Charles G. Cochrane mostly deals with Biochemistry, Immunology, Antibody, Molecular biology and Antigen. His Biochemistry study frequently links to other fields, such as Factor XII. His Immunology research incorporates elements of Acetylcholine receptor, Postsynaptic potential and Neuromuscular transmission.
His Antibody research incorporates elements of Glomerulonephritis, Immune system and Globulin. His work deals with themes such as DNA damage, Platelet-activating factor receptor, Conserved sequence, cDNA library and Nicotinamide adenine dinucleotide, which intersect with Molecular biology. The concepts of his Antigen study are interwoven with issues in Vasculitis and Guinea pig.
His primary areas of study are Biochemistry, Immunology, Molecular biology, Antibody and Pulmonary surfactant. His research ties Factor XII and Biochemistry together. In Immunology, Charles G. Cochrane works on issues like Bronchoalveolar lavage, which are connected to ARDS.
His Molecular biology research integrates issues from In vitro and DNA damage. His studies in Antibody integrate themes in fields like Guinea pig, Immune system, Antigen and Pathology. His work in Pulmonary surfactant covers topics such as Respiratory distress which are related to areas like Lung.
Charles G. Cochrane mainly focuses on Biochemistry, Pulmonary surfactant, Receptor, Cell biology and Molecular biology. His Biochemistry study often links to related topics such as Transfection. He has researched Pulmonary surfactant in several fields, including Amino acid residue, Phospholipid, Respiratory distress and Sequence.
His Molecular biology research incorporates themes from cDNA library and Interleukin 8. Interleukin 8 is a subfield of Immunology that Charles G. Cochrane tackles. His Immunology study combines topics in areas such as Kininogen, Function and Histamine.
Charles G. Cochrane mainly investigates Receptor, Biochemistry, Anesthesia, Molecular biology and Bronchoalveolar lavage. His Receptor study incorporates themes from In vitro and Cell biology. His research in NAD+ kinase, DNA, Oxidative phosphorylation, DNA damage and Glyceraldehyde 3-phosphate dehydrogenase are components of Biochemistry.
His research integrates issues of Inflammation, Interleukin, Interleukin 8, Cytokine and Lipopolysaccharide in his study of Molecular biology. His studies deal with areas such as ARDS and Surgery as well as Bronchoalveolar lavage. Charles G. Cochrane has included themes like Neutrophil elastase, Elastase, Pulmonary Injury and Immunology in his ARDS study.
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LEUKOCYTE-DEPENDENT HISTAMINE RELEASE FROM RABBIT PLATELETS THE ROLE OF IGE, BASOPHILS, AND A PLATELET-ACTIVATING FACTOR
Jacques Benveniste;Peter M. Henson;Charles G. Cochrane.
Journal of Experimental Medicine (1972)
Mechanisms of oxidant-mediated cell injury. The glycolytic and mitochondrial pathways of ADP phosphorylation are major intracellular targets inactivated by hydrogen peroxide.
P A Hyslop;D B Hinshaw;W A Halsey;I U Schraufstätter.
Journal of Biological Chemistry (1988)
Immune Complex Disease in Experimental Animals and Man
C G Cochrane;D Koffler.
Advances in Immunology (1973)
Oxidant injury of cells. DNA strand-breaks activate polyadenosine diphosphate-ribose polymerase and lead to depletion of nicotinamide adenine dinucleotide.
I U Schraufstatter;D B Hinshaw;P A Hyslop;R G Spragg.
Journal of Clinical Investigation (1986)
Hydrogen peroxide-induced injury of cells and its prevention by inhibitors of poly(ADP-ribose) polymerase
Ingrid U. Schraufstatter;Paul A. Hyslop;Daniel B. Hinshaw;Roger G. Spragg.
Proceedings of the National Academy of Sciences of the United States of America (1986)
Depletion of Plasma Complement in Vivo by a Protein of Cobra Venom: Its Effect on Various Immunologic Reactions
Charles G. Cochrane;Hans J. Müller-Eberhard;Barbara S. Aikin.
Journal of Immunology (1970)
Purified cytochrome b from human granulocyte plasma membrane is comprised of two polypeptides with relative molecular weights of 91,000 and 22,000.
Charles A. Parkos;Rodger A. Allen;Charles G. Cochrane;Algirdas J. Jesaitis.
Journal of Clinical Investigation (1987)
THE DERIVATION OF TWO DISTINCT ANAPHYLATOXIN ACTIVITIES FROM THE THIRD AND FIFTH COMPONENTS OF HUMAN COMPLEMENT
C. G. Cochrane;H. J. Müller-Eberhard.
Journal of Experimental Medicine (1968)
Isolation of a fragment (C3a) of the third component of human complement containing anaphylatoxin and chemotactic activity and description of an anaphylatoxin inactivator of human serum.
Viktor A. Bokisch;Hans J. Müller-Eberhard;Charles G. Cochrane.
Journal of Experimental Medicine (1969)
A ROLE OF POLYMORPHONUCLEAR LEUKOCYTES AND COMPLEMENT IN NEPHROTOXIC NEPHRITIS.
Charles G. Cochrane;Emil R. Unanue;Frank J. Dixon.
Journal of Experimental Medicine (1965)
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