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首页> 外文期刊>Kidney international. >Inhibitory effect of calcium channel blockers on human mesangial cell growth: Evidence for actions independent of L-type Ca2+ channels
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Inhibitory effect of calcium channel blockers on human mesangial cell growth: Evidence for actions independent of L-type Ca2+ channels

机译:钙通道阻滞剂对人肾小球系膜细胞生长的抑制作用:独立于L型Ca2 +通道的作用的证据

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Inhibitory effect of calcium channel blockers on human mesangial cell growth: Evidence for actions independent of L-type Ca2+ channels. Calcium channel blockers (CCB) are known to affect the outcome of glomerulosclerosis in vivo and to suppress mesangial cell proliferation and cytokine production in vitro. It is uncertain, however, whether (i) human adult mesangial cells (HMC) express L-type Ca2+ channels and (ii) whether the effect of CCB on HMC is mediated by inhibition of L-type Ca2+ channels. In single cell preparations of HMC, the L-type Ca2+ channel agonist Bay K 8644 and K+-depolarization of the cell membrane caused a transient increase of cytosolic free Ca2+ ([Ca2+]i) in 60 to 80% of the cells. The CCB verapamil and nifedipine partially inhibited the effect of Bay K 8644 and K+-depolarization on [Ca2+]i. Binding experiments confirmed these functional studies by showing specific binding at the phenylalkylamine binding site of L-type Ca2+ channels. Quiescent HMC were stimulated with fetal calf serum (FCS) or growth factors (platelet derived growth factor A/B, epidermal growth factor, angiotensin II, endothelin 1) in the presence of various concentrations (10-10 to 10-5 M) of different CCB: either (R)-verapamil, (S)-verapamil or the raceme of verapamil, and nifedipine or diltiazem, respectively. In addition the enantiomers of devapamil were studied, because their action on the L-type Ca2+ channel is more stereoselective than that of the enantiomers of verapamil. At high concentrations (10-6 to 10-5 M) (R,S)-verapamil decreased cell numbers in cultures of quiescent HMC, increased LDH in the supernatant, and caused loss of trypan blue exclusion (cytotoxicity). At lower concentrations (R,S)-verapamil showed no cytotoxicity, but had two effects: (1.) concentration dependent (down to 10-8 M) inhibition of indices of cell proliferation, that is, (i) stimulated (FCS or growth factor) 3H-thymidine incorporation and (ii) increment in cell number; and (2.) inhibition of indices of cell or matrix protein synthesis, that is, (i) stimulated 3H-methionine incorporation and (ii) 3H-proline incorporation. At equimolar concentrations the dihydropyridine nifedipine was equipotent with verapamil, whereas the benzodiazepine diltiazem was conspicously less effective. Even at the lowest effective concentration (10-8 M) comparison of (R)- and (S)-verapamil showed no significant difference between the enantiomer with weak or with strong effect on L-type Ca2+ channels, and this was true even when the more stereoselective enantiomers of devapamil were tested. These observations argue against the notion that effects of CCB result from specific interaction with L-type Ca2+ channels. The data are more consistent with the idea that interactions with targets other than L-type Ca2+ channels are involved.
机译:钙通道阻滞剂对人系膜细胞生长的抑制作用:独立于L型Ca2 +通道的作用的证据。钙通道阻滞剂(CCB)会在体内影响肾小球硬化的结果,并在体外抑制肾小球膜细胞增殖和细胞因子的产生。但是,尚不确定(i)人成年系膜细胞(HMC)是否表达L型Ca2 +通道,以及(ii)CCB对HMC的作用是否通过抑制L型Ca2 +通道介导。在HMC的单细胞制剂中,L型Ca2 +通道激动剂Bay K 8644和细胞膜的K +去极化导致60%至80%的细胞中细胞内游离Ca2 +([Ca2 +] i)瞬时增加。 CCB维拉帕米和硝苯地平部分抑制Bay K 8644和K +去极化对[Ca2 +] i的作用。结合实验通过显示在L型Ca2 +通道的苯基烷基胺结合位点的特异性结合,证实了这些功能研究。在不同浓度(10-10至10-5 M)的胎牛血清(FCS)或生长因子(血小板衍生生长因子A / B,表皮生长因子,血管紧张素II,内皮素1)刺激下静默HMC。不同的CCB:分别为(R)-维拉帕米,(S)-维拉帕米或维拉帕米的外消旋体,以及硝苯地平或地尔硫卓。此外,还对devapamil的对映体进行了研究,因为它们对L型Ca2 +通道的作用比维拉帕米的对映体更具立体选择性。在高浓度(10-6至10-5 M)下,(R,S)-维拉帕米降低了静态HMC培养物中的细胞数量,增加了上清液中的LDH,并导致了锥虫蓝排斥的丧失(细胞毒性)。在较低浓度下(R,S)-维拉帕米未显示出细胞毒性,但具有两种作用:(1。)浓度依赖性(低至10-8 M)抑制细胞增殖指数,即(i)刺激(FCS或生长因子)3H-胸苷掺入和(ii)细胞数增加; (2)抑制细胞或基质蛋白合成的指标,即(i)刺激的3H-蛋氨酸掺入和(ii)3H-脯氨酸掺入。在等摩尔浓度下,二氢吡啶硝苯地平与维拉帕米等量,而苯二氮卓地尔硫卓明显无效。即使在最低有效浓度(10-8 M)下,对(R)-和(S)-维拉帕米的比较也显示出对L型Ca2 +通道具有弱或强影响的对映体之间没有显着差异,即使在测试了devapamil更具立体选择性的对映异构体。这些观察结果与CCB的影响是由与L型Ca2 +通道的特异性相互作用导致的这一观点相矛盾。数据与涉及与L型Ca2 +通道以外的靶标相互作用的想法更加一致。

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