Roy Subhrangsu, Large Roddy J, Akande Adebola Morayo, Kshatri Aravind, Webb Tim I, Domene Carmen, Sergeant Gerard P, McHale Noel G, Thornbury Keith D, Hollywood Mark A
Ion Channel Biotechnology Centre, Dundalk Institute of Technology, Dublin Road, Dundalk, County Louth, Ireland.
The Smooth Muscle Research Centre, Dundalk Institute of Technology, Dublin Road, Dundalk, County Louth, Ireland.
Eur J Med Chem. 2014 Mar 21;75:426-37. doi: 10.1016/j.ejmech.2014.01.035. Epub 2014 Feb 3.
We have designed, synthesised and characterised the effects of a number of novel anthraquinone derivatives and assessed their effects on large conductance, Ca(2+) activated K(+) (BK) channels recorded from rabbit bladder smooth muscle cells using the excised, inside/out configuration of the patch clamp technique. These compounds are members of the GoSlo-SR family of compounds, which potently open BK channels and shift the voltage required for half maximal activation (V1/2) negatively. The efficacy of the anilinoanthraquinone derivatives was enhanced when the size of ring D was increased, since the cyclopentane and cyclohexane derivatives shifted the V1/2, by -24 ± 6 mV and -54 ± 8 mV, respectively, whereas the cycloheptane and cyclooctane derivatives shifted the V1/2 by -61 ± 6 mV and -106 ± 6 mV. To examine if a combination of hydrophobicity and steric bulking of this region further enhanced their ability to open BK channels, we synthesised a number of naphthalene and tetrahydro-naphthalene derivatives. The tetrahydro-2-naphthalene derivative GoSlo-SR-5-69 was the most potent and efficacious of the series since it was able to shift the activation V1/2 by greater than -100 mV when applied at a concentration of 1 μM and had an EC50 of 251 nM, making it one of the most potent and efficacious BK channel openers synthesised to date.
我们设计、合成并表征了多种新型蒽醌衍生物的作用,并使用膜片钳技术的切除式内面向外配置,评估了它们对从兔膀胱平滑肌细胞记录的大电导钙激活钾(BK)通道的影响。这些化合物是GoSlo-SR化合物家族的成员,它们能有效打开BK通道,并使半数最大激活所需电压(V1/2)向负向移动。当D环尺寸增加时,苯胺基蒽醌衍生物的效力增强,因为环戊烷和环己烷衍生物分别使V1/2移动了-24±6 mV和-54±8 mV,而环庚烷和环辛烷衍生物使V1/2移动了-61±6 mV和-106±6 mV。为了研究该区域的疏水性和空间体积的组合是否进一步增强了它们打开BK通道的能力,我们合成了多种萘和四氢萘衍生物。四氢-2-萘衍生物GoSlo-SR-5-69是该系列中最有效力和效能的,因为当以1μM的浓度应用时,它能够使激活V1/2移动超过-100 mV,其半数有效浓度(EC50)为251 nM,使其成为迄今为止合成的最有效力和效能的BK通道开放剂之一。