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Genome Biology and Evolution|November 26, 2013
Complex tissue-specific patterns and distribution of multiple RAGE splice variants in different mammalsRaquel López-Díez, Alberto Rastrojo, Olatz Villate, et al.Biochimica Et Biophysica Acta|May 12, 2016
Cellular mechanisms and consequences of glycation in atherosclerosis and obesityRaquel López-Díez, Alexander Shekhtman, Ravichandran Ramasamy, et al.Frontiers in Cardiovascular Medicine|July 11, 2022
Glycation and a Spark of ALEs (Advanced Lipoxidation End Products) - Igniting RAGE/Diaphanous-1 and Cardiometabolic DiseaseLakshmi Arivazhagan, Raquel López-Díez, Alexander Shekhtman, et al.Communications Biology|March 1, 2022
Neuronal-glial communication perturbations in murine SOD1G93A spinal cordMichael MacLean, Raquel López-Díez, Carolina Vasquez, et al.Current Cardiology Reports|June 3, 2021
Diabetes and Cardiovascular Complications: The Epidemics ContinueRaquel López-Díez, Lander Egaña-Gorroño, Laura Senatus, et al.JAMIA Open|October 29, 2025
Deploying machine learning models in clinical settings: a real-world feasibility analysis for a model identifying adult-onset type 1 diabetes initially classified as type 2Irene Brusini, Suyin Lee, Jacob Hollingsworth, et al.Frontiers in Cardiovascular Medicine|March 27, 2020
Receptor for Advanced Glycation End Products (RAGE) and Mechanisms and Therapeutic Opportunities in Diabetes and Cardiovascular Disease: Insights From Human Subjects and Animal ModelsLander Egaña-Gorroño, Raquel López-Díez, Gautham Yepuri, et al.Journal of Neuroinflammation|June 16, 2021
Microglia RAGE exacerbates the progression of neurodegeneration within the SOD1G93A murine model of amyotrophic lateral sclerosis in a sex-dependent mannerMichael MacLean, Judyta Juranek, Swetha Cuddapah, et al.Immunometabolism|June 28, 2021
Inflammation Meets Metabolism: Roles for the Receptor for Advanced Glycation End Products Axis in Cardiovascular DiseaseLaura Senatus, Michael MacLean, Lakshmi Arivazhagan, et al.Arteriosclerosis, Thrombosis, and Vascular Biology|June 24, 2017
Ager Deletion Enhances Ischemic Muscle Inflammation, Angiogenesis, and Blood Flow Recovery in Diabetic MiceRaquel López-Díez, Xiaoping Shen, Gurdip Daffu, et al.Pageof 2