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DOI: 10.1038/srep41802
¤ OpenAccess: Gold
This work has “Gold” OA status. This means it is published in an Open Access journal that is indexed by the DOAJ.

Reduction of Abeta amyloid pathology in APPPS1 transgenic mice in the absence of gut microbiota

Taoufiq Harach,Nittaya Marungruang,N. Duthilleul,V. Cheatham,K. D. Mc Coy,Giovanni B. Frisoni,Jonas J. Neher,Frida Fåk,Mathias Jucker,Theo Lasser,Tristan Bolmont

Genetically modified mouse
Transgene
Amyloid precursor protein
2017
Alzheimer's disease is the most common form of dementia in the western world, however there is no cure available for this devastating neurodegenerative disorder. Despite clinical and experimental evidence implicating the intestinal microbiota in a number of brain disorders, its impact on Alzheimer's disease is not known. To this end we sequenced bacterial 16S rRNA from fecal samples of Aβ precursor protein (APP) transgenic mouse model and found a remarkable shift in the gut microbiota as compared to non-transgenic wild-type mice. Subsequently we generated germ-free APP transgenic mice and found a drastic reduction of cerebral Aβ amyloid pathology when compared to control mice with intestinal microbiota. Importantly, colonization of germ-free APP transgenic mice with microbiota from conventionally-raised APP transgenic mice increased cerebral Aβ pathology, while colonization with microbiota from wild-type mice was less effective in increasing cerebral Aβ levels. Our results indicate a microbial involvement in the development of Abeta amyloid pathology, and suggest that microbiota may contribute to the development of neurodegenerative diseases.
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    Reduction of Abeta amyloid pathology in APPPS1 transgenic mice in the absence of gut microbiota” is a paper by Taoufiq Harach Nittaya Marungruang N. Duthilleul V. Cheatham K. D. Mc Coy Giovanni B. Frisoni Jonas J. Neher Frida Fåk Mathias Jucker Theo Lasser Tristan Bolmont published in 2017. It has an Open Access status of “gold”. You can read and download a PDF Full Text of this paper here.