benzofurans and Leukemia--Basophilic--Acute

benzofurans has been researched along with Leukemia--Basophilic--Acute* in 2 studies

Other Studies

2 other study(ies) available for benzofurans and Leukemia--Basophilic--Acute

ArticleYear
The effect of mitochondrial inhibitors on calcium homeostasis in tumor mast cells.
    The American journal of physiology, 1990, Volume: 258, Issue:2 Pt 1

    The depletion of intracellular ATP by mitochondrial inhibitors in a glucose-free saline solution inhibited antigen-stimulated 45Ca uptake, the rise in cytoplasmic calcium, measured by fura-2, and secretion in rat basophilic leukemia cells. Lowering the intracellular ATP concentration also released calcium from an intracellular store and made further 45Ca efflux from the cells unresponsive to subsequent antigen stimulation. Antigen-stimulated 45Ca efflux could be restored by the addition of glucose. The ATP-sensitive calcium store appeared to be the same store that releases calcium in response to antigen. In contrast, intracellular ATP was not lowered, and antigen-stimulated secretion was unaffected by mitochondrial inhibitors, provided that glucose was present in the bathing solution. Similarly, antigen-stimulated 45Ca uptake, 45Ca efflux, and the rise in free ionized calcium were unaffected by individual mitochondrial inhibitors in the presence of glucose. However, when the respiratory chain inhibitor antimycin A was used in combination with the ATP synthetase inhibitor oligomycin in the presence of glucose, antigen-stimulated 45Ca uptake was inhibited, whereas the rise in free ionized calcium and secretion were unaffected. Also, antigen-induced depolarization (an indirect measurement of Ca2+ influx across the plasma membrane) was not affected. The inhibition of antigen-stimulated 45Ca uptake could, however, be overcome if a high concentration of the Ca2+ buffer quin2 was present in the cells to buffer the incoming 45Ca. These results suggest that in fully functional rat basophilic leukemia cells the majority of the calcium entering in response to antigen stimulation is initially buffered by a calcium store sensitive to antimycin A and oligomycin, presumably the mitochondria.

    Topics: Adenosine Triphosphate; Animals; Antigens; Antimycin A; Azides; Benzofurans; beta-N-Acetylhexosaminidases; Calcium; Calcium Radioisotopes; Cell Survival; Cytosol; Fluorescent Dyes; Fura-2; Homeostasis; Kinetics; Leukemia, Basophilic, Acute; Leukemia, Experimental; Mast Cells; Mitochondria; Oligomycins; Rats; Rotenone; Serotonin; Sodium Azide; Tumor Cells, Cultured

1990
Immunoglobulin E receptor cross-linking induces oscillations in intracellular free ionized calcium in individual tumor mast cells.
    The Journal of biological chemistry, 1989, Nov-25, Volume: 264, Issue:33

    Fura-2 fluorescence in single rat basophilic leukemia cells was monitored to study the rise in intracellular free ionized calcium ([Ca2+]i) produced by aggregation of immunoglobulin E receptors. Repetitive transient increases in [Ca2+]i were induced by antigen stimulation and were measured using digital video imaging microscopy at high time resolution. The [Ca2+]i oscillations were not dependent upon changes in the membrane potential of the cells and were observed in cells stimulated with antigen either with or without extracellular Ca2+. Transient oscillations in [Ca2+]i were also observed when calcium influx was blocked with La3+. These results suggested that during antigen stimulation of cells under normal physiological conditions, release of Ca2+ from intracellular stores makes an important contribution to the initial increase in [Ca2+]i. Oscillations in [Ca2+]i are not induced by elevating [Ca2+]i with the calcium ionophore ionomycin. Mitochondrial calcium buffering is not required for [Ca2+]i oscillations to occur. The results show that rat basophilic leukemia cells have significant stores of calcium and that release of calcium from these stores can participate in both the initial rise and the oscillations in [Ca2+]i.

    Topics: Adenosine Triphosphate; Animals; Antigens, Differentiation, B-Lymphocyte; Benzofurans; Calcium; Cell Line; Cell Membrane; Fluorescent Dyes; Fura-2; Immunoglobulin G; Kinetics; Leukemia, Basophilic, Acute; Mast Cells; Membrane Potentials; Oscillometry; Rats; Receptors, Fc; Receptors, IgE; Sulfinpyrazone

1989