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Published on: September 26, 2018
Apoptotic Ablation of Platelets Reduces Atherosclerosis in Mice With Diabetes
Man K S Lee1,2,3, Michael J Kraakman1, Dragana Dragoljevic1,3
1Haematopoiesis and Leukocyte Biology, Baker Heart and Diabetes Institute, Melbourne, Australia (M.K.S.L., M.J.K., D.D., N.M.J.H., M.C.F., A.A.-S., C.B.-V., O.D.C., F.B., E.M., A.J.M.).
Insights
Reducing platelet counts by targeting Bcl-xL can decrease atherosclerosis in diabetes. This approach shows promise for lowering cardiovascular disease risk in diabetic patients by reducing platelet activation and numbers.
Area of Science:
- Cardiovascular Disease Research
- Diabetes Complications
- Hematology and Thrombosis
Background:
- Diabetes significantly elevates cardiovascular disease risk, primarily through accelerated atherosclerosis.
- Diabetic individuals exhibit increased platelet activation, reactivity, and suboptimal responses to antiplatelet therapies.
Purpose of the Study:
- To investigate if reducing platelet numbers by inducing apoptosis decreases atherosclerosis in diabetes.
- To explore the therapeutic potential of targeting the antiapoptotic protein Bcl-xL (B-cell lymphoma-extra large) for cardiovascular disease risk reduction.
Main Methods:
- Genetic approach: Transplanted bone marrow with reduced Bcl-xL function into diabetic, atherosclerotic-prone mice.
- Pharmacological approach: Administered a BH3 mimetic (ABT-737) to diabetic mice to target Bcl-xL.
- Assessed platelet counts, activation markers, leukocyte activation, and atherosclerotic lesion formation.
Main Results:
- Reduced Bcl-xL function significantly decreased platelet numbers without affecting other blood cells.
- Genetic and pharmacological targeting of Bcl-xL led to a significant reduction in atherosclerosis.
- ABT-737 normalized platelet and leukocyte activation, promoting a more stable atherosclerotic plaque phenotype.
Conclusions:
- Selectively reducing circulating platelets by targeting Bcl-xL to promote platelet apoptosis can mitigate atherosclerosis.
- This strategy holds potential for lowering cardiovascular disease risk in individuals with diabetes.
Objective:
People with diabetes are at a significantly higher risk of cardiovascular disease, in part, due to accelerated atherosclerosis. Diabetic subjects have increased number of platelets that are activated, more reactive, and respond suboptimally to antiplatelet therapies. We hypothesized that reducing platelet numbers by inducing their premature apoptotic death would decrease atherosclerosis. Approach and Results: This was achieved by targeting the antiapoptotic protein Bcl-xL (B-cell lymphoma-extra large; which is essential for platelet viability) via distinct genetic and pharmacological approaches. In the former, we transplanted bone marrow from mice carrying the Tyr15 to Cys loss of function allele of Bcl-x (known as Bcl-x) or wild-type littermate controls into atherosclerotic-prone Ldlr+/- mice made diabetic with streptozotocin and fed a Western diet. Reduced Bcl-xL function in hematopoietic cells significantly decreased platelet numbers, exclusive of other hematologic changes. This led to a significant reduction in atherosclerotic lesion formation in Bcl-x bone marrow transplanted Ldlr+/- mice. To assess the potential therapeutic relevance of reducing platelets in atherosclerosis, we next targeted Bcl-xL with a pharmacological strategy. This was achieved by low-dose administration of the BH3 (B-cell lymphoma-2 homology domain 3) mimetic, ABT-737 triweekly, in diabetic Apoe-/- mice for the final 6 weeks of a 12-week study. ABT-737 normalized platelet numbers along with platelet and leukocyte activation to that of nondiabetic controls, significantly reducing atherosclerosis while promoting a more stable plaque phenotype.
Conclusions:
These studies suggest that selectively reducing circulating platelets, by targeting Bcl-xL to promote platelet apoptosis, can reduce atherosclerosis and lower cardiovascular disease risk in diabetes. Graphic Abstract: A graphic abstract is available for this article.
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