Dynamic Single Cell Transcriptomics Defines Kidney FGF23/KL Bioactivity and Novel Segment-Specific Inflammatory Targets.
Rafiou AgoroJered MyslinskiYamil G MarambioDanielle JanosevicKayleigh N JenningsSheng LiuLainey M HibbardFang FangPu NiMegan L NoonanEmmanuel SolisXiaona ChuYue WangPierre C DagherYunlong LiuJun WanTakashi HatoKenneth E WhitePublished in: bioRxiv : the preprint server for biology (2024)
Inflammation and elevated FGF23 in chronic kidney disease (CKD) are both associated with poor patient outcomes and mortality. However, the links between these manifestations and the effects of inflammation on FGF23-mediated mineral metabolism within specific nephron segments remain unclear. Herein, we isolated an inflammatory pathway driven by TNF/NF-κB associated with regulating FGF23 bioactivity. The findings from this study could be important in designing future therapeutic approaches for chronic mineral diseases, including potential combination therapies or early intervention strategies. We also suggest that further studies could explore these pathways at the single cell level in CKD models, as well as test translation of our findings to interactions of chronic inflammation and elevated FGF23 in human CKD kidney datasets.