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RESEARCH PRODUCT

Shifts in gut microbiota composition in an APP/PSS1 transgenic mouse model of Alzheimer's disease during lifespan.

Maria Carmen ColladoJose ViñaA. Diaz CuevasG. Pérez MartínezChristine Bäuerl

subject

0301 basic medicineGenetically modified mouseMaleAgingRikenellaceaeTransgeneFirmicutesMice TransgenicDiseaseGut floraApplied Microbiology and Biotechnology03 medical and health sciencesMiceAlzheimer DiseaseRNA Ribosomal 16SProteobacteriamedicineDementiaIndicatorsAnimalsHumansNeuroinflammationMarkersbiologyIntestinal microbiologyBacteroidetesbiology.organism_classificationmedicine.diseaseGastrointestinal MicrobiomeMice Inbred C57BLDisease Models Animal030104 developmental biologyAgeingImmunologyMicrobial structureDisease processes

description

Alzheimer's disease (AD) is the most common form of dementia and one of the major causes of disability and dependency in older people. Accumulating evidences link gut microbiota with different diseases and its relationship with neurodegenerative diseases is becoming most intriguing. This study was aimed to compare the gut microbiota of transgenic APP/PS1 (TG) mice, a well‐established deterministic mouse model of AD, with their C57BL/6 wild‐type (WT) littermates. Faecal samples were collected from 3‐, 6‐ and 24‐month‐old mice and analysed by pyrosequencing of the V1–V3 region of the bacterial 16S rRNA genes. Bacterial profiles were similar in all young mice (3 months old), and started to diverge so that 6‐month‐old WT and TG mice had different and more diverse microbiota. During ageing, Turicibacteriaceae (typical mice bacterial group) and Rikenellaceae increased in all groups, although total Bacteroidetes remained stable. TG mice were characterized by an increase in Proteobacteria after 6 months, particularly the genus Sutterella (Betaproteobacteria), interestingly also increased in autism disorder. Also, the inflammation related family Erysipelotrichaceae was more abundant in TG mice at 24 months compared to wild‐type control. In summary, AD pathology in mice shifts the gut microbiota towards profiles that share features with autism and inflammatory disorders.

10.1111/lam.12882https://pubmed.ncbi.nlm.nih.gov/29575030