Results 221 to 230 of about 2,254,706 (376)
The Composite Antiadhesion Barrier Facilitated Fibroblast Autophagy Activation for Tendon Repair
Synthesis of an innovative three‐layer composite antiadhesion barrier (plasmid DNA@E–H–E′) is schematically illustrated, highlighting its reactive‐oxygen‐species‐responsive, unidirectional interleukin‐37 delivery to enhance fibroblast autophagy, thereby effectively preventing tendon adhesion and promoting scarless tendon repair.
Zhenyu Sun +5 more
wiley +1 more source
This study identified that STK33 may serve as a target of Bufalin, which induces the degradation of STK33 and inhibits the growth of TNBC. Furthermore, STK33 is highly expressed in TNBC and enhances TNBC cell proliferation by phosphorylating and stabilizing CCAR1.
Shilong Jiang +11 more
wiley +1 more source
Biosynthesis and assembly of mitochondrial proteins [PDF]
A Scarpa +75 more
core +1 more source
EFFECT OF PROTEOLYTIC ENZYMES ON THE ULTRASTRUCTURE OF ANTIBODY-TREATED SEA URCHIN EGGS [PDF]
Charles B. Metz +2 more
openalex +1 more source
STUDIES ON THE PROTEOLYTIC ENZYMES OF SOIL FUNGI AND ACTINOMYCETES
S. Waksman
semanticscholar +1 more source
FMO2 Promotes Angiogenesis via Regulation of N‐Acetylornithine
This study identifies flavin‐containing monooxygenase 2 (FMO2) as a novel proangiogenic regulator in endothelial cells. Targeted FMO2 ablation impairs vessel sprouting, whereas its compensation potently enhances angiogenesis. Metabolomics and single‐cell sequencing reveal that FMO2 drives vascular growth via the N‐acetylornithine/ATF3/NOTCH1 axis ...
Jingyi Wang +15 more
wiley +1 more source
KLK1 downregulation disrupts the intestinal mucosal barrier and impairs kallikrein‐kinin signaling, thereby reducing Lys‐des‐Arg9‐BK production. This enhances B1R activation on ADAMDEC1⁺ fibroblasts, promoting inflammation and extracellular matrix (ECM) remodeling. The resulting iCAFs promote colorectal cancer progression, highlighting a novel KLK1‐B1R
Lisha Zhou +14 more
wiley +1 more source
This study systematically explores the action mechanism of Pon3 and its regulatory targets in spinal cord injury (SCI). It demonstrates that Dnmt1 regulates Pon3 expression by modulating methylation levels, thereby inhibiting S1PR1‐mediated pyroptosis and improving SCI prognosis.
Birong Peng +8 more
wiley +1 more source

