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尿液非靶向代谢谱可区分自闭症儿童与其未受影响的兄弟姐妹。

Urinary Untargeted Metabolic Profile Differentiates Children with Autism from Their Unaffected Siblings.

作者信息

Timperio Anna Maria, Gevi Federica, Cucinotta Francesca, Ricciardello Arianna, Turriziani Laura, Scattoni Maria Luisa, Persico Antonio M

机构信息

Department of Ecological and Biological Sciences, University of Tuscia, 01100 Viterbo, Italy.

Interdepartmental Program "Autism 0-90", "G. Martino" University Hospital, 98124 Messina, Italy.

出版信息

Metabolites. 2022 Aug 26;12(9):797. doi: 10.3390/metabo12090797.

Abstract

Autism Spectrum Disorder (ASD) encompasses a clinical spectrum of neurodevelopmental conditions that display significant heterogeneity in etiology, symptomatology, and severity. We previously compared 30 young children with idiopathic ASD and 30 unrelated typically-developing controls, detecting an imbalance in several compounds belonging mainly to the metabolism of purines, tryptophan and other amino acids, as well as compounds derived from the intestinal flora, and reduced levels of vitamins B6, B12 and folic acid. The present study describes significant urinary metabolomic differences within 14 pairs, including one child with idiopathic ASD and his/her typically-developing sibling, tightly matched by sex and age to minimize confounding factors, allowing a more reliable identification of the metabolic fingerprint related to ASD. By using a highly sensitive, accurate and unbiased approach, suitable for ensuring broad metabolite detection coverage on human urine, and by applying multivariate statistical analysis, we largely replicate our previous results, demonstrating a significant perturbation of the purine and tryptophan pathways, and further highlight abnormalities in the "phenylalanine, tyrosine and tryptophan" pathway, essentially involving increased phenylalanine and decreased tyrosine levels, as well as enhanced concentrations of bacterial degradation products, including phenylpyruvic acid, phenylacetic acid and 4-ethylphenyl-sulfate. The outcome of these within-family contrasts consolidates and extends our previous results obtained from unrelated individuals, adding further evidence that these metabolic imbalances may be linked to ASD rather than to environmental differences between cases and controls. It further underscores the excess of some gut microbiota-derived compounds in ASD, which could have diagnostic value in a network model differentiating the metabolome of autistic and unaffected siblings. Finally, it points toward the existence of a "metabolic autism spectrum" distributed as an endophenotype, with unaffected siblings possibly displaying a metabolic profile intermediate between their autistic siblings and unrelated typically-developing controls.

摘要

自闭症谱系障碍(ASD)涵盖了一系列神经发育状况的临床谱系,这些状况在病因、症状学和严重程度上表现出显著的异质性。我们之前比较了30名患有特发性ASD的幼儿和30名无关的发育正常的对照儿童,检测到几种主要属于嘌呤、色氨酸和其他氨基酸代谢以及来自肠道菌群的化合物存在失衡,同时维生素B6、B12和叶酸水平降低。本研究描述了14对个体之间显著的尿液代谢组学差异,其中包括一名患有特发性ASD的儿童及其发育正常的同胞手足,他们在性别和年龄上紧密匹配,以尽量减少混杂因素,从而更可靠地识别与ASD相关的代谢指纹。通过使用一种高度灵敏、准确且无偏倚的方法(适用于确保对人类尿液进行广泛的代谢物检测覆盖),并应用多变量统计分析,我们在很大程度上重复了之前的结果,证明嘌呤和色氨酸途径存在显著扰动,并进一步突出了“苯丙氨酸、酪氨酸和色氨酸”途径的异常,主要涉及苯丙氨酸增加和酪氨酸水平降低,以及细菌降解产物浓度升高,包括苯丙酮酸、苯乙酸和4 - 乙基苯硫酸盐。这些家庭内部对比的结果巩固并扩展了我们之前从无关个体获得的结果,进一步证明这些代谢失衡可能与ASD相关,而非病例与对照之间的环境差异。它进一步强调了ASD中一些肠道微生物群衍生化合物的过量,这在区分自闭症和未受影响的同胞手足代谢组的网络模型中可能具有诊断价值。最后,它指出存在一种作为内表型分布的“代谢自闭症谱系”,未受影响的同胞手足可能表现出介于其自闭症同胞手足和无关的发育正常对照之间的代谢特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e01a/9503174/98e7fd746b90/metabolites-12-00797-g001.jpg

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