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Aging Cell|March 12, 2015
Relation between TLR4/NF-κB signaling pathway activation by 27-hydroxycholesterol and 4-hydroxynonenal, and atherosclerotic plaque instabilitySimona Gargiulo, Paola Gamba, Gabriella Testa, et al.Antioxidants (Basel, Switzerland)|June 2, 2021
The Controversial Role of 24-S-Hydroxycholesterol in Alzheimer's DiseasePaola Gamba, Serena Giannelli, Erica Staurenghi, et al.Biochimie|December 28, 2020
Up-regulation of PCSK6 by lipid oxidation products: A possible role in atherosclerosisGabriella Testa, Erica Staurenghi, Serena Giannelli, et al.Free Radical Biology & Medicine|October 13, 2018
Up-regulation of COX-2 and mPGES-1 by 27-hydroxycholesterol and 4-hydroxynonenal: A crucial role in atherosclerotic plaque instabilitySimona Gargiulo, Daniela Rossin, Gabriella Testa, et al.International Journal of Molecular Sciences|January 8, 2025
The Emerging Role of PCSK9 in the Pathogenesis of Alzheimer's Disease: A Possible Target for the Disease TreatmentGabriella Testa, Serena Giannelli, Erica Staurenghi, et al.Free Radical Biology & Medicine|July 18, 2006
c-Jun N-terminal kinase upregulation as a key event in the proapoptotic interaction between transforming growth factor-beta1 and 4-hydroxynonenal in colon mucosaFiorella Biasi, Barbara Vizio, Cinzia Mascia, et al.Free Radical Biology & Medicine|December 23, 2015
Nrf2 antioxidant defense is involved in survival signaling elicited by 27-hydroxycholesterol in human promonocytic cellsBeyza Vurusaner, Paola Gamba, Simona Gargiulo, et al.Free Radical Biology & Medicine|October 14, 2015
Modulation of cell signaling pathways by oxysterols in age-related human diseasesGabriella Leonarduzzi, Simona Gargiulo, Paola Gamba, et al.Antioxidants (Basel, Switzerland)|March 29, 2023
24-Hydroxycholesterol Induces Tau Proteasome-Dependent Degradation via the SIRT1/PGC1α/Nrf2 Pathway: A Potential Mechanism to Counteract Alzheimer's DiseaseGabriella Testa, Serena Giannelli, Barbara Sottero, et al.Free Radical Biology & Medicine|September 26, 2009
Pro-oxidant and proapoptotic effects of cholesterol oxidation products on human colonic epithelial cells: a potential mechanism of inflammatory bowel disease progressionFiorella Biasi, Cinzia Mascia, Marco Astegiano, et al.Pageof 7