Naik Jay S, Walker Benjimen R
Vascular Physiology Group, Department of Cell Biology and Physiology, University of New Mexico Health Sciences Center, Albuquerque, New Mexico, USA.
Microcirculation. 2006 Mar;13(2):81-8. doi: 10.1080/10739680500466301.
Exposure to chronic hypoxia (CH) results in a persistent endothelium-dependent vascular smooth muscle hyperpolarization that diminishes vasoconstrictor reactivity. Experiments were performed to test the hypothesis that products of both cytochrome P450 epoxygenase (CYP) and heme oxygenase (HO) are required for the persistent diminished myogenic reactivity following CH.
The authors examined myogenic responses of mesenteric arteries isolated from control and CH (48 h; P(B) = 380 mmHg) rats in the presence of a HO inhibitor (zinc protoporphyrin IX; ZnPPIX) or combined HO and CYP epoxygenase inhibition (sulfaphenazole). Arteries were isolated and cannulated and the vascular smooth muscle was loaded with the Ca2+ indicator Fura-2.
Control vessels maintained their internal diameter in response to step increases in intraluminal pressure, whereas arteries from CH animals passively distended. ZnPPIX augmented myogenic reactivity and [Ca2+] in arteries from CH animals. Combined administration of sulfaphenazole and ZnPPIX did not have an additional effect compared to ZnPPIX alone. Myogenic reactivity in control vessels was not altered by ZnPPIX or ZnPPIX + sulfaphenazole.
HO appears to play a role in regulating myogenic reactivity following CH. Furthermore, these data suggest that products of HO and CYP are both required for the observed attenuation in vasoreactivity following CH.
暴露于慢性低氧(CH)会导致持续性的内皮依赖性血管平滑肌超极化,从而降低血管收缩反应性。进行实验以检验以下假设:细胞色素P450环氧合酶(CYP)和血红素加氧酶(HO)的产物对于CH后持续性降低的肌源性反应性均是必需的。
作者在存在HO抑制剂(锌原卟啉IX;ZnPPIX)或HO与CYP环氧合酶联合抑制(磺胺苯吡唑)的情况下,检测了从对照大鼠和CH(48小时;P(B)=380 mmHg)大鼠分离的肠系膜动脉的肌源性反应。分离动脉并插管,血管平滑肌加载Ca2+指示剂Fura-2。
对照血管对管腔内压力的逐步升高保持其内径,而CH动物的动脉则被动扩张。ZnPPIX增强了CH动物动脉的肌源性反应性和[Ca2+]。与单独使用ZnPPIX相比,磺胺苯吡唑和ZnPPIX联合给药没有额外作用。ZnPPIX或ZnPPIX+磺胺苯吡唑不会改变对照血管的肌源性反应性。
HO似乎在调节CH后的肌源性反应性中起作用。此外,这些数据表明,HO和CYP的产物对于CH后观察到的血管反应性减弱均是必需的。