Department of Biomedical and Biotechnological Sciences, Section of Biology and Genetics G. Sichel, University of Catania, 95123 Catania, Italy.
Oasi Research Institute-IRCCS, 94018 Troina, Italy.
Int J Mol Sci. 2020 Aug 27;21(17):6203. doi: 10.3390/ijms21176203.
Recent evidence has demonstrated that salivary molecules, as well as bacterial populations, can be perturbed by several pathological conditions, including neuro-psychiatric diseases. This relationship between brain functionality and saliva composition could be exploited to unveil new pathological mechanisms of elusive diseases, such as Autistic Spectrum Disorder (ASD). We performed a combined approach of miRNA expression profiling by NanoString technology, followed by validation experiments in qPCR, and 16S rRNA microbiome analysis on saliva from 53 ASD and 27 neurologically unaffected control (NUC) children. MiR-29a-3p and miR-141-3p were upregulated, while miR-16-5p, let-7b-5p, and miR-451a were downregulated in ASD compared to NUCs. Microbiome analysis on the same subjects revealed that , and increased their abundance in ASD patients, while and decreased. Variations of both miRNAs and microbes were statistically associated to different neuropsychological scores related to anomalies in social interaction and communication. Among miRNA/bacteria associations, the most relevant was the negative correlation between salivary miR-141-3p expression and abundance. MiRNA and microbiome dysregulations found in the saliva of ASD children are potentially associated with cognitive impairments of the subjects. Furthermore, a potential cross-talking between circulating miRNAs and resident bacteria could occur in saliva of ASD.
最近的证据表明,唾液分子以及细菌种群可能会受到多种病理状况的影响,包括神经精神疾病。大脑功能和唾液成分之间的这种关系可以被利用来揭示难以捉摸的疾病(如自闭症谱系障碍 (ASD))的新病理机制。我们采用了一种联合方法,通过 NanoString 技术进行 miRNA 表达谱分析,然后通过 qPCR 进行验证实验,并对 53 名 ASD 和 27 名神经正常对照 (NUC) 儿童的唾液进行 16S rRNA 微生物组分析。与 NUC 相比,ASD 中 miR-29a-3p 和 miR-141-3p 上调,而 miR-16-5p、let-7b-5p 和 miR-451a 下调。对同一受试者的微生物组分析显示, 、 和 在 ASD 患者中丰度增加,而 和 减少。miRNA 和微生物的变化与与社交互动和沟通异常相关的不同神经心理学评分统计学上相关。在 miRNA/细菌关联中,唾液 miR-141-3p 表达与 丰度的负相关最为显著。ASD 儿童唾液中发现的 miRNA 和微生物组失调可能与受试者的认知障碍有关。此外,循环 miRNA 和常驻细菌之间可能会发生唾液中的交叉对话。