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Cognitive function improvement after fecal microbiota transplantation in Alzheimer’s dementia patient: a case report

医学 微生物群 认知 痴呆 粪便 粪便细菌疗法 睡眠剥夺对认知功能的影响 认知测验 移植 认知功能衰退 疾病 内科学 精神科 生物信息学 艰难梭菌 抗生素 生物 生态学 微生物学
作者
Soo-Hyun Park,Jung Hwan Lee,Jongbeom Shin,Jun‐Seob Kim,Boram Cha,Suhjoon Lee,Kye Sook Kwon,Yong Un Shin,Seong Hye Choi
出处
期刊:Current Medical Research and Opinion [Informa]
卷期号:37 (10): 1739-1744 被引量:92
标识
DOI:10.1080/03007995.2021.1957807
摘要

After fecal microbiota transplantation (FMT) to treat Clostridioides difficile infection (CDI), cognitive improvement is noticeable, suggesting an essential association between the gut microbiome and neural function. Although it is known that the gut microbiome is linked with cognitive function, whether FMT may lead to cognitive improvement in patients with neurodegenerative disorders remains to be elucidated. We present the case of a 90-year-old woman with Alzheimer's dementia and severe CDI who underwent FMT. Cognitive function testing (Mini-Mental State Examination, Montreal Cognitive Assessment, and Clinical Dementia Rating assessment) was performed one month before FMT and one week and one month after FMT. We collected the patients’ fecal samples before FMT and 3 weeks after FMT to compare the microbiota composition. The 16S rRNA gene amplicons were analyzed using the QIIME2 platform (version 2020.2) and the Phyloseq R package. The linear discriminant analysis effect size was performed to determine the taxonomic difference between pre- and post-FMT. Functional biomarker analysis using the Kruskal–Wallis H test was performed between the pre- and post-FMT. The cognitive function tests after FMT showed an improvement compared to the tests before the procedure. FMT changed the microbiota composition in recipient feces. We found that the genera were reported to be associated with cognitive function. In addition, short-chain fatty acids were found to be significantly different between before and after FMT. This finding suggests the presence of an association between the gut microbiome and cognitive function. Further, it emphasizes the need for clinical awareness regarding the effect of FMT on the brain-gut-microbiome axis and its potential as a therapy for patients with dementia.
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