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Updated: Jul 31, 2026

A Fibrin-Enriched and tPA-Sensitive Photothrombotic Stroke Model
Published on: June 4, 2021
Antihypertensive drug treatment and fibrinolytic function
K Lottermoser1, B Weisser, H J Hertfelder
1Medizinische Universitäts-Poliklinik, and Institut für Experimentelle Hämatologie und Transfusionsmedizin, Bonn, Germany.
Insights
Hypertension increases thromboembolic risks like stroke. While some blood pressure drugs protect the brain better than the heart, the impact of other antihypertensives on the fibrinolytic system is under investigation.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Hematology
Background:
- Arterial hypertension significantly elevates risks of thromboembolic events, including ischemic stroke and myocardial infarction.
- Pharmacologic treatment of hypertension, particularly with diuretics and beta-blockers, shows greater protection against cerebrovascular events than coronary events.
- The fibrinolytic system, balancing plasminogen activators (t-PA) and inhibitors (PAI-1), is critical in thromboembolic event pathogenesis.
Purpose of the Study:
- To investigate whether antihypertensive drugs influence the fibrinolytic system.
- To explore the differential protection against cerebrovascular versus coronary events offered by various antihypertensive agents.
- To reconcile conflicting data on the interaction between renin-angiotensin system-acting drugs and fibrinolysis.
Main Methods:
- Review of available intervention studies on hypertension pharmacologic treatment.
- Analysis of experimental and clinical evidence on drug effects on the fibrinolytic system.
- Examination of studies on angiotensin II (A II) and bradykinin effects on PAI-1 and t-PA.
Main Results:
- Diuretics and beta-blockers may offer more cerebrovascular than coronary protection.
- Data on the interaction of diuretics, beta-blockers, and calcium antagonists with the fibrinolytic system are scarce and controversial.
- Experimental data show PAI-1 is stimulated by A II and t-PA by bradykinin, but clinical ACE inhibitor and A II receptor antagonist studies yield inconsistent results regarding fibrinolysis.
Conclusions:
- The precise impact of various antihypertensive drugs on the fibrinolytic system requires further elucidation.
- Discrepancies in clinical findings may stem from experimental conditions, such as renin-angiotensin system stimulation.
- Further research is needed to determine if antihypertensive treatment benefits extend beyond blood pressure control by modulating fibrinolysis.
Abstract:
Thromboembolic complications such as ischemic stroke and myocardial infarction are significantly more frequent in patients with arterial hypertension. From the available intervention studies, it appears that pharmacologic treatment of hypertension-at least with diuretics and beta-blockers-may more effectively protect against cerebrovascular as compared to coronary thromboembolic events. Whether other antihypertensive substances provide a more effective protection with respect to cardiac morbidity and mortality is the subject of numerous studies presently underway. These studies will help to answer the question of whether the extent of protection from coronary events during antihypertensive treatment depends on factors beyond blood pressure control. The fibrinolytic system is crucially involved in the pathogenesis of thromboembolic events. One determinant of this system is the balance between plasminogen activators (tissue-type plasminogen activator [t-PA]) and inhibitors (plasminogen activator inhibitor 1 [PAI-1]). Experimental and clinical evidence suggests that at least some of the drugs used in the treatment of hypertension may alter the activity of the fibrinolytic system. Scarce and controversial data with respect to such an interaction exist with respect to diuretics, beta-blockers, and calcium antagonists. In addition, experimental evidence demonstrates that PAI-1 is stimulated by angiotensin II (A II), whereas t-PA is activated by bradykinin. Thus, antihypertensive drugs acting within the renin angiotensin system should exert effects also within the fibrinolytic system. However, results from clinical studies with angiotensin converting enzyme (ACE) inhibitors and A II receptor antagonists do not unequivocally support such a concept. The discrepancy in the results may, at least in part, be explained by studies performed in healthy volunteer subjects showing that ACE inhibition profoundly affected fibrinolysis only during stimulation of the renin angiotensin system by NaCL restriction.
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