首页> 外文期刊>Neuropharmacology >The anti-inflammatory agent flufenamic acid depresses store-operated channels by altering mitochondrial calcium homeostasis.
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The anti-inflammatory agent flufenamic acid depresses store-operated channels by altering mitochondrial calcium homeostasis.

机译:消炎药氟芬那酸通过改变线粒体钙稳态来抑制存储通道。

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Fenamates like flufenamic acid (FFA) are anti-inflammatory drugs known to alter ion fluxes through the plasma membrane. They are for instance potent blockers of cation and anion channels, and FFA is now commonly used to block currents through TRP channels and receptor-operated channels. However, FFA exerts complex and multifaceted actions on ion transport systems and, in most instances, a molecular understanding of these FFA-dependent modulations is lacking. In addition, FFA is also to known to perturb the homeostasis of Ca2+. In the present report, we investigated whether the FFA-induced alterations of the Ca2+ homeostasis could play a role in the FFA-dependent modulation of transmembrane ion fluxes. Experiments performed with the Ca2+ indicator Fluo-4 on cultured cortical neurons and HEK-293 cells showed that FFA increased the cytosolic concentration of Ca2+ even in cells kept in a Ca2+-free medium or when the endoplasmic reticulum was depleted with thapsigargin. The FFA-dependent Ca2+ responses were, however, strongly reduced by bongkrekic acid, a specific ligand of the mitochondrial ADP/ATP carrier which, in addition, inhibits the permeability transition pore. Like FCCP, FFA released Ca2+ from isolated brain mitochondria and indirectly modulates store-operated Ca2+ channels. We suggest that some of the effects of FFA on plasma membrane ion channels could be explained, at least partially, by its ability to modulate the mitochondrial Ca2+ homeostasis.
机译:像氟芬那酸(FFA)一样的芬纳特类抗炎药可改变通过质膜的离子通量。例如,它们是有效的阳离子和阴离子通道阻滞剂,而FFA现在通常用于阻止通过TRP通道和受体操纵通道的电流。然而,FFA在离子传输系统上发挥着复杂而多方面的作用,并且在大多数情况下,缺乏对这些FFA依赖性调节的分子理解。此外,还已知FFA会扰乱Ca2 +的稳态。在本报告中,我们调查了FFA诱导的Ca2 +稳态变化是否可以在FFA依赖性跨膜离子通量调节中发挥作用。在培养的皮层神经元和HEK-293细胞上用Ca2 +指示剂Fluo-4进行的实验表明,即使在无Ca2 +培养基中保存的细胞中,或当内生质网被thapsigargin耗尽时,FFA也会增加Ca2 +的胞质浓度。然而,FFK依赖性的Ca2 +响应会被邦克里克酸大大降低,邦克里克酸是线粒体ADP / ATP载体的一种特殊配体,此外还抑制了通透性转换孔。像FCCP一样,FFA从孤立的脑线粒体中释放Ca2 +,并间接调节存储操作的Ca2 +通道。我们建议,FFA对质膜离子通道的某些影响至少可以通过其调节线粒体Ca2 +稳态的能力来解释。

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