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Carbon monoxide and iron modulate plasmatic coagulation in Alzheimer's disease
Vance G Nielsen, Etheresia Pretorius, Janette Bester
1Department of Anesthesiology, the University of Arizona College of Medicine, P.O. Box 245114; 1501 North Campbell Avenue, Tucson, AZ 85724-5114, USA. vgnielsen@email.arizona.edu.
Insights
Alzheimer's disease patients show altered blood clotting due to carbon monoxide (CO) and iron. These factors, linked to heme oxygenase (Hmox) activity, affect coagulation and thrombus structure in AD, suggesting a role in disease.
Area of Science:
- Neurology
- Biochemistry
- Hematology
Background:
- Alzheimer's disease (AD) is a leading cause of death with unknown causes.
- Heme oxygenase (Hmox) activity and its products, carbon monoxide (CO) and iron, are implicated in AD.
- CO and iron are known to influence blood coagulation and thrombus structure.
Purpose of the Study:
- To investigate the hypothesis that Alzheimer's disease patients exhibit altered coagulation kinetics influenced by CO and iron.
- To examine the ultrastructural changes in thrombi from AD patients and correlate them with CO and iron exposure.
Main Methods:
- Viscoelastic assessments of coagulation in a cohort of AD patients (n=11).
- Scanning electron microscopy analysis of thrombi from a separate cohort of AD patients (n=12).
- Stratification of AD patients based on serum ferritin concentrations to assess the impact of iron levels.
Main Results:
- All AD patients in the first cohort showed enhanced coagulation with CO, iron, or both.
- Thrombi from AD patients exhibited ultrastructural features indicative of CO and iron exposure.
- AD patients with elevated serum ferritin had thinner fibrin fiber diameters, similar to normal plasma treated with iron or CO.
Conclusions:
- Alzheimer's disease patients display altered coagulation kinetics and thrombus ultrastructure consistent with exposure to CO and iron.
- CO and iron warrant further investigation as potential contributors to Alzheimer's disease pathogenesis.
Abstract:
Alzheimer's disease (AD) is a significant source of morbidity and mortality for millions of people worldwide, and multiple potential etiologies have been postulated to contribute to AD. Among these, spontaneous cerebral emboli and increased cerebral and circulating heme oxygenase (Hmox) activity in AD patients are of particular interest, as two of the products of Hmox activity, carbon monoxide (CO) and iron enhance plasmatic coagulation and modify the ultrastructure of thrombi. We hypothesized that patients afflicted with AD would have coagulation kinetics modulated by CO and iron. Using viscoelastic assessments of coagulation, it was determined with a small cohort (n=11) of AD patients that all had enhancement of coagulation by CO, iron, or both. In a complementary fashion, it was determined that a separate cohort (n=12) of AD patients had thrombi with ultrastructural features consistent with iron and CO exposure as assessed with scanning electron microscopy. Further, when stratified by normal or abnormally increased serum ferritin concentrations (which can be increased by Hmox), the AD patients with abnormal ferritin concentrations had significantly thinner fibrin fiber diameters, not unlike that noted when normal plasma is mixed with iron or CO. In sum, AD patients were noted to have plasmatic coagulation kinetic and thrombus ultrastructural changes consistent with exposure to CO and iron. Future investigation of CO and iron in the pathogenesis of Alzheimer's disease is warranted.
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