Madden J A, Vadula M S, Kurup V P
Research Service, Zablocki Veterans Affairs Medical Center, Milwaukee, Wisconsin.
Am J Physiol. 1992 Sep;263(3 Pt 1):L384-93. doi: 10.1152/ajplung.1992.263.3.L384.
Smooth muscle cells (SMC) were isolated from cat cerebral arteries and three sizes of pulmonary artery (less than 200-, 200- to 600-, and greater than 800-microns diameter) and used within 72-96 h. Change in cell length in response to hypoxia and other vasoactive agents was measured in a specially constructed cell chamber on an inverted microscope. Pulmonary artery SMC responded to hypoxia differently according to artery size. SMC from less than 200- and 200- to 600-microns-diameter pulmonary arteries shortened 18.6 +/- 4.85 and 24.2 +/- 2.70%, respectively. However, SMC from greater than 800-microns-diameter pulmonary arteries shortened 0.81 +/- 0.44%. Cerebral artery SMC plated on a flexible polydimethyl siloxane membrane showed loss of tension during exposure to hypoxia. The shortening of SMC from the 200- to 600-microns pulmonary arteries was accompanied by myosin phosphorylation. SMC from greater than 800-microns-diameter pulmonary arteries and cerebral arteries contained myosin that did not phosphorylate during hypoxia. The SMC from both artery types responded to norepinephrine, serotonin, prostaglandin F2 alpha and indomethacin and exhibited alpha-adrenergic receptor population patterns similar to those of intact arteries. The pattern of hypoxic responses exhibited by these nondedifferentiated pulmonary and cerebral artery SMC supports the idea that, at least in the cat, the hypoxic sensor is located within the SMC.
从猫的脑动脉以及三种不同尺寸的肺动脉(直径小于200微米、200至600微米、大于800微米)中分离出平滑肌细胞(SMC),并在72 - 96小时内使用。在倒置显微镜下的特制细胞室中测量细胞长度对缺氧及其他血管活性药物的反应。肺动脉SMC对缺氧的反应因动脉尺寸而异。直径小于200微米和200至600微米的肺动脉SMC分别缩短了18.6±4.85%和24.2±2.70%。然而,直径大于800微米的肺动脉SMC缩短了0.81±0.44%。接种在柔性聚二甲基硅氧烷膜上的脑动脉SMC在缺氧时张力降低。直径200至600微米的肺动脉SMC缩短伴随着肌球蛋白磷酸化。直径大于800微米的肺动脉和脑动脉的SMC所含肌球蛋白在缺氧时不发生磷酸化。两种动脉类型的SMC对去甲肾上腺素、5 - 羟色胺、前列腺素F2α和吲哚美辛均有反应,且表现出与完整动脉相似的α - 肾上腺素能受体群体模式。这些未分化的肺动脉和脑动脉SMC所表现出的缺氧反应模式支持了这样一种观点,即至少在猫中,缺氧感受器位于SMC内。