Hemorrhagic shock and tissue injury provoke distinct components of trauma-induced coagulopathy in a swine model

出血性休克和组织损伤在猪模型中引发创伤性凝血病的不同症状

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作者:Alexis L Cralley, Ernest E Moore, Julia R Coleman, Navin Vigneshwar, Matt Bartley, Daniel Kissau, Andrew Eitel, Patrick Hom, Sanchayita Mitra, Arsen Ghasabyan, Miguel Fragoso, Zihan Guo, Hiroshi Deguchi, John H Griffin, Mitchell J Cohen, Christopher C Silliman, Anirban Banerjee, Kirk Hansen, Angela

Conclusion

Isolated injury in animal models can help elucidate the mechanistic pathways leading to TIC. Our results suggest that isolated TI leads to early histone release and a hypercoagulable state, with suppressed fibrinolysis. In contrast, HS promotes poor clot strength and hyperfibrinolysis resulting in hypocoagulability.

Methods

After induction of general anesthesia, 50 kg male, Yorkshire swine underwent isolated TI (bilateral muscle cutdown of quadriceps, bilateral femur fractures) or isolated HS (controlled bleeding to a base excess target of - 5 mmol/l) and observed for 240 min. Thrombelastography (TEG), calcium levels, thrombin activatable fibrinolysis inhibitor (TAFI), protein C, plasminogen activator inhibitor 1 (PAI-1), and plasminogen activator inhibitor 1/tissue-type plasminogen activator complex (PAI-1-tPA) were analyzed at pre-selected timepoints. Linear mixed models for repeated measures were used to compare

Results

TI resulted in elevated histone release which peaked at 120 min (p = 0.02), and this was associated with reduced time to clot formation (R time) by 240 min (p = 0.006). HS decreased clot strength at time 30 min (p = 0.003), with a significant decline in calcium (p = 0.001). At study completion, HS animals had elevated PAI-1 (p = 0.01) and PAI-1-tPA (p = 0.04), showing a trend toward hyperfibrinolysis, while TI animals had suppressed fibrinolysis. Protein C, TAFI and skeletal myosin were not different among the groups.

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