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Updated: Aug 18, 2026

Pseudofracture: An Acute Peripheral Tissue Trauma Model
Published on: April 18, 2011
Blood transfusion and the two-insult model of post-injury multiple organ failure
J Aiboshi1, E E Moore, D J Ciesla
1Department of Surgery, Denver Health Medical Center, University of Colorado Health Sciences Center, 80204, USA.
Abstract:
Neutrophils (PMNs) have been implicated in the pathogenesis of multiple organ failure (MOF). The two-insult model of MOF is based on the fundamental concept that two sequential and independent insults that are individually innocuous against the host can cause overwhelming inflammation. The in vitro PMN priming/activation sequence simulates the two-insult model. Our work has demonstrated that transfusion is an early consistent risk factor for post-injury MOF and lysophosphatidylcholines (lyso-PCs) are generated in stored blood components. Additionally, platelet-activating factor (PAF) is a key inflammatory agent produced in severely injured patients. We therefore hypothesize that two events, trauma and transfusion, enhance PMN cytotoxicity irrespective of the sequence. Superoxide (O2-) production was measured by reduction of cytochrome c, adherence to fibrinogen was assessed by the radioactivity of adherent Na2(51)CrO4 (51Cr)-labeled PMNs, and endothelial cell (EC) damage by measuring the radioactivity released from 51Cr-labeled human umbilical vein endothelial cells monolayers. Isolated PMNs were primed with buffer, PAF (2 microM), or lyso-PCs (4.5, 15, and 30 microM) followed by activation with buffer, N-formyl-methionyl-leucyl-phenylalanine (fMLP) (1 microM), PAF (2 microM), or lyso-PCs (4.5, 15, and 30 microM). Neither PAF nor lyso-PCs alone stimulated O2- production. While PAF alone caused PMN adherence, lyso-PCs alone did not allowed PMNs to adhere to fibrinogen. However, both combinations of PAF/lyso-PCs and lyso-PCs/PAF significantly augmented O2- production and PMN adherence. Furthermore, these enhanced PMN cytotoxic responses significantly caused EC damage. These findings suggest that in the scenario of the two-insult model, early or late transfusion administered following trauma can provoke PMN cytotoxicity via priming or activation, thereby increasing the risk of post-injury MOF.
Insights
Trauma and transfusion can increase the risk of multiple organ failure (MOF) by enhancing neutrophil (PMN) cytotoxicity. This occurs through priming and activation, leading to increased inflammation and endothelial cell damage.
Area of Science:
- Immunology
- Pathophysiology
- Trauma Research
Background:
- Neutrophils (PMNs) play a key role in multiple organ failure (MOF) pathogenesis.
- The two-insult model suggests sequential, innocuous insults can cause severe inflammation.
- Transfusion is a risk factor for post-injury MOF, with stored blood generating lysophosphatidylcholines (lyso-PCs).
- Platelet-activating factor (PAF) is an inflammatory agent in trauma patients.
Purpose of the Study:
- To investigate if trauma and transfusion sequentially enhance PMN cytotoxicity.
- To determine if the sequence of insults affects PMN activation and damage.
Main Methods:
- Isolated PMNs were primed and activated with PAF and/or lyso-PCs.
- Superoxide (O2-) production was measured.
- PMN adherence to fibrinogen was assessed.
- Endothelial cell (EC) damage was quantified.
Main Results:
- Neither PAF nor lyso-PCs alone stimulated O2- production or PMN adherence.
- Combined PAF/lyso-PCs or lyso-PCs/PAF significantly augmented O2- production and PMN adherence.
- Enhanced PMN responses led to significant EC damage.
Conclusions:
- Sequential exposure to trauma (simulated by PAF) and transfusion (simulated by lyso-PCs) enhances PMN cytotoxicity.
- This PMN activation increases the risk of post-injury MOF.
- Transfusion timing (early or late) following trauma can provoke PMN-mediated damage.
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