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Hemolysis by asbestos

Environmental Research, 1971
Abstract Chrysotile asbestos hemolyses erythrocytes within 10 minutes and over a wide range of pH. Other forms of asbestos show varying hemolytic activities which are related to the magnesium:silicon ratio of each form studied. Erythrocytes from different species of animals show different degrees of hemolysis when exposed to chrysotile, amosite, and ...
Gwen Macnab   +2 more
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Hemolysis by hexachlorophene

Chemico-Biological Interactions, 1974
Abstract Human erythrocytes were hemolyzed by doses of hexachlorophene (HCP) comparable to those which caused lysis of bacterial protoplasts. The hemolytic doses were about 5 orders of magnitude higher than the reported blood levels in regular hexachlorophene users. Thus, hemolytic phenomena seem unlikely sources of hexachlorophene toxicity.
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Hemolysis with the F21 Hemopump

The International Journal of Artificial Organs, 1995
The aim of this study was to determine the influence of mechanical factors on free hemoglobin using an F21 hemopump cannula. These factors (flow, rotary speed, reduction of the cross section area of the silicone tube and foreign material on the screw) were tested in a mock circulation with ox blood. Irrelevant increases in free hemoglobin were induced
Willem Flameng, A Wiebalck
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Osmotic hemolysis contrasted with freeze-thaw hemolysis

Cryobiology, 1971
Abstract Red blood cell ghosts resulting from osmotic hemolysis in the presence of Mg ions (Mg ghosts) and ghosts resulting from slow freeze-thaw process (freeze-thaw ghosts) differ in many respects: (1) Mg ghosts spontaneously take on the disc shape immediately after hemolysis and resuspension in buffered salt solution; whereas freeze-thaw ghosts ...
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Hemolysis by surfactants — A review

Advances in Colloid and Interface Science, 2016
An overview of the use of surfactants for erythrocyte lysis and their cell membrane action mechanisms is given. Erythrocyte membrane characteristics and its association with the cell cytoskeleton are presented in order to complete understanding of the erythrocyte membrane distortion.
Catherine Perrin   +3 more
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