Results 191 to 200 of about 14,005,591 (363)
Epigallocatechin‐3‐gallate (EGCG) acutely inhibited gluconeogenesis and enhanced glycolysis, glycogenolysis, and fatty acid oxidation in perfused rat livers. Mechanistic assays revealed mitochondrial uncoupling, inhibition of pyruvate carboxylation and glucose‐6‐phosphatase, shift of NADH/NAD+ ratios toward oxidation, and loss of membrane integrity ...
Carla Indianara Bonetti +8 more
wiley +1 more source
Critical Incidents in a Multidisciplinary Intensive Care Unit [PDF]
J Chacko +3 more
openalex +1 more source
Rethinking plastic waste: innovations in enzymatic breakdown of oil‐based polyesters and bioplastics
Plastic pollution remains a critical environmental challenge, and current mechanical and chemical recycling methods are insufficient to achieve a fully circular economy. This review highlights recent breakthroughs in the enzymatic depolymerization of both oil‐derived polyesters and bioplastics, including high‐throughput protein engineering, de novo ...
Elena Rosini +2 more
wiley +1 more source
Teaching the Principles of Pediatric Critical Care to Non-Intensivists in Resource Limited Settings: Challenges and Opportunities [PDF]
Michael F. Canarie, Asha Shenoi
openalex +1 more source
Tryptophan metabolite atlas uncovers organ, age, and sex‐specific variations
Tryptophan metabolites were analyzed across twelve organs, the central nervous system, and serum in male and female mice at three life stages. We found tissue‐, sex‐, and age‐specific differences, including increased indole‐3‐pyruvate and kynurenine in aging males.
Lizbeth Perez‐Castro +8 more
wiley +1 more source
Yilin Zhu,1,* Zhiyang Wang,2,* Shifeng Li,3,* Xin Xiao,3 Yujie Liu,3 Jiachen He,3 Fang Huang,3 Jun Wang3 1Department of Critical Care Medicine, Zhangjiagang Hospital Affiliated to Soochow University/The First People’s Hospital of ...
Zhu Y +7 more
doaj
Modelling: a core technique in anaesthesia and critical care research [PDF]
Jonathan G. Hardman, J. J. Ross
openalex +1 more source
CAF‐mediated immunosuppression in ovarian cancer is driven by IDO1, reducing T‐cell function. Inhibiting IDO1 restores T‐cell proliferation and cytotoxicity, increases cancer cell apoptosis, and may help overcome CAF‐induced immune suppression in high‐grade serous ovarian cancer. Targeting IDO1 may improve antitumor immunity.
Hyewon Lee +3 more
wiley +1 more source

