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Life (Basel, Switzerland)|February 25, 2022
Impaired Mitochondrial Bioenergetics under Pathological ConditionsSalvatore Nesci, Giorgio LenazMitochondrion|December 1, 2023
Understanding differential aspects of microdiffusion (channeling) in the Coenzyme Q and Cytochrome c regions of the mitochondrial respiratory systemGiorgio Lenaz, Salvatore Nesci, Maria Luisa GenovaBiochimica Et Biophysica Acta. Bioenergetics|April 14, 2023
Two separate pathways underlie NADH and succinate oxidation in swine heart mitochondria: Kinetic evidence on the mobile electron carriersSalvatore Nesci, Cristina Algieri, Fabiana Trombetti, et al.Life (Basel, Switzerland)|April 3, 2021
Molecular and Supramolecular Structure of the Mitochondrial Oxidative Phosphorylation System: Implications for PathologySalvatore Nesci, Fabiana Trombetti, Alessandra Pagliarani, et al.EMBO Reports|July 27, 2017
Mitochondrial permeability transition, F1 FO -ATPase and calcium: an enigmatic triangleSalvatore NesciInternational Review of Cell and Molecular Biology|June 2, 2023
Bacterial and mammalian FSalvatore NesciMedicinal Research Reviews|October 17, 2019
The mitochondrial permeability transition pore in cell death: A promising drug binding bioarchitectureSalvatore NesciBiomedicines|March 28, 2026
Mitochondrial Dysfunction in the Inflammatory Process of Neurodegenerative DiseasesSalvatore NesciChemical Biology & Drug Design|May 28, 2021
SARS-CoV-2 first contact: Spike-ACE2 interactions in COVID-19Salvatore NesciBiochimie|April 3, 2022
What happens when the mitochondrial H+-translocating F1FO-ATP(hydrol)ase becomes a molecular target of calcium? The pore opensSalvatore NesciPageof 19