Inflammation and infection can trigger local tissue Na(+)accumulation. This Na+-rich environment boosts proinflammatory activation of monocyte/macrophage-like cells (M phi s) and their antimicrobial activity. Enhanced Na+-driven M phi function requires the osmoprotective transcription factor nuclear factor of activated T cells 5 (NFAT5), which augments nitric oxide (NO) production and contributes to increased autophagy. However, the mechanism of Na(+)sensing in M phi s remained unclear. High extracellular Na(+)levels (high salt [HS]) trigger a substantial Na(+)influx and Ca(2+)loss. Here, we show that the Na+/Ca(2+)exchanger 1 (NCX1, also known as solute carrier family 8 member A1 [SLC8A1]) plays a critical role in HS-triggered Na(+)influx,...
Kawasaki disease (KD) is an acute multisystem vasculitis that predominantly affects children under t...
Cell membranes spatially define gradients that drive the complexity of biological signals. To guaran...
The skin can serve as an interstitial Na(+) reservoir. Local tissue Na(+) accumulation increases wit...
Inflammation and infection can trigger local tissue Na(+)accumulation. This Na+-rich environment boo...
Inflammation and infection can trigger local tissue Na(+) accumulation. This Na(+)-rich environment ...
Inflammation and infection can trigger local tissue Na+ accumulation. This Na+-rich environment boos...
Inflammation and infection can trigger local tissue Na+ accumulation. This Na+-rich environment boos...
The Na(+)/Ca(2+) exchanger (NCX) is a plasma membrane protein that can switch Na(+) and Ca(2+) in ei...
The Na+/Ca2+ exchanger (NCX) is a membrane transporter that can switch Na+ and Ca2+ in either direct...
Infection and inflammation are able to induce diet-independent Na+-accumulation without commensurate...
Infection and inflammation are able to induce diet-independent Na+-accumulation without commensurate...
Infection and inflammation can augment local Na+ abundance. These increases in local Na+ levels boos...
Infection and inflammation are able to induce diet-independent Na(+)-accumulation without commensura...
Kawasaki disease (KD) is an acute multisystem vasculitis that predominantly affects children under t...
Cell membranes spatially define gradients that drive the complexity of biological signals. To guaran...
The skin can serve as an interstitial Na(+) reservoir. Local tissue Na(+) accumulation increases wit...
Inflammation and infection can trigger local tissue Na(+)accumulation. This Na+-rich environment boo...
Inflammation and infection can trigger local tissue Na(+) accumulation. This Na(+)-rich environment ...
Inflammation and infection can trigger local tissue Na+ accumulation. This Na+-rich environment boos...
Inflammation and infection can trigger local tissue Na+ accumulation. This Na+-rich environment boos...
The Na(+)/Ca(2+) exchanger (NCX) is a plasma membrane protein that can switch Na(+) and Ca(2+) in ei...
The Na+/Ca2+ exchanger (NCX) is a membrane transporter that can switch Na+ and Ca2+ in either direct...
Infection and inflammation are able to induce diet-independent Na+-accumulation without commensurate...
Infection and inflammation are able to induce diet-independent Na+-accumulation without commensurate...
Infection and inflammation can augment local Na+ abundance. These increases in local Na+ levels boos...
Infection and inflammation are able to induce diet-independent Na(+)-accumulation without commensura...
Kawasaki disease (KD) is an acute multisystem vasculitis that predominantly affects children under t...
Cell membranes spatially define gradients that drive the complexity of biological signals. To guaran...
The skin can serve as an interstitial Na(+) reservoir. Local tissue Na(+) accumulation increases wit...