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Biomedical subjects

B Lineberger

Publications and source records attributed to B Lineberger.

2 recordsLinked to original sources

Permeabilization of platelets: an investigation of biochemical, ultrastructural and functional aspects.

The biochemical, ultrastructural and functional aspects of digitonin-permeabilized platelets were investigated. Human platelets were permeabilized by exposure to the steroid glycoside digitonin. A 60 microM concentration of this permeabilizer produced a very substantial release of cytosolic enzymes from the platelets. Release from subcellular granules was relatively low and did not inhibit the response of platelets to a series of agonists. Although digitonin-permeabilized platelets required higher threshold concentrations of the usual stimulants, both primary and secondary aggregation as well as the release of nucleotides and enzymes from their respective granules remained intact. Transmission electron micrographs revealed discontinuities in the plasma membrane of digitonin-treated platelets, but scanning electron microscopy showed no difference between control and permeabilized platelets. No substantial loss of structural or membrane proteins could be detected by one- and two-dimensional gel electrophoresis. The pore size produced by digitonin treatment was sufficient to allow entry of 125I-labeled IgG into the platelet cytosolic space.

Adenine Nucleotides↗

Alpha-tocopherol, a potent modulator of endothelial cell function.

The effect of alpha-tocopherol on various endothelial cell functions was evaluated in vitro using cultures of human umbilical vein endothelial cells. Prostacyclin synthesis, plasminogen activator activity and von Willebrand factor activity were evaluated in control and alpha-tocopherol supplemented cultures. Alpha-tocopherol produced stimulation of prostacyclin production which peaked at or near 0.5 mM. Plasminogen activator activity was markedly reduced by the addition of alpha-tocopherol. Von Willebrand factor activity showed a significant decrease of processed and cellular forms that was dose-dependent. The incorporation of alpha-tocopherol into endothelial cells could be demonstrated by measuring intracellular levels of the vitamin in washed endothelial cells. Our results show that alpha-tocopherol has a profound effect on multiple endothelial cell functions which are intimately involved in hemostasis.

Cells, Cultured↗