帮助 本站公告
您现在所在的位置:网站首页 > 知识中心 > 文献详情
文献详细Journal detailed

人胎儿鼻咽上皮细胞的背景氯电流
Background chloride currents in fetal human nasopharyngeal epithelial cells

作  者: ; ; ; ; ; ; ;

机构地区: 广东医学院

出  处: 《生理学报》 2005年第3期349-354,共6页

摘  要: 采用膜片钳和图像分析技术,研究人胎儿鼻咽上皮细胞背景电流的特性及其与容积激活性氯电流的关系。在等张溶液中,可记录到一背景电流,该电流呈微弱的外向整流性,无明显时间依赖性失活,其翻转电位为(?0.73±1.7)mV(n=21),接近氯离子平衡电位(?0.9mV)。细胞外高张刺激(440mOsmol/L)明显抑制此电流(59.6±7.1)%,而低张刺激(160mOsmol/L)则诱发细胞产生容积激活性氯电流。氯通道阻断剂tamoxifen和5-硝基-2-(3-苯丙胺基)苯甲酸[5-nitro-2-(3-phenylpropylamino)benzoicacid,NPPB]显著地抑制背景电流并使细胞基础容积增大。上述结果表明,人胎儿鼻咽上皮细胞的背景Cl?电流是背景电流的重要成分,此Cl?电流与容积激活性氯电流及细胞基础容积调节有关。 To characterize the background current in fetal human nasopharyngeal epithelial cells and clarify its relationship with volumeactivated Cl? currents (ICl, vol), whole-cell patch clamp and cell imaging techniques were employed. Under isotonic conditions, abackground current [(5.9±2.1) pA/pF at +80 mV, n=21] was detected. The current presented a weak outward rectification and anegligible time-dependent inactivation. The current-voltage relationship showed that the reversal potential of the background current[(–0.73±1.7) mV, n=21] was close to the calculated equilibrium potential for Cl– (–0.9 mV). Application of extracellular hypertonicstimulation (440 mOsmol/L) suppressed the current by (59.6±7.1)% and the inhibition was reversible after returned to isotonicconditions. Bathing the cells in hypotonic solution (160 mOsmol/L) induced a volume-sensitive Cl– current. The Cl– channel blockers,tamoxifen (20 μmol/L) and 5-nitro-2-(3-phenylpropylamino) benzoic acid (NPPB) (100 μmol/L), inhibited the background current by(74.0±5.2)% (P<0.01, n=5) and (60.9±8.9)% (P<0.01, n=6) at +80 mV and increased basal cell volume by (107.7±2.9)% (P<0.01,n=25) and (104.4±2.4)% (P<0.01, n=19), respectively. The data indicate that Cl– current is an important component of the backgroundcurrent in fetal human nasopharyngeal epithelial cells. The background Cl– current is involved in volume activated Cl- current and basalcell volume regulation.

关 键 词: 上皮细胞 背景电流 氯通道

领  域: [生物学]

相关作者

相关机构对象

相关领域作者

作者 丁培强
作者 徐松林
作者 徐枫
作者 陈光慧
作者 孙有发