Wei Zhihua, Manevich Yefim, Al-Mehdi Abu B, Chatterjee Shampa, Fisher Aron B
Institute for Environmental Medicine, University of Pennsylvania Medical Center, Philadelphia, Pennsylvania, USA.
Microcirculation. 2004 Sep;11(6):517-26. doi: 10.1080/10739680490476367.
To investigate the role of voltage-gated Ca2+ channels in Ca2+ influx with flow cessation in flow-adapted rat pulmonary microvascular endothelial cells.
Cells were evaluated for mRNA and protein levels for major components of the voltage-gated Ca2+ channels. Ca2+ influx with flow cessation and cell membrane potential were measured in real time with fluorescent dyes. Mibefradil and nifedipine were used as inhibitors of Ca2+ channel activity.
Voltage-gated Ca2+ channel protein and mRNA for the T-type channel were expressed at a relatively low level in endothelial cells cultured under static conditions and expression was induced significantly during flow adaptation. Flow-adapted but not control cells showed Ca2+ influx during flow cessation that was blocked by mibefradil but not by nifedipine. Ca2+ influx also was blocked by cromakalim, a KATP channel agonist. Cell membrane depolarization with flow cessation was unaffected by mibefradil.
Rat pulmonary microvascular endothelial cells express T-type voltage-gated Ca2+ channels that are induced during adaptation to flow and are responsible for Ca2+ influx that occurs as a result of flow cessation-mediated membrane depolarization.
研究电压门控性Ca2+通道在血流适应的大鼠肺微血管内皮细胞血流停止时Ca2+内流中的作用。
评估细胞中电压门控性Ca2+通道主要成分的mRNA和蛋白质水平。使用荧光染料实时测量血流停止时的Ca2+内流和细胞膜电位。米贝地尔和硝苯地平用作Ca2+通道活性抑制剂。
在静态条件下培养的内皮细胞中,T型通道的电压门控性Ca2+通道蛋白和mRNA表达水平相对较低,在血流适应过程中表达显著诱导。血流适应的细胞而非对照细胞在血流停止时表现出Ca2+内流,米贝地尔可阻断该内流,而硝苯地平则不能。Ca2+内流也被KATP通道激动剂克罗卡林阻断。米贝地尔不影响血流停止时的细胞膜去极化。
大鼠肺微血管内皮细胞表达T型电压门控性Ca2+通道,该通道在适应血流过程中被诱导,并负责因血流停止介导的膜去极化而发生的Ca2+内流。