Chen Tsang-Shan, Lai Ming-Chi, Hung Te-Yu, Lin Kao-Min, Huang Chin-Wei, Wu Sheng-Nan
Department of Neurology, Tainan Sin-Lau Hospital, Tainan, Taiwan.
Department of Pediatrics, Chi-Mei Medical Center, Tainan, Taiwan.
Front Pharmacol. 2018 Aug 29;9:977. doi: 10.3389/fphar.2018.00977. eCollection 2018.
Pioglitazone (PIO), a thiazolidinedone, was reported to stimulate peroxisome proliferator-activated receptor-γ (PPAR-γ) with anti-inflammatory, anti-proliferative, anti-diabetic, and antidepressive activities. However, whether this compound exerts any perturbations on Ca-activated K and M-type K currents in central neurons remains largely unresolved. In this study, we investigated the effects of PIO on these potassium currents in hippocampal neurons (mHippoE-14). In whole-cell current recordings, the presence of PIO (10 μM) increased the amplitude of Ca-activated K current [] in mHippoE-14 cells. PIO-induced stimulation of observed in these cells was reversed by subsequent addition of paxilline, yet not by TRAM-39 or apamin. In inside-out current recordings, PIO applied to the bath concentration-dependently increased the activity of large-conductance Ca-activated K (BK) channels with an EC value of 7.6 μM. Its activation of BK channels in mHippoE-14 cells was voltage-dependent and accompanied by both a lengthening in mean open time and a shortening in slow component of mean closed time. The activation curve of BK channels after addition of PIO was shifted to less depolarized potential without any change in the gating charge. PIO also suppressed the amplitude of M-type K currents inherently in mHippoE-14 neurons. Taken together, in addition to its agonistic action on PPAR-γ, PIO-induced perturbation of these potassium channels may be responsible for its widely pharmacological actions on hippocampal neurons.
吡格列酮(PIO)是一种噻唑烷二酮类药物,据报道它可激活过氧化物酶体增殖物激活受体-γ(PPAR-γ),具有抗炎、抗增殖、抗糖尿病和抗抑郁活性。然而,这种化合物是否会对中枢神经元中的钙激活钾电流和M型钾电流产生任何干扰,在很大程度上仍未得到解决。在本研究中,我们研究了PIO对海马神经元(mHippoE-14)中这些钾电流的影响。在全细胞电流记录中,10 μM的PIO增加了mHippoE-14细胞中钙激活钾电流[]的幅度。在这些细胞中观察到的PIO诱导的刺激在随后加入帕吉林后被逆转,但TRAM-39或蜂毒明肽不能逆转。在膜内向外电流记录中,施加到浴液中的PIO浓度依赖性地增加了大电导钙激活钾(BK)通道的活性,其EC值为7.6 μM。它在mHippoE-14细胞中对BK通道的激活是电压依赖性的,同时伴随着平均开放时间的延长和平均关闭时间慢成分的缩短。加入PIO后BK通道的激活曲线向去极化程度较低的电位移动,门控电荷没有任何变化。PIO还抑制了mHippoE-14神经元固有的M型钾电流幅度。综上所述,除了对PPAR-γ的激动作用外,PIO对这些钾通道的干扰可能是其对海马神经元具有广泛药理作用的原因。