Faralli Alessio, Fucà Elisa, Lazzaro Giulia, Menghini Deny, Vicari Stefano, Costanzo Floriana
Child and Adolescent Neuropsychiatry Unit, Bambino Gesù Children's Hospital (IRCCS), Rome, Italy.
Life Sciences and Public Health Department, Catholic University of Sacred Heart, Rome, Italy.
Front Cell Neurosci. 2024 Feb 22;18:1328963. doi: 10.3389/fncel.2024.1328963. eCollection 2024.
This perspective review aims to explore the potential neurobiological mechanisms involved in the application of transcranial Direct Current Stimulation (tDCS) for Down syndrome (DS), the leading cause of genetically-based intellectual disability. The neural mechanisms underlying tDCS interventions in genetic disorders, typically characterized by cognitive deficits, are grounded in the concept of brain plasticity. We initially present the neurobiological and functional effects elicited by tDCS applications in enhancing neuroplasticity and in regulating the excitatory/inhibitory balance, both associated with cognitive improvement in the general population. The review begins with evidence on tDCS applications in five neurogenetic disorders, including Rett, Prader-Willi, Phelan-McDermid, and Neurofibromatosis 1 syndromes, as well as DS. Available evidence supports tDCS as a potential intervention tool and underscores the importance of advancing neurobiological research into the mechanisms of tDCS action in these conditions. We then discuss the potential of tDCS as a promising non-invasive strategy to mitigate deficits in plasticity and promote fine-tuning of the excitatory/inhibitory balance in DS, exploring implications for cognitive treatment perspectives in this population.
这篇观点性综述旨在探讨经颅直流电刺激(tDCS)应用于唐氏综合征(DS)——遗传性智力残疾的主要病因——时所涉及的潜在神经生物学机制。tDCS干预遗传性疾病(通常以认知缺陷为特征)的神经机制基于脑可塑性的概念。我们首先介绍tDCS应用在增强神经可塑性和调节兴奋性/抑制性平衡方面所引发的神经生物学和功能效应,这两者都与普通人群的认知改善相关。综述开篇介绍了tDCS应用于五种神经遗传性疾病的证据,包括雷特综合征、普拉德-威利综合征、费兰-麦克德米德综合征、1型神经纤维瘤病综合征以及唐氏综合征。现有证据支持tDCS作为一种潜在的干预工具,并强调推进对tDCS在这些病症中作用机制的神经生物学研究的重要性。然后,我们讨论tDCS作为一种有前景的非侵入性策略减轻唐氏综合征可塑性缺陷并促进兴奋性/抑制性平衡微调的潜力,探讨其对该人群认知治疗前景的影响。