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Cristiana Perrotta

Showing results (1-10 of 78) with videos related to

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Physiology (Bethesda, Md.)|May 1, 2010
Biological roles of Acid and neutral sphingomyelinases and their regulation by nitric oxideCristiana Perrotta, Emilio Clementi
Biological Chemistry|September 12, 2008
Nitric oxide and sphingolipids: mechanisms of interaction and role in cellular pathophysiologyCristiana Perrotta, Clara De Palma, Emilio Clementi
Drug Safety|August 5, 2015
Vaccine-Drug Interactions: Cytokines, Cytochromes, and Molecular MechanismsPaolo Pellegrino, Cristiana Perrotta, Emilio Clementi, et al.
Frontiers in Cellular Neuroscience|July 10, 2015
Hormones and immunity in cancer: are thyroid hormones endocrine players in the microglia/glioma cross-talk?Cristiana Perrotta, Clara De Palma, Emilio Clementi, et al.
Biomed Research International|June 9, 2017
Current Evidence for a Role of Neuropeptides in the Regulation of AutophagyElisabetta Catalani, Clara De Palma, Cristiana Perrotta, et al.
Cancers|November 27, 2021
Oxidative Stress and Autophagy as Key Targets in Melanoma Cell FateElisabetta Catalani, Matteo Giovarelli, Silvia Zecchini, et al.
Toxicology Letters|July 8, 2015
Silver nanoparticles-induced cytotoxicity requires ERK activation in human bladder carcinoma cellsSara Castiglioni, Alessandra Cazzaniga, Cristiana Perrotta, et al.
Frontiers in Cell and Developmental Biology|December 28, 2020
Autophagy in the Regulation of Tissue Differentiation and HomeostasisCristiana Perrotta, Maria Grazia Cattaneo, Raffaella Molteni, et al.
Life Sciences|June 11, 2005
Nitric oxide, ceramide and sphingomyelinase-coupled receptors: a tale of enzymes and messengers coordinating cell death, survival and differentiationCristiana Perrotta, Clara De Palma, Sestina Falcone, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|November 5, 2005
Endothelial nitric oxide synthase activation by tumor necrosis factor alpha through neutral sphingomyelinase 2, sphingosine kinase 1, and sphingosine 1 phosphate receptors: a novel pathway relevant to the pathophysiology of endotheliumClara De Palma, Elisabetta Meacci, Cristiana Perrotta, et al.
Pageof 8

Showing results (1-10 of 78) with videos related to

Sort By:
Pageof 8
Physiology (Bethesda, Md.)|May 1, 2010
Biological roles of Acid and neutral sphingomyelinases and their regulation by nitric oxideCristiana Perrotta, Emilio Clementi
Biological Chemistry|September 12, 2008
Nitric oxide and sphingolipids: mechanisms of interaction and role in cellular pathophysiologyCristiana Perrotta, Clara De Palma, Emilio Clementi
Drug Safety|August 5, 2015
Vaccine-Drug Interactions: Cytokines, Cytochromes, and Molecular MechanismsPaolo Pellegrino, Cristiana Perrotta, Emilio Clementi, et al.
Frontiers in Cellular Neuroscience|July 10, 2015
Hormones and immunity in cancer: are thyroid hormones endocrine players in the microglia/glioma cross-talk?Cristiana Perrotta, Clara De Palma, Emilio Clementi, et al.
Biomed Research International|June 9, 2017
Current Evidence for a Role of Neuropeptides in the Regulation of AutophagyElisabetta Catalani, Clara De Palma, Cristiana Perrotta, et al.
Cancers|November 27, 2021
Oxidative Stress and Autophagy as Key Targets in Melanoma Cell FateElisabetta Catalani, Matteo Giovarelli, Silvia Zecchini, et al.
Toxicology Letters|July 8, 2015
Silver nanoparticles-induced cytotoxicity requires ERK activation in human bladder carcinoma cellsSara Castiglioni, Alessandra Cazzaniga, Cristiana Perrotta, et al.
Frontiers in Cell and Developmental Biology|December 28, 2020
Autophagy in the Regulation of Tissue Differentiation and HomeostasisCristiana Perrotta, Maria Grazia Cattaneo, Raffaella Molteni, et al.
Life Sciences|June 11, 2005
Nitric oxide, ceramide and sphingomyelinase-coupled receptors: a tale of enzymes and messengers coordinating cell death, survival and differentiationCristiana Perrotta, Clara De Palma, Sestina Falcone, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|November 5, 2005
Endothelial nitric oxide synthase activation by tumor necrosis factor alpha through neutral sphingomyelinase 2, sphingosine kinase 1, and sphingosine 1 phosphate receptors: a novel pathway relevant to the pathophysiology of endotheliumClara De Palma, Elisabetta Meacci, Cristiana Perrotta, et al.
Pageof 8