Ohya Y, Adachi N, Nakamura Y, Setoguchi M, Abe I, Fujishima M
Second Department of Internal Medicine, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Hypertension. 1998 Jan;31(1 Pt 2):254-8. doi: 10.1161/01.hyp.31.1.254.
Electrical and contractile responses of small arteries to mechanical stress are reportedly enhanced in spontaneously hypertensive rats (SHR), compared with those in Wistar Kyoto rats (WKY). We have previously shown that stretch-activated cation channels exist in arterial smooth muscle membrane, of which opening causes Na+ and Ca2+ influx and membrane depolarization. We thus hypothesize that activation of stretch-activated channels is enhanced in arterial smooth muscle of SHR compared with WKY. To test this hypothesis, stretch-activated currents were recorded in single smooth muscle cells of resistance mesenteric arteries from SHR and WKY (16 to 24 weeks of age). In the whole-cell recording, membrane stretch was applied by inflating the cell with positive pressure to the recording pipette. Cell-inflation evoked Gd3+-sensitive cation currents. This current appeared with less stretch stimulation and its amplitude was larger in SHR cells compared with WKY cells. In the cell-attached recording, suction to the recording pipette evoked single stretch-activated channel currents (conductance of 32 pS with 150 mmol/L Na+), which were blocked by Gd3+. Channels were activated with less negative pressure and their availability was greater in SHR cells than in WKY cells. Results suggest that the activation of stretch-activated channels is enhanced in smooth muscle of resistance arteries from SHR compared with WKY, which may contribute to the enhanced vascular responses to mechanical stress in SHR.
据报道,与Wistar Kyoto大鼠(WKY)相比,自发性高血压大鼠(SHR)的小动脉对机械应力的电反应和收缩反应增强。我们之前已经表明,动脉平滑肌膜中存在牵张激活阳离子通道,其开放会导致Na+和Ca2+内流以及膜去极化。因此,我们假设与WKY相比,SHR动脉平滑肌中牵张激活通道的激活增强。为了验证这一假设,我们在SHR和WKY(16至24周龄)的阻力肠系膜动脉单个平滑肌细胞中记录了牵张激活电流。在全细胞记录中,通过向记录微管内施加正压使细胞膨胀来施加膜牵张。细胞膨胀诱发了Gd3+敏感的阳离子电流。与WKY细胞相比,这种电流在较小的牵张刺激下出现,且在SHR细胞中的幅度更大。在细胞贴附记录中,对记录微管施加吸力诱发了单个牵张激活通道电流(在150 mmol/L Na+时电导为32 pS),该电流被Gd3+阻断。通道在较小的负压下被激活,且在SHR细胞中的可用性高于WKY细胞。结果表明,与WKY相比,SHR阻力动脉平滑肌中牵张激活通道的激活增强,这可能有助于SHR中血管对机械应力的反应增强。