Ontology highlight
ABSTRACT:
SUBMITTER: Choudhury MI
PROVIDER: S-EPMC9050750 | biostudies-literature | 2022 Apr
REPOSITORIES: biostudies-literature
Choudhury Mohammad Ikbal MI Li Yizeng Y Mistriotis Panagiotis P Vasconcelos Ana Carina N ACN Dixon Eryn E EE Yang Jing J Benson Morgan M Maity Debonil D Walker Rebecca R Martin Leigha L Koroma Fatima F Qian Feng F Konstantopoulos Konstantinos K Woodward Owen M OM Sun Sean X SX
Nature communications 20220428 1
The role of mechanical forces driving kidney epithelial fluid transport and morphogenesis in kidney diseases is unclear. Here, using a microfluidic platform to recapitulate fluid transport activity of kidney cells, we report that renal epithelial cells can actively generate hydraulic pressure gradients across the epithelium. The fluidic flux declines with increasing hydraulic pressure until a stall pressure, in a manner similar to mechanical fluid pumps. For normal human kidney cells, the fluidi ...[more]