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新型基于 PCR 的方法在检测、定量和分析自闭症儿童肠道活检样本中萨特氏菌物种的系统发育特征中的应用及其与胃肠道紊乱的关系。

Application of novel PCR-based methods for detection, quantitation, and phylogenetic characterization of Sutterella species in intestinal biopsy samples from children with autism and gastrointestinal disturbances.

机构信息

Center for Infection and Immunity, Mailman School of Public Health, Columbia University, New York, New York, USA.

出版信息

mBio. 2012 Jan 10;3(1). doi: 10.1128/mBio.00261-11. Print 2012.

Abstract

UNLABELLED

Gastrointestinal disturbances are commonly reported in children with autism and may be associated with compositional changes in intestinal bacteria. In a previous report, we surveyed intestinal microbiota in ileal and cecal biopsy samples from children with autism and gastrointestinal dysfunction (AUT-GI) and children with only gastrointestinal dysfunction (Control-GI). Our results demonstrated the presence of members of the family Alcaligenaceae in some AUT-GI children, while no Control-GI children had Alcaligenaceae sequences. Here we demonstrate that increased levels of Alcaligenaceae in intestinal biopsy samples from AUT-GI children result from the presence of high levels of members of the genus Sutterella. We also report the first Sutterella-specific PCR assays for detecting, quantitating, and genotyping Sutterella species in biological and environmental samples. Sutterella 16S rRNA gene sequences were found in 12 of 23 AUT-GI children but in none of 9 Control-GI children. Phylogenetic analysis revealed a predominance of either Sutterella wadsworthensis or Sutterella stercoricanis in 11 of the individual Sutterella-positive AUT-GI patients; in one AUT-GI patient, Sutterella sequences were obtained that could not be given a species-level classification based on the 16S rRNA gene sequences of known Sutterella isolates. Western immunoblots revealed plasma IgG or IgM antibody reactivity to Sutterella wadsworthensis antigens in 11 AUT-GI patients, 8 of whom were also PCR positive, indicating the presence of an immune response to Sutterella in some children.

IMPORTANCE

Autism spectrum disorders affect ~1% of the population. Many children with autism have gastrointestinal (GI) disturbances that can complicate clinical management and contribute to behavioral problems. Understanding the molecular and microbial underpinnings of these GI issues is of paramount importance for elucidating pathogenesis, rendering diagnosis, and administering informed treatment. Here we describe an association between high levels of intestinal, mucoepithelial-associated Sutterella species and GI disturbances in children with autism. These findings elevate this little-recognized bacterium to the forefront by demonstrating that Sutterella is a major component of the microbiota in over half of children with autism and gastrointestinal dysfunction (AUT-GI) and is absent in children with only gastrointestinal dysfunction (Control-GI) evaluated in this study. Furthermore, these findings bring into question the role Sutterella plays in the human microbiota in health and disease. With the Sutterella-specific molecular assays described here, some of these questions can begin to be addressed.

摘要

未加说明

胃肠道紊乱在自闭症儿童中很常见,可能与肠道细菌组成的变化有关。在之前的一份报告中,我们调查了自闭症伴胃肠道功能障碍(AUT-GI)和仅胃肠道功能障碍(Control-GI)儿童的回肠和盲肠活检样本中的肠道微生物群。我们的结果表明,一些 AUT-GI 儿童存在阿克曼菌科的成员,而没有 Control-GI 儿童有阿克曼菌科序列。在这里,我们证明了 AUT-GI 儿童肠道活检样本中阿克曼菌科水平的增加是由萨特氏菌属成员水平升高引起的。我们还报告了第一个用于检测、定量和基因分型生物和环境样本中萨特氏菌属物种的萨特氏菌属特异性 PCR 检测。在 23 名 AUT-GI 儿童中有 12 名发现了萨特氏菌 16S rRNA 基因序列,但在 9 名 Control-GI 儿童中没有发现。系统发育分析显示,11 名个体萨特氏菌阳性 AUT-GI 患者中主要存在萨特氏菌 wadsworthensis 或萨特氏菌 stercoricanis;在一名 AUT-GI 患者中,获得的萨特氏菌序列不能根据已知萨特氏菌分离株的 16S rRNA 基因序列进行种水平分类。Western 免疫印迹显示,11 名 AUT-GI 患者的血浆 IgG 或 IgM 抗体对萨特氏菌 wadsworthensis 抗原有反应性,其中 8 名患者 PCR 阳性,表明一些儿童存在对萨特氏菌的免疫反应。

重要性

自闭症谱系障碍影响~1%的人口。许多自闭症儿童有胃肠道(GI)紊乱,这可能会使临床管理复杂化,并导致行为问题。了解这些胃肠道问题的分子和微生物基础对于阐明发病机制、进行诊断和进行知情治疗至关重要。在这里,我们描述了肠道黏膜相关萨特氏菌属水平升高与自闭症儿童 GI 紊乱之间的关联。这些发现通过证明萨特氏菌是超过一半自闭症伴胃肠道功能障碍(AUT-GI)儿童肠道微生物群的主要组成部分,并在本研究中评估的仅胃肠道功能障碍(Control-GI)儿童中不存在,将这种鲜为人知的细菌推到了前沿。此外,这些发现使人们对萨特氏菌在健康和疾病中的人类微生物群中的作用产生了质疑。有了这里描述的萨特氏菌属特异性分子检测,就可以开始解决其中的一些问题。

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