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氟西汀通过耗竭细胞内钙库抑制人 T 淋巴细胞内钙信号。

Fluoxetine suppresses calcium signaling in human T lymphocytes through depletion of intracellular calcium stores.

机构信息

Laboratory of Pharmaceutical Biotechnology, Faculty of Pharmaceutical Sciences, Ghent University, Ottergemsesteenweg 460, 9000 Ghent, Belgium.

Physiology Group, Department of Basic Medical Sciences, Ghent University, Ghent, Belgium.

出版信息

Cell Calcium. 2015 Sep;58(3):254-63. doi: 10.1016/j.ceca.2015.06.003. Epub 2015 Jun 10.

Abstract

Selective serotonin reuptake inhibitors, such as fluoxetine, have recently been shown to exert anti-inflammatory and immunosuppressive effects. Although the effects on cytokine secretion, proliferation and viability of T lymphocytes have been extensively characterized, little is known about the mechanism behind these effects. It is well known that Ca(2+) signaling is an important step in the signaling transduction pathway following T cell receptor activation. Therefore, we investigated if fluoxetine interferes with Ca(2+) signaling in Jurkat T lymphocytes. Fluoxetine was found to suppress Ca(2+) signaling in response to T cell receptor activation. Moreover, fluoxetine was found to deplete intracellular Ca(2+) stores, thereby leaving less Ca(2+) available for release upon IP3- and ryanodine-receptor activation. The Ca(2+)-modifying effects of fluoxetine are not related to its capability to block the serotonin transporter, as even a large excess of 5HT did not abolish the effects. In conclusion, these data show that fluoxetine decreases IP3- and ryanodine-receptor mediated Ca(2+) release in Jurkat T lymphocytes, an effect likely to be at the basis of the observed immunosuppression.

摘要

选择性 5-羟色胺再摄取抑制剂,如氟西汀,最近被证明具有抗炎和免疫抑制作用。尽管已经广泛研究了它们对细胞因子分泌、T 淋巴细胞增殖和活力的影响,但对这些作用背后的机制知之甚少。众所周知,Ca(2+)信号是 T 细胞受体激活后信号转导途径中的重要步骤。因此,我们研究了氟西汀是否会干扰 Jurkat T 淋巴细胞中的 Ca(2+)信号。研究发现氟西汀可抑制 T 细胞受体激活引起的 Ca(2+)信号。此外,氟西汀还发现可耗尽细胞内 Ca(2+)储存库,从而减少 IP3 和兰尼碱受体激活时 Ca(2+)的释放。氟西汀对 Ca(2+)的调节作用与其阻断 5-羟色胺转运体的能力无关,因为即使是过量的 5HT 也不能消除其作用。总之,这些数据表明氟西汀可降低 Jurkat T 淋巴细胞中 IP3 和兰尼碱受体介导的 Ca(2+)释放,这种作用可能是观察到的免疫抑制的基础。

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