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Gut Microbiota Profiling and Gut–Brain Crosstalk in Children Affected by Pediatric Acute-Onset Neuropsychiatric Syndrome and Pediatric Autoimmune Neuropsychiatric Disorders Associated With Streptococcal Infections

机译:小儿急性发作神经精神病综合症和与链球菌感染相关的小儿自身免疫性神经精神病患儿的肠道菌群分析和肠脑相声

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摘要

Pediatric acute-onset neuropsychiatric syndrome (PANS) and pediatric autoimmune neuropsychiatric disorders associated with streptococcal infections syndrome (PANDAS) are conditions that impair brain normal neurologic function, resulting in the sudden onset of tics, obsessive-compulsive disorder, and other behavioral symptoms. Recent studies have emphasized the crosstalk between gut and brain, highlighting how gut composition can influence behavior and brain functions. Thus, the present study investigates the relationship between PANS/PANDAS and gut microbiota ecology. The gut composition of a cohort of 30 patients with PANS/PANDAS was analyzed and compared to control subjects using 16S rRNA-based metagenomics. Data were analyzed for their α- and β-diversity; differences in bacterial distribution were detected by Wilcoxon and LEfSe tests, while metabolic profile was predicted via PICRUSt software. These analyses demonstrate the presence of an altered bacterial community structure in PANS/PANDAS patients with respect to controls. In particular, ecological analysis revealed the presence of two main clusters of subjects based on age range. Thus, to avoid age bias, data from patients and controls were split into two groups: 4–8 years old and >9 years old. The younger PANS/PANDAS group was characterized by a strong increase in Bacteroidetes; in particular, Bacteroides, Odoribacter, and Oscillospira were identified as potential microbial biomarkers of this composition type. Moreover, this group exhibited an increase of several pathways concerning the modulation of the antibody response to inflammation within the gut as well as a decrease in pathways involved in brain function (i.e., SCFA, D-alanine and tyrosine metabolism, and the dopamine pathway). The older group of patients displayed a less uniform bacterial profile, thus impairing the identification of distinct biomarkers. Finally, Pearson’s analysis between bacteria and anti-streptolysin O titer reveled a negative correlation between genera belonging to Firmicutes phylum and anti-streptolysin O while a positive correlation was observed with Odoribacter. In conclusion, this study suggests that streptococcal infections alter gut bacterial communities leading to a pro-inflammatory status through the selection of specific bacterial strains associated with gut inflammation and immune response activation. These findings highlight the possibility of studying bacterial biomarkers associated with this disorder and might led to novel potential therapeutic strategies.
机译:与链球菌感染综合征(PANDAS)相关的小儿急性发作性神经精神病综合症(PANS)和小儿自身免疫性神经精神病性障碍是损害大脑正常神经功能的疾病,导致抽动症突然发作,强迫症和其他行为症状。最近的研究强调了肠道与大脑之间的串扰,强调了肠道成分如何影响行为和大脑功能。因此,本研究调查了PANS / PANDAS与肠道菌群生态之间的关系。使用基于16S rRNA的宏基因组学方法,对30例PANS / PANDAS患者的肠道组成进行了分析,并与对照组进行了比较。分析数据的α和β多样性;通过Wilcoxon和LEfSe测试检测到细菌分布的差异,而通过PICRUSt软件预测代谢情况。这些分析表明,与对照组相比,PANS / PANDAS患者的细菌群落结构发生了改变。尤其是,生态学分析显示,根据年龄范围,存在两个主要的主体类群。因此,为了避免年龄偏差,将来自患者和对照组的数据分为两组:4-8岁和> 9岁。较年轻的PANS / PANDAS组的特征是拟杆菌的数量大量增加;尤其是,拟杆菌,敖德罗杆菌和Oscillospira被鉴定为这种组合物类型的潜在微生物标志物。此外,该组在肠道中针对炎症反应的抗体调节的调节中表现出几种途径的增加,以及参与脑功能的途径(即,SCFA,D-丙氨酸和酪氨酸代谢以及多巴胺途径)的减少。 。老年患者表现出不太均匀的细菌特征,因此损害了对不同生物标志物的鉴定。最后,Pearson对细菌和抗链球菌溶血素O滴度的分析揭示了属于门扇菌属的属与抗链球菌溶血素O之间的负相关,而与Odoribacter呈正相关。总之,这项研究表明,链球菌感染通过选择与肠道炎症和免疫反应激活相关的特定细菌菌株,改变了肠道细菌群落,从而导致了促炎状态。这些发现凸显了研究与该疾病相关的细菌生物标志物的可能性,并可能导致新的潜在治疗策略。

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