Cruz Dinna N, de Cal Massimo, Piccinni Pasquale, Ronco Claudio
Contrib Nephrol. 2010;167:77-82. doi: 10.1159/000315921. Epub 2010 Jun 1.
Sepsis involves a complex interaction between bacterial toxins and the host immune system. Endotoxin, a component of the outer membrane of Gram-negative bacteria, is involved in the pathogenesis of sepsis producing proinflammatory cytokines and activating the complement system, and is thus an ideal potential therapeutic target. Direct hemoperfusion using polymyxin B-immobilized fiber column (PMX-F) has been shown to bind and neutralize endotoxin in both in vitro and in vivo studies. Therefore, this extracorporeal therapy with PMX-F can potentially interrupt the biological cascade of sepsis. A systematic review of the published literature found positive effects of PMX-F on blood pressure and dopamine/dobutamine use, the PaO(2)/FiO(2) ratio, endotoxin removal, and mortality. It should be noted, however, that many of the analyzed studies were of suboptimal quality, which may then exaggerate the magnitude of these effects. Since this meta-analysis, other studies have been published including a multicenter randomized controlled trial on abdominal septic shock. In this study, PMX-F, when added to conventional therapy, significantly improved hemodynamics and organ dysfunction, and reduced 28-day mortality in this targeted population. There is clear biological rationale for endotoxin removal in the clinical management of severe sepsis and septic shock. The current literature seems to provide some support for this premise, and provides the basis for further rigorous study.
脓毒症涉及细菌毒素与宿主免疫系统之间的复杂相互作用。内毒素是革兰氏阴性菌外膜的一种成分,参与脓毒症的发病机制,可产生促炎细胞因子并激活补体系统,因此是一个理想的潜在治疗靶点。在体外和体内研究中均已表明,使用多黏菌素B固定纤维柱(PMX-F)进行直接血液灌流可结合并中和内毒素。因此,这种使用PMX-F的体外治疗有可能中断脓毒症的生物学级联反应。一项对已发表文献的系统评价发现,PMX-F对血压、多巴胺/多巴酚丁胺的使用、动脉血氧分压/吸入氧分数值(PaO₂/FiO₂)比值、内毒素清除及死亡率具有积极影响。然而,应当指出的是,许多纳入分析的研究质量欠佳,这可能会夸大这些效应的程度。自这项荟萃分析以来,又发表了其他一些研究,包括一项关于腹部感染性休克的多中心随机对照试验。在这项研究中,在常规治疗基础上加用PMX-F可显著改善血流动力学和器官功能障碍,并降低该目标人群的28天死亡率。在严重脓毒症和感染性休克的临床管理中,清除内毒素具有明确的生物学原理。当前的文献似乎为这一前提提供了一些支持,并为进一步的严谨研究奠定了基础。