Department of Psychology, The University of Texas at Austin, Austin, Texas, USA.
Faculty of Medicine, Sigmund Freud Private University Vienna, Vienna, Austria.
Lifestyle Genom. 2024;17(1):113-121. doi: 10.1159/000540336. Epub 2024 Aug 5.
Large neutral amino acids (LNAAs) tryptophan and phenylalanine have been implicated in the pathogenesis of neurodegenerative diseases. Given limited research on the effects of LNAA on brain health across different life stages, vascular risk, and genetic backgrounds, our study aimed to explore the interaction of LNAA levels, metabolic syndrome (MetS), and the presence of the apolipoprotein E ε4 (ApoE ε4) allele brain integrity at midlife.
Sixty-eight adults aged 40-61 underwent a health assessment to calculate the number of MetS components, quantify LNAA, measure white matter hyperintensity (WMH) volume, and genotype ApoE ε4. Multivariate linear regression analyses were performed to test the joint effect of LNAA, MetS, and ApoE ε4 on WMH while adjusting for sex, age, and education.
Significant 3-way interactions were observed between serum tryptophan (β = 0.042, SE = 0.018, p < 0.05) and phenylalanine (β = 0.044, SE = 0.013, p < 0.01) levels, number of MetS components, and ApoE ε4 alleles status on WMH volume. Neither individual LNAA levels nor MetS components alone predicted WMH volume.
The study highlights significant 3-way interactions between LNAA, MetS, and genetic risk factors in the pathology of WMH, particularly in individuals genetically predisposed to Alzheimer's disease. These interactions suggest differential impacts of LNAA on WMH volume dependent on both genetic and metabolic factors. Results emphasize the need for personalized metabolic and genetic profile assessments in neurodegenerative disease management.
大中性氨基酸(LNAAs)色氨酸和苯丙氨酸已被牵涉到神经退行性疾病的发病机制中。鉴于在不同生命阶段、血管风险和遗传背景下,LNAAs 对大脑健康的影响的研究有限,我们的研究旨在探索 LNAAs 水平、代谢综合征(MetS)和载脂蛋白 E ε4(ApoE ε4)等位基因在中年时大脑完整性的相互作用。
68 名年龄在 40-61 岁的成年人接受了健康评估,以计算 MetS 成分的数量、量化 LNAAs、测量白质高信号(WMH)体积和基因分型 ApoE ε4。进行多变量线性回归分析,以测试 LNAAs、MetS 和 ApoE ε4 对 WMH 的联合影响,同时调整性别、年龄和教育。
观察到血清色氨酸(β=0.042,SE=0.018,p < 0.05)和苯丙氨酸(β=0.044,SE=0.013,p < 0.01)水平、MetS 成分数量和 ApoE ε4 等位基因状态之间存在显著的 3 向相互作用对 WMH 体积。单独的 LNAAs 水平或 MetS 成分均不能预测 WMH 体积。
该研究强调了 LNAAs、MetS 和遗传风险因素在 WMH 病理中的显著 3 向相互作用,特别是在遗传易患阿尔茨海默病的个体中。这些相互作用表明,LNAAs 对 WMH 体积的影响取决于遗传和代谢因素的差异。结果强调了在神经退行性疾病管理中需要进行个性化的代谢和遗传特征评估。