International Journal of Molecular Sciences · 2021 · 70 citations · 51 references
Renal PathologyImmunologyRenal InflammationPathologyTotal Collagen ProductionOxidative StressInflammationRenal FunctionPerk/akt/mtor PathwayGut Microbiota MetabolismFibroblast Growth FactorMetabolic SignalingKidney Tubule RemodelingChronic Kidney DiseaseCell SignalingMolecular SignalingFibrosisMolecular PhysiologyTrimethylamine N-oxideVascular BiologyRenal PathophysiologyCell BiologyUrologySignal TransductionMedicineNephrologyKidney ResearchFibrotic Effects
Trimethylamine N-oxide (TMAO), a product of gut microbiota metabolism, has previously been shown to be implicated in chronic kidney disease. A high TMAO-containing diet has been found to cause tubulointerstitial renal fibrosis in mice. However, today there are no data linking specific molecular pathways with the effect of TMAO on human renal fibrosis. The aim of this study was to investigate the fibrotic effects of TMAO on renal fibroblasts and to elucidate the molecular pathways involved. We found that TMAO promoted renal fibroblast activation and fibroblast proliferation via the PERK/Akt/mTOR pathway, NLRP3, and caspase-1 signaling. We also found that TMAO increased the total collagen production from renal fibroblasts via the PERK/Akt/mTOR pathway. However, TMAO did not induce fibronectin or TGF-β1 release from renal fibroblasts. We have unraveled that the PERK/Akt/mTOR pathway, NLRP3, and caspase-1 mediates TMAO's fibrotic effect on human renal fibroblasts. Our results can pave the way for future research to further clarify the molecular mechanism behind TMAO's effects and to identify novel therapeutic targets in the context of chronic kidney disease.
51
Genome engineering using the CRISPR-Cas9 system
F. Ann Ran, Patrick D. Hsu, Jason Wright et al. · Nature Protocols · 2013 · 11.4K citations · Full text
Gut flora metabolism of phosphatidylcholine promotes cardiovascular disease
Zeneng Wang, Elizabeth Klipfell, Brian J. Bennett et al. · Nature · 2011 · 5.4K citations
Intestinal Microbial Metabolism of Phosphatidylcholine and Cardiovascular Risk
W.H. Wilson Tang, Zeneng Wang, Bruce S. Levison et al. · New England Journal of Medicine · 2013 · 3.2K citations · Full text
Alexis Desmoulière, Antoine Geinoz, F Gabbiani et al. · The Journal of Cell Biology · 1993 · 2.2K citations · Full text