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15q24 微缺失综合征与代谢失衡合并于不典型孤独症患者。

Combination of 15q24 Microdeletion Syndrome and Metabolic Imbalance in a Patient with Atypical Autism.

机构信息

Neuroimmunology Clinic "Vivere", Kyiv, Ukraine.

Poltava State Medical University, Poltava, Ukraine.

出版信息

J Mol Neurosci. 2024 Jan 5;74(1):1. doi: 10.1007/s12031-023-02183-2.

Abstract

Autistic spectrum disorders (ASD) in children are becoming increasingly common, reaching epidemic proportions. Among the various causes contributing to the development of ASD, the leading place belongs to both chromosomal pathologies and genetic syndromes and their consequence - metabolic imbalance or severe metabolic disorders. Depending on the degree of metabolic pathway damage, certain phenotypes of ASD are formed. A deletion of ~3.1 Mb of chromosome 15q24 was detected in the examined 2-year-old boy with a "mild phenotype" of autism without an obvious delay in mental development. A wide range of additional studies included genetic testing of folate metabolism genes and analysis of metabolites of the methylation cycle and detection of antibodies to folic acid alpha receptors. A heterozygous variant of the MTHFR gene (rs1801133), moderate hyperhomocysteinemia, hypermethylation, and an increased titer of antibodies to alpha receptors of folic acid were revealed in the patient. This clinical case indicates the need for a multifaceted clinical and laboratory examination in children with ASD to identify the metabolic phenotype and prescribe personalized treatment. A personalized treatment strategy will improve the cognitive functions, psycho-emotional state, and social adaptation of individuals with ASD in the long term."

摘要

儿童自闭症谱系障碍(ASD)越来越常见,已达到流行程度。在导致 ASD 发展的各种原因中,染色体病理学和遗传综合征及其后果——代谢失衡或严重代谢紊乱起着主要作用。根据代谢途径损伤的程度,会形成特定的 ASD 表型。在对一名 2 岁男孩进行检查时,发现其 15q24 染色体缺失约 3.1Mb,该男孩患有“轻度自闭症”,精神发育无明显延迟。广泛的其他研究包括叶酸代谢基因的遗传检测、甲基化循环代谢物的分析以及叶酸α受体抗体的检测。在该患者中发现了 MTHFR 基因(rs1801133)的杂合变异、中度高同型半胱氨酸血症、高甲基化和叶酸α受体抗体滴度升高。这个临床案例表明,需要对 ASD 儿童进行多方面的临床和实验室检查,以确定代谢表型并制定个性化治疗方案。个性化治疗策略将长期改善 ASD 个体的认知功能、心理情绪状态和社会适应能力。

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