首页> 美国卫生研究院文献>Molecules >Evidence for Effective Inhibitory Actions on Hyperpolarization-Activated Cation Current Caused by Ganoderma Triterpenoids the Main Active Constitutents of Ganoderma Spores
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Evidence for Effective Inhibitory Actions on Hyperpolarization-Activated Cation Current Caused by Ganoderma Triterpenoids the Main Active Constitutents of Ganoderma Spores

机译:对灵芝孢子的主要活性成分灵芝三萜类化合物引起的超极化激活阳离子电流的有效抑制作用的证据。

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摘要

The triterpenoid fraction of ( triterpenoids, GTs) has been increasingly demonstrated to provide effective antioxidant, neuroprotective or cardioprotective activities. However, whether GTs is capable of perturbing the transmembrane ionic currents existing in electrically excitable cells is not thoroughly investigated. In this study, an attempt was made to study whether GTs could modify hyperpolarization-activated cation currents ( ) in pituitary tumor (GH ) cells and in HL-1 atrial cardiomyocytes. In whole-cell current recordings, the addition of GTs produced a dose-dependent reduction in the amplitude of in GH cells with an IC value of 11.7 µg/mL, in combination with a lengthening in activation time constant of the current. GTs (10 µg/mL) also caused a conceivable shift in the steady-state activation curve of along the voltage axis to a more negative potential by approximately 11 mV. Subsequent addition of neither 8-cyclopentyl-1,3-dipropylxanthine nor 8-( -sulfophenyl)theophylline, still in the presence of GTs, could attenuate GTs-mediated inhibition of . In current-clamp voltage recordings, GTs diminished the firing frequency of spontaneous action potentials in GH cells, and it also decreased the amplitude of sag potential in response to hyperpolarizing current stimuli. In murine HL-1 cardiomyocytes, the GTs addition also suppressed the amplitude of effectively. In DPCPX (1 µM)-treated HL-1 cells, the inhibitory effect of GTs on remained efficacious. Collectively, the inhibition of caused by GTs is independent of its possible binding to adenosine receptors and it might have profound influence in electrical behaviors of different types of electrically excitable cells (e.g., pituitary and heart cells) if similar in vitro or in vivo findings occur.
机译:(三萜类化合物,GTs)的三萜类组分已被越来越多地证明提供有效的抗氧化剂,神经保护或心脏保护活性。然而,尚未完全研究GTs是否能够干扰存在于可电激发细胞中的跨膜离子电流。在这项研究中,试图研究GT是否可以改变垂体瘤(GH)细胞和HL-1心房心肌细胞的超极化激活阳离子电流()。在全细胞电流记录中,添加GT会导致GH细胞振幅的剂量依赖性降低,IC值为11.7 µg / mL,同时电流的激活时间常数会延长。 GTs(10 µg / mL)也可能导致稳态激活曲线沿电压轴向大约负电位移动约11 mV。随后添加既不存在GT的8-环戊基-1,3-二丙基黄嘌呤也不使用8-(-磺基苯基)茶碱,可以减弱GTs介导的抑制作用。在电流钳电压记录中,GT降低了GH细胞中自发动作电位的激发频率,并且还响应超极化电流刺激而降低了下垂电位的幅度。在鼠类HL-1心肌细胞中,添加GTs也可以有效抑制振幅。在DPCPX(1 µM)处理的HL-1细胞中,GTs的抑制作用仍然有效。总的来说,由GTs引起的抑制作用与其可能与腺苷受体的结合无关,并且如果发生相似的体外或体内发现,它可能会对不同类型的电可兴奋细胞(例如垂体和心脏细胞)的电行为产生深远影响。

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