Torpor enhances synaptic strength and restores memory performance in a mouse model of Alzheimer’s diseaseChristina F. de Veij Mestdagh, Ronald E. van Kesteren, Jaap A. Timmerman et al.|Scientific Reports|2021Cited by 60
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Additional file 14 of The hibernation-derived compound SUL-138 shifts the mitochondrial proteome towards fatty acid metabolism and prevents cognitive decline and amyloid plaque formation in an Alzheimer’s disease mouse modelChristina F. de Veij Mestdagh, Ronald E. van Kesteren, Frank Koopmans et al.|University of Groningen research database (University of Groningen / Centre for Information Technology)|2023Cited by 0
Additional file 16 of The hibernation-derived compound SUL-138 shifts the mitochondrial proteome towards fatty acid metabolism and prevents cognitive decline and amyloid plaque formation in an Alzheimer’s disease mouse modelChristina F. de Veij Mestdagh, Ronald E. van Kesteren, Frank Koopmans et al.|University of Groningen research database (University of Groningen / Centre for Information Technology)|2023Cited by 0
Additional file 15 of The hibernation-derived compound SUL-138 shifts the mitochondrial proteome towards fatty acid metabolism and prevents cognitive decline and amyloid plaque formation in an Alzheimer’s disease mouse modelChristina F. de Veij Mestdagh, Ronald E. van Kesteren, Frank Koopmans et al.|University of Groningen research database (University of Groningen / Centre for Information Technology)|2023Cited by 0