The effects of thermal injury on mitochondrial oxygen consumption and the glycerol phosphate shuttle.
暂无分享,去创建一个
C. Goodwin | H. Hu | R. Greif | H. Hu
[1] R. Harris. Carbohydrate metabolism I:major metabolic pathways and their control , 1992 .
[2] Wang Xuemin,et al. Functional changes of the NADH respiratory chain in rat-liver mitochondria and the content changes of high-energy phosphate groups in rat liver and heart during the early phase of burn injury. , 1990 .
[3] M. Redinbaugh,et al. Adaptation of the bicinchoninic acid protein assay for use with microtiter plates and sucrose gradient fractions. , 1986, Analytical biochemistry.
[4] A. Mason,et al. Altered muscle metabolism in rats after thermal injury. , 1982, Metabolism: clinical and experimental.
[5] W. C. McMurray,et al. Regulation of malic enzyme and mitochondrial alpha-glycerophosphate dehydrogenase by thyroid hormones, insulin, and glucocorticoids in cultured hepatocytes. , 1981, The Journal of biological chemistry.
[6] L. Krulich,et al. Hypothyroidism in severely iodine-deficient rats. , 1981, Endocrinology.
[7] A. Mason,et al. Free T4, free T3, and reverse T3 in critically ill, thermally injured patients. , 1980, The Journal of trauma.
[8] A. Mason,et al. The relative significance of thermal and metabolic demands on burn hypermetabolism. , 1979, The Journal of trauma.
[9] F. Ismail-Beigi,et al. Thyroid thermogenesis in adult rat hepatocytes in primary monolayer culture: direct action of thyroid hormone in vitro , 1979, The Journal of general physiology.
[10] A. Mason,et al. Development and analysis of a small animal model simulating the human postburn hypermetabolic response. , 1978, The Journal of surgical research.
[11] A. Mason,et al. Influence of the Burn Wound on Local and Systemic Responses to Injury , 1977, Annals of surgery.
[12] J. Rulfs,et al. Liver and skeletal muscle mitochondrial function following burn injury. , 1977, The Journal of trauma.
[13] C. Goodwin,et al. In vivo control of mitochondrial enzyme concentrations and activity by oxygen. , 1976, The American journal of physiology.
[14] C. Goodwin,et al. Correlation of mitochondrial cytochrome concentration and activity to oxygen availability in the newborn. , 1975, Biochemical and biophysical research communications.
[15] A. Mason,et al. Catecholamines: Znediator of the Hypermetabolic Response to Thermal Injury , 1974, Annals of surgery.
[16] L. Miller,et al. Role of Intracellular Variations of Lysosomal Enzyme Activity and Oxygen Tension in Mitochondria! Impairment in Endotoxemia and Hemorrhage in the Rat , 1973, Annals of Surgery.
[17] L. Mela,et al. Cardiac mitochondrial activity in acute and chronic cyanosis. , 1973, The Journal of surgical research.
[18] M. Klingenberg,et al. Localization of the glycerol-phosphate dehydrogenase in the outer phase of the mitochondrial inner membrane. , 1970, European journal of biochemistry.
[19] B. Zawacki,et al. Does Increased Evaporative Water Loss Cause Hypermetabolism in Burned Patients? , 1970, Annals of surgery.
[20] A. Mason,et al. A standard animal burn. , 1968, The Journal of trauma.
[21] O. Z. Sellinger,et al. Induction of Mitochondrial α-Glycerophosphate Dehydrogenase by Thyroid Stimulating Hormone and Thyroid Hormone Analogues.∗ , 1967, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[22] J. Seaton,et al. Relationship of Increased Oxygen Consumption to Catecholamine Excretion in Thermal Bums , 1967, Annals of surgery.
[23] G. H. Newman,et al. Specificity of the α-Glycerophosphate Dehydrogenase and Malic Enzyme Response to Thyroxine , 1965 .
[24] H. Lardy,et al. INFLUENCE OF THYROID HORMONES ON L-ALPHA-GLYCEROPHOSPHATE DEHYDROGENASES AND OTHER DEHYDROGENASES IN VARIOUS ORGANS OF THE RAT. , 1965, The Journal of biological chemistry.
[25] A. Takemori,et al. Enhanced oxidation of α-glycerophosphate by mitochondria of thyroid-fed rats. , 1959 .
[26] R. Estabrook,et al. alpha-Glycerophosphate oxidase of flight muscle mitochondria. , 1958, The Journal of biological chemistry.