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Published on: October 1, 2012
Dickkopf-1 release by the bone marrow upon ischemic stroke bridges neurovascular and immune deregulations
Romain Menet1, Maxime Bernard1, Sarah Lecordier1
1Department of Psychiatry and Neuroscience, Faculty of Medicine, Université Laval, Quebec City, QC, Canada; Neuroscience Axis, Research Center of CHU de Québec - Université Laval, Quebec City, QC, Canada.
Abstract:
Neurovascular and immune alterations decisively govern definitive damage maturation after stroke. Dickkopf (DKK)1 elevated levels in the blood circulation of stroke patients correlate with poor outcomes. Herein, we report that Dkk1 mRNA expression is not endogenously present in the healthy brain, and is barely and sparsely detectable at the lesion site in experimental ischemic stroke. Notably, we reveal a progressive increased protein expression of peripheral DKK1 in the subacute phase. Using genetic tools and bone marrow replacement approaches to mediate conditional DKK1 tissue-specific induction in conjunction with imaging, molecular, transcriptomic and functional studies, we demonstrate that DKK1 high levels at stroke onset accelerate subacute injury progression via deregulation of neurovascular functions. DKK1 prolonged post-stroke elevated levels mediate a chronic neuroinflammation associated with anxiety-like behaviors. DKK1 restricted induction in the bone marrow is sufficient to accelerate the subacute damage progression. DKK1 modulates the subacute peripheral immune response, suggesting that its de novo bone marrow expression represents a novel mechanism to regulate hematopoiesis in response to stroke. Neutralization of DKK1's biological activity improves stroke outcomes. Our results indicate that DKK1 bone marrow release is a major determinant of definitive damage maturation after stroke and that its neutralization constitutes a promising disease-modifying therapeutic avenue.
Insights
Elevated Dickkopf-1 (DKK1) levels after stroke worsen brain damage and inflammation. Targeting DKK1, particularly its release from bone marrow, offers a promising therapeutic strategy to improve stroke outcomes.
Area of Science:
- Neuroscience
- Immunology
- Vascular Biology
Background:
- Stroke induces neurovascular and immune changes impacting damage.
- Elevated Dickkopf-1 (DKK1) in stroke patients correlates with poor prognosis.
Purpose of the Study:
- Investigate DKK1's role in stroke pathophysiology.
- Determine DKK1's source and therapeutic potential.
Main Methods:
- Utilized genetic models and bone marrow transplantation for DKK1 induction.
- Conducted imaging, molecular, transcriptomic, and functional analyses.
- Assessed outcomes following DKK1 neutralization.
Main Results:
- DKK1 is upregulated post-stroke, primarily in protein form.
- Induced DKK1 accelerates subacute injury by disrupting neurovascular function.
- Bone marrow-derived DKK1 drives peripheral immune response and hematopoiesis.
- DKK1 neutralization improves stroke outcomes and reduces chronic neuroinflammation and anxiety-like behaviors.
Conclusions:
- Bone marrow DKK1 release is critical for stroke damage progression.
- DKK1 neutralization represents a novel therapeutic target for stroke.
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