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Familial Influences on Mismatch Negativity and Its Association with Plasma Glutamate Level: A Magnetoencephalographic Study in Twins

机译:家族对错配负性的影响及其与血浆谷氨酸水平的关联:双胞胎的脑磁图研究

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摘要

Mismatch negativity (MMN) or its magnetic counterpart (magnetic mismatch negativity; MMNm) is regarded as a promising biomarker for schizophrenia. Previous electroencephalographic studies of MMN have demonstrated a moderate-to-high heritability for MMN amplitudes. N-methyl-D-aspartate receptor-dependent glutamatergic neurotransmission is implicated in MMN generation. We hypothesized that the differences between identical twins in MMNm variables might be associated with differences in plasma levels of amino acids involved in glutamatergic neurotransmission. Thirty-three pairs of monozygotic (MZ) and 10 pairs of dizygotic (DZ) twins underwent MMNm recording. The MMNm in response to tone duration changes, tone frequency changes, and phonemic changes was recorded using 204-channel magnetoencephalography. Of these, 26 MZ and 7 DZ twin pairs underwent blood sampling for determination of plasma amino acid levels. MMNm peak strength showed relatively high correlations in both MZ and DZ twin pairs. The differences in MMNm latencies tended to correlate with the differences in plasma amino acid levels within MZ pairs, while no significant correlation was observed after the Bonferroni correction. We observed a familial trait in MMNm strength. The differences in MMN latency in MZ twins might be influenced by changes in glutamate levels and glutamate-glutamine cycling; however, the results need to be replicated.
机译:错配负性(MMN)或它的磁性对应物(磁错配负性; MMNm)被认为是精神分裂症的有前途的生物标志物。以前的MMN脑电图研究表明,MMN振幅具有中等至高的遗传力。 N-甲基-D-天冬氨酸受体依赖性谷氨酸能神经传递与MMN的产生有关。我们假设MMNm变量中同卵双胞胎之间的差异可能与参与谷氨酸能神经传递的氨基酸血浆水平的差异有关。对33对单卵(MZ)和10对双卵(DZ)双胞胎进行MMNm记录。使用204通道脑磁图记录了MMNm对音调持续时间变化,音调频率变化和音素变化的响应。其中,对26对MZ和7对DZ对进行了血液采样,以确定血浆氨基酸水平。 MMNm峰值强度在MZ和DZ双胞胎对中均显示出较高的相关性。 MMNm潜伏期的差异倾向于与MZ对内血浆氨基酸水平的差异相关,而Bonferroni校正后未观察到明显的相关性。我们观察到MMNm强度的家族特征。 MZ双胞胎中MMN潜伏期的差异可能受谷氨酸水平和谷氨酸-谷氨酰胺循环变化的影响。但是,结果需要复制。

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