Results 201 to 210 of about 892,499 (404)
The model shows the probiotics screening and underlying mechanisms of F. rodentiumn in alleviating IR‐induced tissue injury. Stress‐induced STAT3 mitochondria localization decreases F. rodentium abundance and butyrate concentration. Supplementation of F.
Hanyong Zhu +17 more
wiley +1 more source
In this study, we constructed a nanoparticle that was CD4 antibody‐mediated targeted, Fut7‐expressing plasmid‐loaded cationic liposome, namely CD4‐LDP‐Fut7. Upregulation of Fut7 expression in Tregs by using CD4‐LDP‐Fut7 can increase Treg homing to the intestine, thereby facilitating repair of the intestinal epithelial barrier and inhibiting ...
Qian Zhou +13 more
wiley +1 more source
Relationship between undissociated acidity of gastric juice and gastric protein secreted in response to graded doses of pentagastrin in duodenal ulcer patients. [PDF]
Tadeusz Popiela +3 more
openalex +1 more source
Recent advances in materials and device engineering enable continuous, real‐time monitoring of muscle activity via wearable and implantable systems. This review critically summarizes emerging technologies for tracking electrophysiological, biomechanical, and oxygenation signals, outlines fundamental principles, and highlights key challenges and ...
Zhengwei Liao +4 more
wiley +1 more source
Squamous cell carcinoma developed on neglected, mistreated and delayed diagnosed chronic venous leg ulcer [PDF]
Curic LM, Marino Cordellini
openalex +1 more source
This study identifies microRNA‐10a (miR‐10a) as a key brake on regulatory T cell (Treg) suppressive function and intestinal repair. By targeting Blimp‐1, Uqcrq, and amphiregulin, miR‐10a restrains transcriptional, metabolic, and epithelial programs essential for Treg activity.
Wenjing Yang +9 more
wiley +1 more source
This study identifies the transcription factor ETV1 as a key driver of CD4⁺ T cell‐mediated intestinal inflammation in inflammatory bowel disease (IBD). ETV1 promotes CD4⁺ T cell activation, proliferation, and Th17 differentiation by activating the amino acid transporter SLC7A5, fueling metabolic reprogramming.
Yan Shi +8 more
wiley +1 more source

