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首页> 外文期刊>Journal of vascular research >Blockade of Ca2+-activated K+ channels inhibits proliferation of human endothelial cells induced by basic fibroblast growth factor.
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Blockade of Ca2+-activated K+ channels inhibits proliferation of human endothelial cells induced by basic fibroblast growth factor.

机译:阻断Ca2 +激活的K +通道可抑制碱性成纤维细胞生长因子诱导的人内皮细胞增殖。

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摘要

Basic fibroblast growth factor (bFGF) exerts angiogenic and mitogenic properties in human tissue. Since changes in ion currents modulate essential Ca2+-dependent intracellular pathways in endothelial cells, we have investigated a possible contribution of Ca2+-activated K+ channels (BKCa) on bFGF-induced endothelial cell proliferation. The patch-clamp technique was used to identify BKCa and to study their modulation by bFGF in cultured endothelial cells of human umbilical cord veins (HUVEC). Cell counts of HUVEC were carried out on different days to analyze bFGF-induced cell proliferation and its influence by the specific BKCa blocker iberiotoxin (IBX). Using single-channel recordings, we found characteristic BKCa with a single-channel slope conductance of 170.3 +/- 2.1 pS (n = 7), half-maximal activation at internal pCa = 5.7 (n = 5; test potential: 80 mV), and dose-dependent block by IBX (25-100 nmol/l). In cell-attached patches bFGF (50 ng/ml) caused a significant increase in the open-state probability (NPo) after 6 min at test potentials of 80 and 100 mV (n = 28; p < 0.001), respectively, which lasted up to 30 min. After preincubation with pertussis toxin (100 ng/ml; 4 h) bFGF superfusion did not cause a significant increase in BKCa activity until 25 min had passed (n = 20; p < 0.01). Addition of 100 nmol/l IBX to the pipette solution caused a total block of BKCa within 2 min in cell-attached patches, whereas bFGF (50 ng/ml) was not able to activate BKCa. When incubated with IBX (25-100 nmol/l) every 2 days, bFGF-induced proliferation of HUVEC was significantly decreased by 50 (-41%) and 100 nmol/l (-50%) IBX (n = 5; p < 0.001) after 7 days. We conclude that activation of BKCa by bFGF may play an important role in bFGF-induced proliferation of human endothelial cells and thus might be important in the process of angiogenesis and vascular remodelling.
机译:碱性成纤维细胞生长因子(bFGF)在人体组织中发挥血管生成和促有丝分裂特性。由于离子电流的变化调节了内皮细胞中基本的依赖Ca2 +的细胞内通路,因此我们研究了Ca2 +激活的K +通道(BKCa)对bFGF诱导的内皮细胞增殖的可能贡献。膜片钳技术用于鉴定BKCa并研究bFGF在人脐静脉(HUVEC)培养的内皮细胞中的调节作用。在不同的日子进行HUVEC的细胞计数,以分析bFGF诱导的细胞增殖及其受特定BKCa阻断剂埃博毒素(IBX)的影响。使用单通道记录,我们发现特征BKCa具有170.3 +/- 2.1 pS(n = 7)的单通道斜率电导,内部pCa = 5.7(n = 5;测试电势:80 mV)的半最大激活和IBX(25-100 nmol / l)的剂量依赖性阻断。在细胞附着的贴片中,bFGF(50 ng / ml)分别在测试电位分别为80和100 mV(n = 28; p <0.001)持续6分钟后,导致开态概率(NPo)显着增加。最多30分钟。在与百日咳毒素(100 ng / ml; 4 h)预温育后,直到25分钟过去,bFGF融合液才不会导致BKCa活性显着增加(n = 20; p <0.01)。向移液器溶液中添加100 nmol / l IBX会在2分钟内在细胞附着的贴剂中导致BKCa完全封闭,而bFGF(50 ng / ml)无法激活BKCa。每2天与IBX(25-100 nmol / l)孵育时,bFGF诱导的HUVEC增殖显着降低50(-41%)和100 nmol / l(-50%)IBX(n = 5; p < 0.001)7天后。我们得出的结论是,bFGF激活BKCa可能在bFGF诱导的人内皮细胞增殖中起重要作用,因此在血管生成和血管重塑过程中可能很重要。

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