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Published on: February 28, 2012
Hsp70 protects from stroke in atrial fibrillation patients by preventing thrombosis without increased bleeding risk
Mikel Allende1, Eva Molina1, Elisabet Guruceaga2
1Division of Cardiovascular Sciences, Laboratory of Thrombosis and Haemostasis, Center for Applied Medical Research (CIMA), IdiSNA, Navarra's Health Research Institute, University of Navarra, Pío XII, 55, Pamplona, Spain.
Insights
Heat-shock protein 70 kDa (Hsp70) induction delays thrombus formation with minimal bleeding risk. This novel approach offers a safer antithrombotic therapy for atrial fibrillation patients and others at high bleeding hazard.
Area of Science:
- Cardiovascular Medicine
- Molecular Biology
- Thrombosis Research
Background:
- Atrial fibrillation (AF) increases cardio-embolic stroke risk.
- Current anticoagulant therapies pose a significant bleeding risk.
- Novel antithrombotic targets are needed for safer stroke prevention.
Purpose of the Study:
- To identify novel targets for safer antithrombotic therapies.
- To investigate the role of heat-shock protein 70 kDa (Hsp70) in stroke and thrombosis.
- To evaluate Hsp70 induction as a potential therapeutic strategy.
Main Methods:
- Microarray analysis identified HSPA1B (encoding Hsp70) as differentially expressed in AF patients with stroke.
- Hsp70 expression was validated in an independent AF cohort.
- Hsp70 knockout mice and Hsp70 inducers (TRC051384, tubastatin A) were used to assess thrombosis and bleeding times.
Main Results:
- HSPA1B/Hsp70 was down-regulated in AF patients with stroke.
- Hsp70 knockout mice showed accelerated thrombosis but unchanged bleeding times.
- Hsp70 inducers delayed thrombus formation in wild-type mice without increasing bleeding risk, even with aspirin co-administration.
- Hsp70 induction increased vascular thrombomodulin and activated protein C levels.
Conclusions:
- Hsp70 induction represents a novel antithrombotic strategy with a low bleeding risk.
- This approach is particularly promising for atrial fibrillation patients and high-bleeding-risk individuals.
- Targeting Hsp70 offers a safer alternative to conventional anticoagulants.
Aims:
Atrial fibrillation (AF) is a major risk factor for cardio-embolic stroke. Anticoagulant drugs are effective in preventing AF-related stroke. However, the high frequency of anticoagulant-associated major bleeding is a major concern. This study sought to identify new targets to develop safer antithrombotic therapies.
Methods And Results:
Here, microarray analysis in peripheral blood cells in eight patients with AF and stroke and eight AF subjects without stroke brought to light a stroke-related gene expression pattern. HSPA1B, which encodes for heat-shock protein 70 kDa (Hsp70), was the most differentially expressed gene. This gene was down-regulated in stroke subjects, a finding confirmed further in an independent AF cohort of 200 individuals. Hsp70 knock-out mice subjected to different thrombotic challenges developed thrombosis significantly earlier than their wild-type (WT) counterparts. Remarkably, the tail bleeding time was unchanged. Accordingly, both TRC051384 and tubastatin A, i.e. two Hsp70 inducers via different pathways, delayed thrombus formation in WT mice, the tail bleeding time still being unaltered. Most interestingly, Hsp70 inducers did not increase the bleeding risk even when aspirin was concomitantly administered. Hsp70 induction was associated with an increased vascular thrombomodulin expression and higher circulating levels of activated protein C upon thrombotic stimulus.
Conclusions:
Hsp70 induction is a novel approach to delay thrombus formation with minimal bleeding risk, and is especially promising for treating AF patients and in other situations where there is also a major bleeding hazard.
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