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Evaluation of Biogenic Amines in the Faeces of Children with and without Autism by LC-MS/MS

机译:LC-MS / MS评价患有和不患有自闭症的儿童粪便中的生物胺

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Previous researchers have postulated that gastrointestinal bacteria may contribute to the development and maintenance of Autism Spectrum Disorders (ASD). There is evidence based on quantitative evaluation of the gastrointestinal bacterial population in ASD that this is unlikely and an alternate mechanism will be examined where the bacteria may contribute to the development of ASD via their metabolic products and the role of biogenic amines (BAs) will be investigated. In humans, BAs influence a numberof physiological processes via their actions as neurotransmitters, local hormones and gastric acid secretion. Various amines have been implicated in several medical conditions such as schizophrenia and colon cancer. To date, the relationship between BAsand autism has not been explored. This study has been designed to identify differences (and/or similarities) in the level of BAs in faecal samples of autistic children (without gastrointestinal dysfunction: n = 14; with gastrointestinal dysfunction; n =21) and their neurotypical siblings (n = 35) by LC-MS/MS. Regardless of the diagnosis, severity of ASD and gastrointestinal dysfunction there were no significant differences found between the groups. The findings suggest that BAs in the gastrointestinaltract do not play a role in the pathophysiology of gastrointestinal dysfunction associated with ASD.
机译:先前的研究人员推测,胃肠道细菌可能有助于自闭症谱系障碍(ASD)的发展和维持。根据对ASD中胃肠道细菌种群的定量评估,有证据表明这不太可能,并且将研究一种替代机制,其中细菌可能通过其代谢产物促进ASD的发展,而生物胺(BAs)的作用将是调查。在人类中,BA通过其作为神经递质,局部激素和胃酸分泌的作用来影响许多生理过程。各种胺类物质与精神分裂症和结肠癌等几种医学疾病有关。迄今为止,BAs与自闭症之间的关系尚未得到探讨。本研究旨在确定自闭症儿童(无胃肠功能障碍:n = 14;有肠胃功能障碍; n = 21)的粪便样本及其神经典型兄弟姐妹(n = 35)中BAs水平的差异(和/或相似性)。 )通过LC-MS / MS。不论诊断,ASD的严重程度和胃肠道​​功能障碍,两组之间均无显着差异。研究结果表明,胃肠道中的BA在与ASD相关的胃肠功能障碍的病理生理中不起作用。

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