Defective NOD 2 peptidoglycan sensing promotes diet骾nduced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO molecular …, 2015 - embopress.org
Pattern recognition receptors link metabolite and bacteria骴erived inflammation to insulin
resistance during obesity. We demonstrate that NOD 2 detection of bacterial cell wall …

[HTML][HTML] Defective NOD2 peptidoglycan sensing promotes diet骾nduced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO Molecular …, 2015 - embopress.org
Pattern recognition receptors link metabolite and bacteria骴erived inflammation to insulin
resistance during obesity. We demonstrate that NOD 2 detection of bacterial cell wall …

[HTML][HTML] Defective NOD2 peptidoglycan sensing promotes diet-induced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO Molecular …, 2015 - ncbi.nlm.nih.gov
Pattern recognition receptors link metabolite and bacteria-derived inflammation to insulin
resistance during obesity. We demonstrate that NOD2 detection of bacterial cell wall …

Defective NOD2 peptidoglycan sensing promotes diet骾nduced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO Molecular …, 2015 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Pattern recognition receptors link metabolite
and bacteria骴erived inflammation to insulin resistance during obesity. We demonstrate …

Defective NOD2 peptidoglycan sensing promotes diet-induced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou… - EMBO Molecular …, 2015 - search.proquest.com
Pattern recognition receptors link metabolite and bacteria-derived inflammation to insulin
resistance during obesity. We demonstrate that NOD 2 detection of bacterial cell wall …

Defective NOD2 peptidoglycan sensing promotes diet-induced inflammation, dysbiosis, and insulin resistance.

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO Molecular …, 2015 - europepmc.org
Pattern recognition receptors link metabolite and bacteria-derived inflammation to insulin
resistance during obesity. We demonstrate that NOD2 detection of bacterial cell wall …

Defective NOD2 peptidoglycan sensing promotes diet-induced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou… - EMBO Molecular …, 2015 - research.bond.edu.au
Pattern recognition receptors link metabolite and bacteria-derived inflammation to insulin
resistance during obesity. We demonstrate that NOD2 detection of bacterial cell wall …

Defective NOD2 peptidoglycan sensing promotes diet-induced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou… - EMBO molecular …, 2015 - pubmed.ncbi.nlm.nih.gov
Pattern recognition receptors link metabolite and bacteria-derived inflammation to insulin
resistance during obesity. We demonstrate that NOD2 detection of bacterial cell wall …

Defective NOD2 peptidoglycan sensing promotes diet-induced inflammation, dysbiosis, and insulin resistance.

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO Molecular …, 2015 - europepmc.org
Pattern recognition receptors link metabolite and bacteria-derived inflammation to insulin
resistance during obesity. We demonstrate that NOD2 detection of bacterial cell wall …

[HTML][HTML] Defective NOD 2 peptidoglycan sensing promotes diet骾nduced inflammation, dysbiosis, and insulin resistance

E Denou, K Lolmède, L Garidou, C Pomie… - EMBO Molecular …, 2015 - embopress.org
Pattern recognition receptors link metabolite and bacteria骴erived inflammation to insulin
resistance during obesity. We demonstrate that NOD 2 detection of bacterial cell wall …