Literature DB >> 12857777

Biology and pathogenesis of thrombosis and procoagulant activity in invasive infections caused by group A streptococci and Clostridium perfringens.

Amy E Bryant1.   

Abstract

Group A streptococcal necrotizing fasciitis/myonecrosis and Clostridium perfringens gas gangrene are two of the most fulminant gram-positive infections in humans. Tissue destruction associated with these infections progresses rapidly to involve an entire extremity. Multiple-organ failure is common, and morbidity and mortality remain high. Systemic activation of coagulation and dysregulation of the anticoagulation pathways contribute to the pathogenesis of many diverse disease entities of infectious etiology, and it has been our hypothesis that microvascular thrombosis contributes to reduced tissue perfusion, hypoxia, and subsequent regional tissue necrosis and organ failure in these invasive gram-positive infections. This article reviews the coagulation, anticoagulation, and fibrinolytic systems from cellular players to cytokines to novel antithrombotic therapies and discusses the mechanisms contributing to occlusive microvascular thrombosis and tissue destruction in invasive group A streptococcal and C. perfringens infections. A thorough understanding of these mechanisms may suggest novel therapeutic targets for patients with these devastating infections.

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Year:  2003        PMID: 12857777      PMCID: PMC164226          DOI: 10.1128/CMR.16.3.451-462.2003

Source DB:  PubMed          Journal:  Clin Microbiol Rev        ISSN: 0893-8512            Impact factor:   26.132


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4.  Vibrio vulnificus secretes a broad-specificity metalloprotease capable of interfering with blood homeostasis through prothrombin activation and fibrinolysis.

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8.  The Ashwell receptor mitigates the lethal coagulopathy of sepsis.

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Review 9.  Megakaryocyte emperipolesis: a new frontier in cell-in-cell interaction.

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Authors:  Anjana Chakravorty; Milena M Awad; Thomas J Hiscox; Jackie K Cheung; Glen P Carter; Jocelyn M Choo; Dena Lyras; Julian I Rood
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