Thiel M, Holzer K, Kreimeier U, Moritz S, Peter K, Messmer K
Institute for Surgical Research and Department of Anesthesiology, Klinikum Grosshadern, Ludwig-Maximilians-University Munich, Germany.
Infect Immun. 1997 Jun;65(6):2136-44. doi: 10.1128/iai.65.6.2136-2144.1997.
Endotoxin-activated polymorphonuclear leukocytes (PMNL) adhere to the vascular endothelium and cause damage by the release of toxic superoxide anions (O2-). Because adenosine is a potent inhibitor of PMNL in vitro, the present study investigates the effects of this nucleoside on the functions of circulating PMNL in a standardized porcine model of hyperdynamic endotoxemia. Ten anesthesized pigs received an intravenous (i.v.) 330-min infusion of endotoxin (5 microg/kg of body weight per h). Another 10 pigs were also infused with endotoxin plus adenosine (150 microg/kg/min [i.v.]); this treatment was begun 30 min prior to the beginning of endotoxin treatment. Control groups (five animals per group) received either adenosine or physiological saline. Infusion of endotoxin caused severe neutropenia, shedding of L-selectin, upregulation of beta2-integrins, increased binding of C3-coated zymosan particles, and subsequent phagocytosis by PMNL. While phagocytosis-induced production of oxygen radicals appeared to decrease, extracellular release of superoxide anions was strongly enhanced. Infusion of adenosine during endotoxemia had no effect on neutropenia, expression of adhesion molecules, C3-induced adhesion, phagocytosis, or intracellular production of oxygen radicals, whereas extracellular release of O2- was strongly inhibited. Thus, i.v. infusion of adenosine during endotoxemia could be useful in protecting from O2(-)-mediated tissue injury without compromising the bactericidal mechanisms of PMNL.
内毒素激活的多形核白细胞(PMNL)黏附于血管内皮,并通过释放有毒的超氧阴离子(O2-)造成损伤。由于腺苷在体外是PMNL的强效抑制剂,本研究在标准化的高动力型内毒素血症猪模型中,研究了这种核苷对循环PMNL功能的影响。10只麻醉猪接受静脉内(i.v.)330分钟的内毒素输注(每小时5微克/千克体重)。另外10只猪也输注内毒素加腺苷(150微克/千克/分钟 [i.v.]);该治疗在内毒素治疗开始前30分钟开始。对照组(每组5只动物)接受腺苷或生理盐水。输注内毒素导致严重的中性粒细胞减少、L-选择素脱落、β2-整合素上调、C3包被的酵母聚糖颗粒结合增加以及随后PMNL的吞噬作用。虽然吞噬作用诱导的氧自由基产生似乎减少,但超氧阴离子的细胞外释放却大大增强。在内毒素血症期间输注腺苷对中性粒细胞减少、黏附分子表达、C-3诱导的黏附、吞噬作用或氧自由基的细胞内产生没有影响,而O2-的细胞外释放则受到强烈抑制。因此,在内毒素血症期间静脉输注腺苷可能有助于防止O2(-)介导的组织损伤,而不会损害PMNL的杀菌机制。