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Free Radical Biology & Medicine
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June 1, 1994
Magnesium-deficiency potentiates free radical production associated with postischemic injury to rat hearts: vitamin E affords protection
J H Kramer, V Misík, W B Weglicki
Biochimica Et Biophysica Acta
|
December 31, 1997
Iron potentiates nitric oxide scavenging by dithiocarbamates in tissue of septic shock mice
A M Komarov, I T Mak, W B Weglicki
Free Radical Research Communications
|
January 1, 1989
Spin trapping of free radicals formed during peroxidation of sarcolemmal membranes (SLM)
C M Arroyo, I T Mak, W B Weglicki
Cellular and Molecular Biology (Noisy-Le-Grand, France)
|
January 13, 2001
Cardiac tissue iron: effects on post-ischemic function and free radical production, and its possible role during preconditioning
J H Kramer, F G Lightfoot, W B Weglicki
Magnesium and Trace Elements
|
January 1, 1991
Propranolol reduces cardiomyopathic injury induced by magnesium deficiency
A M Freedman, M M Cassidy, W B Weglicki
The Journal of Biological Chemistry
|
January 25, 1986
Potentiation of free radical-induced lipid peroxidative injury to sarcolemmal membranes by lipid amphiphiles
I T Mak, J H Kramer, W B Weglicki
Magnesium Research
|
September 1, 1991
Magnesium-deficient myocardium demonstrates an increased susceptibility to an in vivo oxidative stress
A M Freedman, M M Cassidy, W B Weglicki
The Biochemical Journal
|
August 1, 1984
Multiple forms of phosphoinositide-specific phospholipase C of different relative molecular masses in animal tissues. Evidence for modification of the platelet enzyme by Ca2+-dependent proteinase
M G Low, R C Carroll, W B Weglicki
Circulation Research
|
July 1, 1984
Differential sensitivity of canine cardiac sarcolemmal and microsomal enzymes to inhibition by free radical-induced lipid peroxidation
J H Kramer, I T Mak, W B Weglicki
Circulation Research
|
October 1, 1989
Inhibition of sarcolemmal carbon-centered free radical formation by propranolol
I T Mak, C M Arroyo, W B Weglicki
Page
of 11
Search research articles
Search
Showing results (31-40 of 107) with videos related to
Sort By:
Page
of 11
Free Radical Biology & Medicine
|
June 1, 1994
Magnesium-deficiency potentiates free radical production associated with postischemic injury to rat hearts: vitamin E affords protection
J H Kramer, V Misík, W B Weglicki
Biochimica Et Biophysica Acta
|
December 31, 1997
Iron potentiates nitric oxide scavenging by dithiocarbamates in tissue of septic shock mice
A M Komarov, I T Mak, W B Weglicki
Free Radical Research Communications
|
January 1, 1989
Spin trapping of free radicals formed during peroxidation of sarcolemmal membranes (SLM)
C M Arroyo, I T Mak, W B Weglicki
Cellular and Molecular Biology (Noisy-Le-Grand, France)
|
January 13, 2001
Cardiac tissue iron: effects on post-ischemic function and free radical production, and its possible role during preconditioning
J H Kramer, F G Lightfoot, W B Weglicki
Magnesium and Trace Elements
|
January 1, 1991
Propranolol reduces cardiomyopathic injury induced by magnesium deficiency
A M Freedman, M M Cassidy, W B Weglicki
The Journal of Biological Chemistry
|
January 25, 1986
Potentiation of free radical-induced lipid peroxidative injury to sarcolemmal membranes by lipid amphiphiles
I T Mak, J H Kramer, W B Weglicki
Magnesium Research
|
September 1, 1991
Magnesium-deficient myocardium demonstrates an increased susceptibility to an in vivo oxidative stress
A M Freedman, M M Cassidy, W B Weglicki
The Biochemical Journal
|
August 1, 1984
Multiple forms of phosphoinositide-specific phospholipase C of different relative molecular masses in animal tissues. Evidence for modification of the platelet enzyme by Ca2+-dependent proteinase
M G Low, R C Carroll, W B Weglicki
Circulation Research
|
July 1, 1984
Differential sensitivity of canine cardiac sarcolemmal and microsomal enzymes to inhibition by free radical-induced lipid peroxidation
J H Kramer, I T Mak, W B Weglicki
Circulation Research
|
October 1, 1989
Inhibition of sarcolemmal carbon-centered free radical formation by propranolol
I T Mak, C M Arroyo, W B Weglicki
Page
of 11