首页> 外文期刊>Journal of Neurophysiology >Flufenamic acid affects multiple currents and causes intracellular Ca2+ release in Aplysia bag cell neurons.
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Flufenamic acid affects multiple currents and causes intracellular Ca2+ release in Aplysia bag cell neurons.

机译:氟苯那酸会影响多种电流,并导致海藻袋细胞神经元释放胞内Ca2 +。

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Flufenamic acid (FFA) is a nonsteroidal antiinflammatory agent, commonly used to block nonselective cation channels. We previously reported that FFA potentiated, rather than inhibited, a cation current in Aplysia bag cell neurons. Prompted by this paradoxical result, the present study examined the effects of FFA on membrane currents and intracellular Ca2+ in cultured bag cell neurons. Under whole cell voltage clamp, FFA evoked either outward (I out) or inward (I in) currents. I out had a rapid onset, was inhibited by the K+ channel blocker, tetraethylammonium, and was associated with both an increase in membrane conductance and a negative shift in the whole cell current reversal potential. I in developed more slowly, was inhibited by the cation channel blocker, Gd3+, and was concomitant with both an increased conductance and positive shift in reversal potential. FFA also enhanced the use-dependent inactivation and caused a positive-shift in the activation curve of the voltage-dependent Ca2+ current. Furthermore, as measured by ratiometric imaging, FFA produced a rise in intracellular Ca2+ that persisted in the absence of extracellular Ca2+ and was reduced by depleting either the endoplasmic reticulum and/or mitochondrial stores. Ca2+ appeared to be involved in the activation of I in, as strong intracellular Ca2+ buffering effectively eliminated I in but did not alter I out. Finally, the effects of FFA were likely not due to block of cyclooxygenase given that the general cyclooxygenase inhibitor, indomethacin, failed to evoke either current. That FFA influences a number of neuronal properties needs to be taken into consideration when employing it as a cation channel antagonist.
机译:氟芬那酸(FFA)是一种非甾体类抗炎药,通常用于阻断非选择性阳离子通道。我们以前曾报道过,FFA增强而不是抑制了Aplysia袋细胞神经元中的阳离子电流。受这一矛盾结果的提示,本研究检查了FFA对培养的袋状细胞神经元中膜电流和细胞内Ca2 +的影响。在全电池电压钳制下,FFA引起外向(I out)或内向(I in)电流。我起病迅速,被K +通道阻滞剂四乙铵抑制,并与膜电导增加和整个细胞电流逆转电位的负移有关。 I的发育较慢,受到阳离子通道阻滞剂Gd3 +的抑制,并伴随电导增加和反转电位正向移动。 FFA还增强了使用相关的灭活作用,并导致电压相关的Ca2 +电流的激活曲线出现正向偏移。此外,通过比例成像测量,FFA导致细胞内Ca2 +升高,这种升高在不存在细胞外Ca2 +的情况下持续存在,并通过耗尽内质网和/或线粒体存储而降低。 Ca2 +似乎参与了I in的激活,因为强大的细胞内Ca2 +缓冲作用有效地消除了I in,但并未改变I out。最后,鉴于一般的环氧合酶抑制剂吲哚美辛未能引起任何一种电流,FFA的作用可能不是由于环氧合酶的阻滞。当将FFA用作阳离子通道拮抗剂时,必须考虑FFA会影响许多神经元特性。

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