Results 201 to 210 of about 3,116,502 (374)
3D‐cultured renal cancer cells exhibit stem‐like phenotypes and are more efficient in generating bone metastases. Vitamin C treatment can suppress the development of bone metastasis. Single‐cell transcriptomic analysis reveals that vitamin C inhibits metastasis by inducing tumor cell cycle arrest, suppressing osteoclast differentiation, and reducing ...
Jianye Zhang+17 more
wiley +1 more source
Physiology and biochemistry of endothelial function in children with chronic renal failure
Jameela A. Kari+9 more
openalex +1 more source
Calpain‐2‐Mediated Endothelial Focal Adhesion Disruption in Thoracic Aortic Dissection
The elevated expression of Capn2 in endothelial cells activates focal adhesion signaling by cleaving Talin1 and assembling Itgav, which compromises the integrity of the endothelial barrier and induces vascular inflammation. Inhibition of calpain through both pharmacological and transgenic approaches has effectively suppressed the onset and progression ...
Xiaomei Teng+10 more
wiley +1 more source
Single‐Cell RNA Sequencing Delineates Renal Anti‐Fibrotic Mechanisms Mediated by TRPC6 Inhibition
Single‐cell transcriptomics reveals how TRPC6 inhibition alters renal cell composition and gene expression in CKD. The study uncovers a novel endothelial subpopulation (ECRIN), highlights key inflammatory and fibrotic pathways, and identifies a Prnp‐driven network linked to fibrosis resolution, offering mechanistic insight into TRPC6 as a potential ...
Yao Xu+12 more
wiley +1 more source
Teaching Renal Physiology to the Millennial Student: the University of the Philippines Manila Experience. [PDF]
Anacleto FE+3 more
europepmc +1 more source
The renal cGMP-gated cation channel: Its molecular structure and physiological role
D. E. McCoy+2 more
openalex +1 more source
Challenges and intriguing problems in comparative renal physiology [PDF]
William H. Dantzler
openalex +1 more source
Through a comprehensive multi‐omics analysis, this study identifies a marked reduction in Nephronectin (NPNT) expression within fibrotic lung tissue. This reduction impairs the binding capability to the ITGA3 receptor, consequently causing YAP1 to persist in the cytoplasm, where it undergoes degradation.
Jiayu Guo+20 more
wiley +1 more source