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唾液微小RNA谱可识别自闭症谱系障碍儿童,与适应性行为相关,并涉及参与神经发育的自闭症谱系障碍候选基因。

Salivary miRNA profiles identify children with autism spectrum disorder, correlate with adaptive behavior, and implicate ASD candidate genes involved in neurodevelopment.

作者信息

Hicks Steven D, Ignacio Cherry, Gentile Karen, Middleton Frank A

机构信息

Department of Pediatrics, Milton S. Hershey Medical Center of Penn State University, Hershey, PA, USA.

Partek Incorporated, St. Louis, MO, USA.

出版信息

BMC Pediatr. 2016 Apr 22;16:52. doi: 10.1186/s12887-016-0586-x.

Abstract

BACKGROUND

Autism spectrum disorder (ASD) is a common neurodevelopmental disorder that lacks adequate screening tools, often delaying diagnosis and therapeutic interventions. Despite a substantial genetic component, no single gene variant accounts for >1 % of ASD incidence. Epigenetic mechanisms that include microRNAs (miRNAs) may contribute to the ASD phenotype by altering networks of neurodevelopmental genes. The extracellular availability of miRNAs allows for painless, noninvasive collection from biofluids. In this study, we investigated the potential for saliva-based miRNAs to serve as diagnostic screening tools and evaluated their potential functional importance.

METHODS

Salivary miRNA was purified from 24 ASD subjects and 21 age- and gender-matched control subjects. The ASD group included individuals with mild ASD (DSM-5 criteria and Autism Diagnostic Observation Schedule) and no history of neurologic disorder, pre-term birth, or known chromosomal abnormality. All subjects completed a thorough neurodevelopmental assessment with the Vineland Adaptive Behavior Scales at the time of saliva collection. A total of 246 miRNAs were detected and quantified in at least half the samples by RNA-Seq and used to perform between-group comparisons with non-parametric testing, multivariate logistic regression and classification analyses, as well as Monte-Carlo Cross-Validation (MCCV). The top miRNAs were examined for correlations with measures of adaptive behavior. Functional enrichment analysis of the highest confidence mRNA targets of the top differentially expressed miRNAs was performed using the Database for Annotation, Visualization, and Integrated Discovery (DAVID), as well as the Simons Foundation Autism Database (AutDB) of ASD candidate genes.

RESULTS

Fourteen miRNAs were differentially expressed in ASD subjects compared to controls (p <0.05; FDR <0.15) and showed more than 95 % accuracy at distinguishing subject groups in the best-fit logistic regression model. MCCV revealed an average ROC-AUC value of 0.92 across 100 simulations, further supporting the robustness of the findings. Most of the 14 miRNAs showed significant correlations with Vineland neurodevelopmental scores. Functional enrichment analysis detected significant over-representation of target gene clusters related to transcriptional activation, neuronal development, and AutDB genes.

CONCLUSION

Measurement of salivary miRNA in this pilot study of subjects with mild ASD demonstrated differential expression of 14 miRNAs that are expressed in the developing brain, impact mRNAs related to brain development, and correlate with neurodevelopmental measures of adaptive behavior. These miRNAs have high specificity and cross-validated utility as a potential screening tool for ASD.

摘要

背景

自闭症谱系障碍(ASD)是一种常见的神经发育障碍,缺乏足够的筛查工具,常常导致诊断和治疗干预延迟。尽管有很大的遗传因素,但没有单一基因变异能解释超过1%的ASD发病率。包括微小RNA(miRNA)在内的表观遗传机制可能通过改变神经发育基因网络而导致ASD表型。miRNA的细胞外可用性使得能够从生物流体中进行无痛、非侵入性采集。在本研究中,我们调查了基于唾液的miRNA作为诊断筛查工具的潜力,并评估了它们潜在的功能重要性。

方法

从24名ASD受试者和21名年龄及性别匹配的对照受试者中纯化唾液miRNA。ASD组包括符合轻度ASD(DSM-5标准和自闭症诊断观察量表)且无神经疾病史、早产史或已知染色体异常的个体。所有受试者在采集唾液时均使用文兰适应行为量表完成了全面的神经发育评估。通过RNA测序在至少一半的样本中检测并定量了总共246种miRNA,并用于进行组间比较,采用非参数检验、多变量逻辑回归和分类分析,以及蒙特卡洛交叉验证(MCCV)。对排名靠前的miRNA进行了与适应行为测量指标的相关性检查。使用注释、可视化和综合发现数据库(DAVID)以及ASD候选基因的西蒙斯基金会自闭症数据库(AutDB)对排名靠前的差异表达miRNA的最高置信度mRNA靶标进行了功能富集分析。

结果

与对照组相比,14种miRNA在ASD受试者中差异表达(p<0.05;FDR<0.15),并且在最佳拟合逻辑回归模型中区分受试者组时显示出超过95%的准确率。MCCV显示在100次模拟中平均ROC-AUC值为0.92,进一步支持了研究结果的稳健性。这14种miRNA中的大多数与文兰神经发育评分显示出显著相关性。功能富集分析检测到与转录激活、神经元发育和AutDB基因相关的靶基因簇有显著的过度表达。

结论

在这项针对轻度ASD受试者的初步研究中,唾液miRNA的测量显示出14种miRNA的差异表达,这些miRNA在发育中的大脑中表达,影响与大脑发育相关的mRNA,并与适应行为的神经发育测量指标相关。这些miRNA作为ASD的潜在筛查工具具有高特异性和交叉验证的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27cf/4841962/c88a6dc1963f/12887_2016_586_Fig1_HTML.jpg

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