Results 231 to 240 of about 151,444 (264)
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Agglutinins for Human Erythrocytes in Mollusks
The Journal of Immunology, 1966Summary A number of mollusks have in their expressed body fluids substances that react with human erythrocytes. The snail Otala lactea contains a powerful and specific anti-A agglutinin that precipitates promptly and specifically with blood group A substance prepared from hog gastric mucin.
W C, Boyd, R, Brown, L G, Boyd
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CD95 is not functional in human erythrocytes
International Journal of Laboratory Hematology, 2010SummaryIntroduction: The CD95 pathway is a potent inducer of apoptosis in nucleated cells and this death receptor is important for proper blood cell development. Although it is expressed in red blood cells, its functional role in erythrocytes is not well documented.
D, Sagan +2 more
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Phosphorus compounds in the human erythrocyte
Biochimica et Biophysica Acta (BBA) - General Subjects, 1968Abstract 1. 1. A procedure using column chromatography on Dowex 1 formate with gradient elution by ammonium formate buffer is recommended for the isolation of the water-soluble phosphate compounds of the human erythrocyte. The elution positions of many known compounds of biological interest were determined. 2. 2. Metabolic turnover values for
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Bartonella quintana in human erythrocytes
The Lancet, 2002Bartonella quintana is transmitted by body lice among homeless people. Infection with this organism leads to chronic bacteraemia with few symptoms. We looked for B quintana in erythrocytes in a population of homeless people in Marseille, France. In this report we show the intraerythrocytic presence of B quintana in people with symptomless bacteraemia ...
Jean-Marc, Rolain +5 more
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Human Fetomaternal Passage of Erythrocytes
New England Journal of Medicine, 1957IN 1941 Levine et al.1 proposed an etiology for erythroblastosis fetalis that required the entrance of fetal red blood cells into the maternal circulation. This requirement then led to the question of whether fetal erythrocytes enter the maternal circulation only in the disease, erythroblastosis fetalis, or do so also in many normal pregnancies. Levine
W P, GREGER, M R, STEELE
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Metabolism of acetaldehyde by human erythrocytes
Life Sciences, 1978Abstract Acetaldehyde metabolism in human erythrocytes was studied using head-space gas chromatographic determination methods, and it was found that acetaldehyde is metabolized in erythrocytes by NAD dependent cytosolic enzyme having an apparent Km value for acetaldehyde approximately 0.7 mM at pH 7.4, and more than 50% of this activity was reduced ...
K, Inoue, Y, Ohbora, K, Yamasawa
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MINOR PROTEINS IN HUMAN ERYTHROCYTES
Canadian Journal of Biochemistry and Physiology, 1961A study of 200 normal human blood samples, by the agar electrophoresis method, revealed that human haemolyzates contain two minor proteins in addition to the normal adult haemoglobin. The two minor proteins appearing in very low concentrations are non-haemoglobin in character, give a negative reaction to benzidine test, but a positive reaction to amido-
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Inorganic Phosphate in Human Erythrocytes
Scandinavian Journal of Clinical and Laboratory Investigation, 1957AbstractThis work was supported by Contract DA 49–007-MD-435 with the Department of the Army, Office of the Surgeon General, Medical Research and Development Board, Washington, D. C, and by Contract H-1142 (C-5) with the Department of Health, Education, and Welfare, U. S. Public Health Service, National Institutes of Health, Bethesda, Maryland, U. S. A.
O E, SKAUG, R A, NATVIG
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Purine Release by Human Erythrocytes
1984The importance of blood and, in particular, of erythrocytes as a vehicle for transport of purines is well known1,2. Considerable quantities of purines enter and leave the nucleotide pools of red cells which take up adenine, guanine, hypoxanthine, and xanthine and convert them into nucleotides.
GIACOMELLO, Alessandro +1 more
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ATP compartmentation in human erythrocytes
Current Opinion in Hematology, 1997This review covers not only the current status of the field but also the evidence on which the concept of ATP compartmentation is based. It is hoped that such a survey may help to stimulate work in this area and to broaden the appreciation of its reality and functions. Some may be surprised to learn that mature human erythrocytes, known to be devoid of
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