语学习和记忆的影响。方法:最初接受扩散张量成像(DTI)的118例健康个体(男72例,女46例,年龄18-56。岁),其中100例被纳入最终分析。我们使用基于领域的空间统计(TBSS)来检查CACNA1C SNP rs1006737对作为预定目标区域(ROI)的海马结构的影响。此外,所有参与者都完成了语言学习和记忆测试(VLMT)。结果:VLMT基因型与学习成绩显着相​​关。 Bonferroni校正的事后检验表明,与非风险等位基因携带者相比,风险等位基因携带者在学习曲线开始时的性能下降。 TBSS ROI分析显示,与位于右侧海马结构中的非风险等位基因携带者相比,风险等位基因携带者的FA减少了一类。此外,发现了初始学习成绩和FA值之间的关联。讨论:这些发现表明,CACNA1C SNP rs1006737中的遗传变异与海马结构中FA的减少以及健康个体的学习成绩差异有关。

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