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The postischemic gut serves as a priming bed for circulating neutrophils that provoke multiple organ failure
E E Moore1, F A Moore, R J Franciose
1Department of Surgery, Denver General Hospital, CO 80204.
Abstract:
Our trauma research center program entitled, "Trauma Primes Cells" is based on the fundamental hypothesis that prior exposure to multiple, sequential, sublethal cellular insults primes constructive or destructive pathways of cellular responses of subsequent injury. A major objective is to design therapy that will reduce the incidence of multiple organ failure. Although a number of inflammatory cascades have been incriminated in the pathogenesis of multiple organ failure (MOF), diffuse PMN-mediated tissue injury remains an attractive unifying concept. We have developed a sequential insult rodent model in which the priming event consisted of superior mesenteric arterial (SMA) clamping for 45 minutes followed by 6 hours of reperfusion. Following this priming event, activation was induced with a low dose of endotoxin (2.5 mg/kg). We believe that these studies support our hypothesis: mesenteric ischemic/reperfusion primes circulating PMNs. When these have been activated they can then be provoked by endotoxin to provoke distant organ injury. Primed PMNs are released from the postischemic mesenteric bed and enter the systemic circulation. They subsequently sequester in the pulmonary vascular bed where they are relatively harmless until they are activated by low dose endotoxin. These activated PMNs then migrate across the endothelium cell and release reactive oxygen metabolites.
Insights
Prior cellular insults can prime the body for severe injury. This study shows mesenteric ischemia primes neutrophils, which then cause distant organ damage when activated by endotoxin.
Area of Science:
- Trauma research
- Cellular biology
- Immunology
Background:
- Multiple organ failure (MOF) pathogenesis involves inflammatory cascades.
- Polymorphonuclear leukocyte (PMN)-mediated tissue injury is a key factor in MOF.
- Understanding cellular priming by sublethal insults is crucial for developing MOF therapies.
Purpose of the Study:
- To test the hypothesis that prior cellular insults prime destructive pathways for subsequent injury.
- To investigate the role of primed neutrophils in distant organ injury following sequential insults.
- To develop therapeutic strategies reducing the incidence of MOF.
Main Methods:
- Developed a sequential insult rodent model.
- Priming event: superior mesenteric arterial (SMA) clamping (45 min) followed by reperfusion (6 hours).
- Activation: low-dose endotoxin (2.5 mg/kg) administration after the priming event.
Main Results:
- Mesenteric ischemia/reperfusion primes circulating neutrophils (PMNs).
- Primed PMNs are released into circulation and sequester in the pulmonary vasculature.
- Endotoxin activates these PMNs, leading to migration across endothelium and reactive oxygen metabolite release, causing distant organ injury.
Conclusions:
- Mesenteric ischemia/reperfusion serves as a priming insult for circulating PMNs.
- Primed PMNs, when activated by endotoxin, can cause distant organ injury.
- This mechanism highlights a pathway contributing to MOF.