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George A Porter

Showing results (31-40 of 76) with videos related to

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Computational and Structural Biotechnology Journal|December 24, 2025
Low magnetic fields stimulate cardiac mitochondrial bioenergetics with a bell-shaped response: Possibly via a radical pair mechanismGisela Beutner, Huoy-Jen Yuh, Ilan Goldenberg, et al.
Biochimica Et Biophysica Acta. Molecular Basis of Disease|September 29, 2023
Caspase-3 cleaved tau impairs mitochondrial function through the opening of the mitochondrial permeability transition poreMaría José Pérez, Rodrigo Ibarra-García-Padilla, Maoping Tang, et al.
Redox Biology|September 14, 2024
PPARγ drives mitochondrial stress signaling and the loss of atrial cardiomyocytes in newborn mice exposed to hyperoxiaE David Cohen, Kyle Roethlin, Min Yee, et al.
Elife|May 31, 2022
Transcriptional regulation of cyclophilin D by BMP/Smad signaling and its role in osteogenic differentiationRubens Sautchuk, Brianna H Kalicharan, Katherine Escalera-Rivera, et al.
Archives of Biochemistry and Biophysics|December 21, 2018
Dual role of inorganic polyphosphate in cardiac myocytes: The importance of polyP chain length for energy metabolism and mPTP activationLea K Seidlmayer, Maria R Gomez-Garcia, Toshikazu Shiba, et al.
Science (New York, N.Y.)|February 14, 2006
Caspases 3 and 7: key mediators of mitochondrial events of apoptosisSaquib A Lakhani, Ali Masud, Keisuke Kuida, et al.
Nanomedicine : Nanotechnology, Biology, and Medicine|May 19, 2009
Novel sorbents for removal of gadolinium-based contrast agents in sorbent dialysis and hemoperfusion: preventive approaches to nephrogenic systemic fibrosisWassana Yantasee, Glen E Fryxell, George A Porter, et al.
JCI Insight|January 28, 2021
Neonatal hyperoxia inhibits proliferation and survival of atrial cardiomyocytes by suppressing fatty acid synthesisEthan David Cohen, Min Yee, George A Porter, et al.
Developmental Cell|September 17, 2011
The permeability transition pore controls cardiac mitochondrial maturation and myocyte differentiationJennifer R Hom, Rodrigo A Quintanilla, David L Hoffman, et al.
The Journal of Biological Chemistry|March 16, 2018
Metabolomics reveals critical adrenergic regulatory checkpoints in glycolysis and pentose-phosphate pathways in embryonic heartJessica N R Peoples, Timmi Maxmillian, Quynh Le, et al.
Pageof 8

Showing results (31-40 of 76) with videos related to

Sort By:
Pageof 8
Computational and Structural Biotechnology Journal|December 24, 2025
Low magnetic fields stimulate cardiac mitochondrial bioenergetics with a bell-shaped response: Possibly via a radical pair mechanismGisela Beutner, Huoy-Jen Yuh, Ilan Goldenberg, et al.
Biochimica Et Biophysica Acta. Molecular Basis of Disease|September 29, 2023
Caspase-3 cleaved tau impairs mitochondrial function through the opening of the mitochondrial permeability transition poreMaría José Pérez, Rodrigo Ibarra-García-Padilla, Maoping Tang, et al.
Redox Biology|September 14, 2024
PPARγ drives mitochondrial stress signaling and the loss of atrial cardiomyocytes in newborn mice exposed to hyperoxiaE David Cohen, Kyle Roethlin, Min Yee, et al.
Elife|May 31, 2022
Transcriptional regulation of cyclophilin D by BMP/Smad signaling and its role in osteogenic differentiationRubens Sautchuk, Brianna H Kalicharan, Katherine Escalera-Rivera, et al.
Archives of Biochemistry and Biophysics|December 21, 2018
Dual role of inorganic polyphosphate in cardiac myocytes: The importance of polyP chain length for energy metabolism and mPTP activationLea K Seidlmayer, Maria R Gomez-Garcia, Toshikazu Shiba, et al.
Science (New York, N.Y.)|February 14, 2006
Caspases 3 and 7: key mediators of mitochondrial events of apoptosisSaquib A Lakhani, Ali Masud, Keisuke Kuida, et al.
Nanomedicine : Nanotechnology, Biology, and Medicine|May 19, 2009
Novel sorbents for removal of gadolinium-based contrast agents in sorbent dialysis and hemoperfusion: preventive approaches to nephrogenic systemic fibrosisWassana Yantasee, Glen E Fryxell, George A Porter, et al.
JCI Insight|January 28, 2021
Neonatal hyperoxia inhibits proliferation and survival of atrial cardiomyocytes by suppressing fatty acid synthesisEthan David Cohen, Min Yee, George A Porter, et al.
Developmental Cell|September 17, 2011
The permeability transition pore controls cardiac mitochondrial maturation and myocyte differentiationJennifer R Hom, Rodrigo A Quintanilla, David L Hoffman, et al.
The Journal of Biological Chemistry|March 16, 2018
Metabolomics reveals critical adrenergic regulatory checkpoints in glycolysis and pentose-phosphate pathways in embryonic heartJessica N R Peoples, Timmi Maxmillian, Quynh Le, et al.
Pageof 8