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G Szabadkai

Showing results (1-10 of 28) with videos related to

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IUBMB Life|January 19, 2002
Mitochondrial calcium homeostasis: mechanisms and moleculesG Vandecasteele, G Szabadkai, R Rizzuto
Biochemical Pharmacology|January 16, 1999
Selective inhibition of potassium-stimulated rat adrenal glomerulosa cells by ruthenium redG Szabadkai, P Várnai, P Enyedi
Pflugers Archiv : European Journal of Physiology|April 11, 2001
Cytoplasmic Ca2+ at low submicromolar concentration stimulates mitochondrial metabolism in rat luteal cellsG Szabadkai, J G Pitter, A Spät
Endocrine Research|January 15, 1999
Expression of voltage-dependent calcium channel alpha1 subunits in rat adrenal capsular tissue and single glomerulosa cellsG Szabadkai, A Horváth, A Spat, et al.
Endocrine Research|February 24, 2001
Calcium signal and mitochondrial metabolism in steroid producing cellsA Spät, J Pitter, T Rohács, et al.
News in Physiological Sciences : an International Journal of Physiology Produced Jointly by the International Union of Physiological Sciences and the American Physiological Society|September 27, 2001
Stimulus-secretion coupling and mitochondrial metabolism in steroid-secreting cellsA Spät, J G Pitter, T Rohács, et al.
Endocrine Research|November 1, 1996
The role of voltage-dependent calcium channels in angiotensin-stimulated glomerulosa cellsA Spät, T Rohács, A Horváth, et al.
Endocrinology|June 1, 1994
Inositol 1,4,5-trisphosphate receptor subtypes in adrenal glomerulosa cellsP Enyedi, G Szabadkai, A Horváth, et al.
Cell Calcium|June 1, 1993
Inositol 1,4,5-trisphosphate binding sites copurify with the putative Ca-storage protein calreticulin in rat liverP Enyedi, G Szabadkai, K H Krause, et al.
Cell Death and Differentiation|October 22, 2011
SCaMC-1 promotes cancer cell survival by desensitizing mitochondrial permeability transition via ATP/ADP-mediated matrix Ca(2+) bufferingJ Traba, A Del Arco, M R Duchen, et al.
Pageof 3

Showing results (1-10 of 28) with videos related to

Sort By:
Pageof 3
IUBMB Life|January 19, 2002
Mitochondrial calcium homeostasis: mechanisms and moleculesG Vandecasteele, G Szabadkai, R Rizzuto
Biochemical Pharmacology|January 16, 1999
Selective inhibition of potassium-stimulated rat adrenal glomerulosa cells by ruthenium redG Szabadkai, P Várnai, P Enyedi
Pflugers Archiv : European Journal of Physiology|April 11, 2001
Cytoplasmic Ca2+ at low submicromolar concentration stimulates mitochondrial metabolism in rat luteal cellsG Szabadkai, J G Pitter, A Spät
Endocrine Research|January 15, 1999
Expression of voltage-dependent calcium channel alpha1 subunits in rat adrenal capsular tissue and single glomerulosa cellsG Szabadkai, A Horváth, A Spat, et al.
Endocrine Research|February 24, 2001
Calcium signal and mitochondrial metabolism in steroid producing cellsA Spät, J Pitter, T Rohács, et al.
News in Physiological Sciences : an International Journal of Physiology Produced Jointly by the International Union of Physiological Sciences and the American Physiological Society|September 27, 2001
Stimulus-secretion coupling and mitochondrial metabolism in steroid-secreting cellsA Spät, J G Pitter, T Rohács, et al.
Endocrine Research|November 1, 1996
The role of voltage-dependent calcium channels in angiotensin-stimulated glomerulosa cellsA Spät, T Rohács, A Horváth, et al.
Endocrinology|June 1, 1994
Inositol 1,4,5-trisphosphate receptor subtypes in adrenal glomerulosa cellsP Enyedi, G Szabadkai, A Horváth, et al.
Cell Calcium|June 1, 1993
Inositol 1,4,5-trisphosphate binding sites copurify with the putative Ca-storage protein calreticulin in rat liverP Enyedi, G Szabadkai, K H Krause, et al.
Cell Death and Differentiation|October 22, 2011
SCaMC-1 promotes cancer cell survival by desensitizing mitochondrial permeability transition via ATP/ADP-mediated matrix Ca(2+) bufferingJ Traba, A Del Arco, M R Duchen, et al.
Pageof 3