Publications by authors named "M D Gomez-Lobo"

Melatonin kills or inhibits the proliferation of different cancer cell types, and this is associated with an increase or a decrease in reactive oxygen species, respectively. Intracellular oxidants originate mainly from oxidative metabolism, and cancer cells frequently show alterations in this metabolic pathway, such as the Warburg effect (aerobic glycolysis). Thus, we hypothesized that melatonin could also regulate differentially oxidative metabolism in cells where it is cytotoxic (Ewing sarcoma cells) and in cells where it inhibits proliferation (chondrosarcoma cells).

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Glioblastoma-initiating cells (GICs) represent a stem cell-like subpopulation within malignant glioblastomas responsible for tumor development, progression, therapeutic resistance, and tumor relapse. Thus, eradication of this subpopulation is essential to achieve stable, long-lasting remission. We have previously reported that melatonin decreases cell proliferation of glioblastoma cells both in vitro and in vivo and synergistically increases effectiveness of drugs in glioblastoma cells and also in GICs.

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A Candida albicans expression library was constructed from RNA isolated from regenerating protoplasts. A 1.4-kb cDNA clone was used to isolate a genomic fragment.

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The relaxant action of (1S, 1'S) tetrandrine and its isomer (1R, 1'S) isotetrandrine were examined in rat aortic strips, in presence or absence of extracellular calcium. Both alkaloids relax, concentration dependently, the contractile response elicited by depolarizing solution (KCl 80 mM) or noradrenaline (1 microM). Tetrandrine, however, showed a selectivity of action towards the KCl-induced contraction while isotetrandrine did not.

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