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  • Electronic Resource  (2)
  • calcium  (1)
  • human peripheral blood mononuclear cells  (1)
  • 1
    ISSN: 1573-4935
    Keywords: Ehrlich ascites tumour cells ; energy metabolism ; methylprednisolone ; cell membrane ; phospholipid turnover ; calcium
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Abstract Using Ehrlich ascites tumour cells, the short-term effects of the therapeutic glucocorticoid Methylprednisolone (MP) on the cellular energy metabolism were studied. ATP-consuming processes involved in the rapid MP effects were identified indirectly from the effects of MP on cellular oxygen consumption related to the inhibition of respiration by selective inhibitors of Ca2+-ATPase and protein synthesis. The effects of MP on plasma membrane permeability for Ca2+ ions and phospholipid turnover were studied directly by using confocal laser scanning microscopy and tracerkinetic measurements, respectively. MP inhibited cellular oxygen consumption, suppressed the inhibitory effect of lanthanum but not that of cycloheximide on oxygen consumption, blocked the [Ca2+]i rise in response to calcium ionophore A 23187, and decreased phospholipid turnover. MP acted instantly in a dose-dependent manner. The observed effects of MP are discussed in relation to the hypothesis that the drug has direct membrane effect affecting plasma membrane permeability and function.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-4935
    Keywords: bioenergetics of immune functions ; human peripheral blood mononuclear cells ; energy metabolism ; concanavalin A ; nongenomic glucocorticoid effects ; relative drug potencies
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Abstract The first quantitative findings on the energy metabolism of human immunecells are presented. In quiescent peripheral blood mononuclear cells(PBMC) protein biosynthesis and Na+,K+-ATPase activity eachaccounted for 8% of cellular oxygen consumption. Stimulation with 25, 50,and 75 μg Con A/ml (1.25, 2.5 or 3.75 μg/106 cells) increased totaloxygen consumption within seconds by 8, 36, and 53%, respectively. Afteraddition of 75 μg Con A/ml, the proportion of cellular oxygenconsumption due to protein biosynthesis, Na+,K+-ATPase activity,and Ca2+-ATPase activity was 15% each and that due to DNA/RNAsynthesis was 8%. On the basis of these findings the immediate effectsof five different glucocorticoids on cellular energy metabolism wereinvestigated. The various glucocorticoids exerted basically the sameinhibitory effects on Con A-stimulated cellular respiration and individualATP-consuming processes, but differed significantly in potency. Similar toprevious studies on rat thymocytes, the relative potencies of theglucocorticoids were found to be: prednylidene (1.7)〈dexamethasone(1.5)〈methylprednisolone (1.0)〈prednisolone (0.3)〈betamethasone(〉0.2). Given their rapidity of onset, these effects must benongenomically mediated. The differences between the relative potencies ofthe various glucocorticoids for these effects and those for the classicalgenomic effects have important clinical implications, in particular forhigh-dose systemic and local glucocorticoid therapy.
    Type of Medium: Electronic Resource
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