A novel Mediterranean diet-inspired supplement reduces hippocampal amyloid deposits and microglial activation through the modulation of the microbiota gut-brain axis in 5xFAD mice
Emily Connell(University of East Anglia), David Vauzour(University of East Anglia), Saber Sami(University of East Anglia), Line Pourtau(Complexité, Innovation et Activités Motrices et Sportives), Marrium Liaquat(University of East Anglia), Matthew G. Pontifex(University of East Anglia), Léonie Láng(University of East Anglia), Michael Müller(University of East Anglia), Bernadette Breeze(University of East Anglia), Gwénaëlle Le Gall(Quadram Institute), Simon McArthur(Queen Mary University of London), David Gaudout(Complexité, Innovation et Activités Motrices et Sportives)
Cited by 4
Related Papers
Simvastatin Reduces Expression of Cytokines Interleukin-6, Interleukin-8, and Monocyte Chemoattractant Protein-1 in Circulating Monocytes From Hypercholesterolemic Patients
|Arteriosclerosis Thrombosis and Vascular Biology|2002|377
Fecal microbiota transfer between young and aged mice reverses hallmarks of the aging gut, eye, and brain
|Microbiome|2022|352
Utilisation of Mucin Glycans by the Human Gut Symbiont Ruminococcus gnavus Is Strain-Dependent
|PLoS ONE|2013|325
The microbiota–gut–brain axis: pathways to better brain health. Perspectives on what we know, what we need to investigate and how to put knowledge into practice
|Cellular and Molecular Life Sciences|2022|232