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Endothelialized Microfluidics for Studying Microvascular Interactions in Hematologic Diseases
Published on: June 22, 2012
Thrombotic microangiopathies
1UCLA Division of Hematology-Oncology, David Geffen School of Medicine at the University of California, 100 UCLA Medical Plaza, Suite 550, Los Angeles, CA 90095.
Objective:
To review the clinical features and pathophysiologic mechanisms of the thrombotic microangiopathies (TMAs) including acquired and congenital thrombotic thrombocytopenic purpura (TTP), Shiga toxin-induced and atypical (non-Shiga toxin-induced) hemolytic uremic syndrome (HUS), and the TMAs associated with pregnancy, drugs, and organ transplantation.
Methods:
PubMed Medline was used to identify articles published from 2000 to July 2013 using the following key words: thrombotic thrombocytopenic purpura, hemolytic uremic syndrome, Shiga toxin, ADAMTS13, and eculizumab. Articles in languages other than English, papers available in abstract form only, and nearly all single case reports were excluded. Small series, reports from registries and study groups, reviews, guidelines, and articles concerning pathophysiology and therapy were preferentially considered.
Results:
Impaired post-secretion processing of unusually large von Willebrand multimers due to deficiency of ADAMTS13 (IgG antibodies or congenital), dysregulation of the alternative complement pathway (mutations and/or specific antibodies), and endothelial injury are pathophysiologic mechanisms involved in the TMAs. Acquired and congenital TTP are due primarily to severe ADAMTS13 deficiency, atypical HUS is commonly associated with complement dysregulation, and Shiga toxin, drugs, immune complexes, and others likely damage endothelium. However, there is considerable mechanistic overlap, and the TMAs often have multifactorial causation. Plasma procedures, complement pathway inhibition, immunosuppression, and general supportive care are the principal therapies.
Conclusions:
The TMAs are very important conditions because of their associated organ damage and mortality rates. Prompt recognition and categorization by both clinical presentation and pathophysiologic mechanisms should become routine as they are crucial to an optimal treatment plan. Treatment advances have substantially reduced the morbidity of these disorders. Investigational therapies are promising.
Insights
Thrombotic microangiopathies (TMAs) involve ADAMTS13 deficiency, complement dysregulation, or endothelial injury. Prompt recognition and treatment advances significantly improve outcomes for these serious conditions.
Area of Science:
- Hematology
- Nephrology
- Internal Medicine
Background:
- Thrombotic microangiopathies (TMAs) encompass a group of serious disorders including thrombotic thrombocytopenic purpura (TTP) and hemolytic uremic syndrome (HUS).
- These conditions are characterized by microangiopathic hemolytic anemia, thrombocytopenia, and organ damage, often with significant mortality.
- Understanding the diverse pathophysiologic mechanisms is crucial for effective management.
Purpose of the Study:
- To review the clinical features and pathophysiologic mechanisms of various TMAs.
- To cover acquired and congenital TTP, Shiga toxin-induced and atypical HUS, and TMAs related to pregnancy, drugs, and transplantation.
Main Methods:
- A comprehensive literature search was conducted using PubMed Medline from 2000 to July 2013.
- Keywords included TTP, HUS, Shiga toxin, ADAMTS13, and eculizumab.
- Exclusion criteria involved non-English articles, abstracts only, and most single case reports; priority was given to reviews, guidelines, and studies on pathophysiology and therapy.
Main Results:
- Key pathophysiologic mechanisms include impaired von Willebrand factor processing (ADAMTS13 deficiency), complement pathway dysregulation, and endothelial injury.
- Acquired/congenital TTP primarily involves ADAMTS13 deficiency, while atypical HUS is linked to complement issues; Shiga toxin and other factors cause endothelial damage.
- TMAs often have multifactorial causes with significant mechanistic overlap.
Conclusions:
- TMAs are critical conditions with high rates of organ damage and mortality.
- Prompt clinical recognition and categorization by mechanism are vital for optimal treatment.
- Advances in treatment, including plasma procedures and complement inhibition, have reduced morbidity, with promising investigational therapies.
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