Hernández-Maldonado J J, Teehan E, Franco C D, Durán W N, Hobson R W
Department of Surgery, UMDNJ-New Jersey Medical School, Newark.
J Cardiovasc Surg (Torino). 1992 Nov-Dec;33(6):695-9.
Superoxide anion (O2-) and polymorphonuclear leukocytes (PMNs) have been implicated in the genesis of skeletal muscle ischemia-reperfusion (I-R) injury, but the source of (O2-) has not been established. We studied PMNs as a potential source of O2- using a ferricytochrome reduction assay in 5 anesthetized dogs. Using a gracilis muscle model of I-R, 6 hours of ischemia was followed by 2 hours of reperfusion. The contralateral muscle served as control. Prior to ischemia and after 0.5 and 2.0 hours of reperfusion, PMNs were separated from the gracilis venous effluent of ischemic (I) and control (C) muscles. Central venous samples were also obtained prior to surgical preparation and after reperfusion. Assays for O2- were performed with and without zymosan (Z) activation. Results are expressed as nmol O2-/2 x 10(6) PMNs +/- SEM. Baseline production of O2- was 0.49 +/- 0.54 in central venous samples; Z increased the values to 6.77 +/- 2.13. After 2 hrs of reperfusion, central O2- was 1.57 +/- 0.75, which increased to 7.1 +/- 1.04 with Z. Gracilis venous samples O2- values with and without Z are reported in Table I. One way measures of analysis of variance showed no significant (p > 0.05) differences between samples. Our results demonstrate that PMNs are not the sole source of O2- in the pathophysiology of skeletal muscle I-R injury. PMN associated injury may be mediated by mechanisms other than O2- production.
超氧阴离子(O2-)和多形核白细胞(PMNs)与骨骼肌缺血再灌注(I-R)损伤的发生有关,但O2-的来源尚未明确。我们在5只麻醉犬中使用铁细胞色素还原试验研究了PMNs作为O2-潜在来源的情况。采用股薄肌I-R模型,缺血6小时后再灌注2小时。对侧肌肉作为对照。在缺血前以及再灌注0.5小时和2.0小时后,从缺血(I)和对照(C)肌肉的股薄肌静脉流出物中分离出PMNs。在手术准备前和再灌注后也采集中心静脉样本。在有和没有酵母聚糖(Z)激活的情况下进行O2-检测。结果以nmol O2-/2×10(6) PMNs±SEM表示。中心静脉样本中O2-的基础生成量为0.49±0.54;Z将该值提高到6.77±2.13。再灌注2小时后,中心O2-为1.57±0.75,Z激活后增加到7.1±1.04。表I报告了有和没有Z时股薄肌静脉样本的O2-值。单因素方差分析显示样本之间无显著(p>0.05)差异。我们的结果表明,在骨骼肌I-R损伤的病理生理学中,PMNs不是O2-的唯一来源。PMN相关损伤可能由O2-产生以外的机制介导。