Showing results (11-20 of 20) with videos related to
Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 20 results.
Redox Biology|April 21, 2025
Endogenous acrolein accumulation in akr7a3 mutants causes microvascular dysfunction due to increased arachidonic acid metabolismXin Zhang, Johannes Gschwind, Vanessa Erben, et al.Basic Research in Cardiology|February 14, 2014
Brag2 differentially regulates β1- and β3-integrin-dependent adhesion in endothelial cells and is involved in developmental and pathological angiogenesisYosif Manavski, Guillaume Carmona, Katrin Bennewitz, et al.Frontiers in Chemistry|May 13, 2022
Deep Metabolic Profiling Assessment of Tissue Extraction Protocols for Three Model OrganismsHagen M Gegner, Nils Mechtel, Elena Heidenreich, et al.Blood|December 21, 2011
MicroRNA-27a/b controls endothelial cell repulsion and angiogenesis by targeting semaphorin 6ACarmen Urbich, David Kaluza, Timo Frömel, et al.Iscience|November 30, 2020
Regulation of Gluconeogenesis by Aldo-keto-reductase 1a1b in ZebrafishXiaogang Li, Felix Schmöhl, Haozhe Qi, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|July 19, 2021
Reduced Acrolein Detoxification in akr1a1a Zebrafish Mutants Causes Impaired Insulin Receptor Signaling and Microvascular AlterationsHaozhe Qi, Felix Schmöhl, Xiaogang Li, et al.Diabetes|January 31, 2022
pdx1 Knockout Leads to a Diabetic Nephropathy- Like Phenotype in Zebrafish and Identifies Phosphatidylethanolamine as Metabolite Promoting Early Diabetic Kidney DamageLucas M Wiggenhauser, Lena Metzger, Katrin Bennewitz, et al.Redox Biology|December 19, 2022
Loss of glyoxalase 2 alters the glucose metabolism in zebrafishChristoph Tobias Tabler, Elisabeth Lodd, Katrin Bennewitz, et al.Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|December 7, 2023
Impaired Detoxification of Trans, Trans-2,4-Decadienal, an Oxidation Product from Omega-6 Fatty Acids, Alters Insulin Signaling, Gluconeogenesis and Promotes Microvascular DiseaseXin Qian, Stephan Klatt, Katrin Bennewitz, et al.Nature Communications|April 14, 2026
Sphingosine-1-Phosphate-derived 2-Hexadecenal is a central mediator of ocular neovascularization by inhibiting Sphingosine-1-Phosphate receptor 5Xin Qian, Rui Ge, Yinteng Chu, et al.Pageof 2