Results 311 to 320 of about 8,000,334 (380)
In this study, Acod1 knockout in CLP mice significantly increases peripheral blood NET levels, exacerbating inflammation, organ damage, and reducing survival. Further research shows that UBR5 interacts with PAD4, a key NET formation protein. Acod1/itaconate (ITA) enhances the enzymatic activity of UBR5 by alkylating the Cys2768 site, promoting the K48 ...
Huifan Liu+10 more
wiley +1 more source
Tregs‐Exos deliver miR‐218‐5p to increase mitophagy in podocytes by inhibiting the TNC/TLR4/SRC/FUNDC1 pathway. RGD‐Treg‐Exos, engineered to express RGD peptides on the membrane surface, bind to integrins on the surface of podocytes and effectively target podocytes for the delivery of miR‐218‐5p, which increases mitophagy and reduces apoptosis in ...
Zhaochen Guo+11 more
wiley +1 more source
A rare presentation of Horner's syndrome following cervical epidural steroid injection. [PDF]
Mazof CJ, Bui DH, Aner MM.
europepmc +1 more source
Nonsyndromic orofacial clefts (NSOFCs) are the most common craniofacial defects. Exome sequencing of 214 sporadic cases sheds new light on its genetic architecture and identifies many candidate pathogenic variants. Furthermore, functional studies establish BOC as a novel causal gene and reveal an unusual two‐locus model of inheritance via the epistatic
Qing He+16 more
wiley +1 more source
Association between different dimensions of the C-reactive protein-triglyceride-glucose index and future cardiovascular disease risk in individuals with cardiovascular-kidney-metabolic syndrome stages 0-3: a nationwide cohort study. [PDF]
Chen J, Yan L, He L, Wang W.
europepmc +1 more source
CTSK plays a critical role in pulmonary fibrosis. Excessive CTSK accumulation interacts with SNX9 to enhance TGF‐β1‐induced SMAD3 activation and GLS1 expression in fibroblasts, driving glutamine metabolism for collagen biosynthesis and exacerbating pulmonary fibrosis.
Mengting Chen+10 more
wiley +1 more source
Revealing Cell‐Free Mitochondrial DNA Breakage Patterns as Novel Biomarkers for Sepsis
Uncovering distinct plasma cfmtDNA breakage patterns opens new frontiers for early sepsis detection and prognosis. Unique cleavage hotspots in RNR2 and COX2 regions outperform traditional biomarkers, while mechanistic insights suggest bacterial endonuclease involvement.
Haitang Liao+13 more
wiley +1 more source