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Published on: May 14, 2020
Aneurysm severity is suppressed by deletion of CCN4
Helen Williams1, Kerry S Wadey1, Aleksandra Frankow1
1Translational Health Sciences, Bristol Medical School, Research Floor Level 7, Bristol Royal Infirmary, Bristol, BS2 8HW, UK.
Abstract:
Patients with abdominal aortic aneurysms are frequently treated with high-risk surgery. A pharmaceutical treatment to reverse aneurysm progression could prevent the need for surgery and save both lives and healthcare resources. Since CCN4 regulates cell migration, proliferation and apoptosis, processes involved in aneurysm progression, it is a potential regulator of aneurysm progression. We investigated the role of CCN4 in a mouse aneurysm model, using apolipoprotein-E knockout (ApoE-/-) mice fed high fat diet and infused with Angiotensin II (AngII). Blood pressure was similarly elevated in CCN4-/-ApoE-/- mice and CCN4+/+ApoE-/- mice (controls) in response to AngII infusion. Deletion of CCN4 significantly reduced the number of ruptured aortae, both thoracic and abdominal aortic area, and aneurysm grade score, compared to controls. Additionally, the frequency of vessel wall remodelling and the number of elastic lamina breaks was significantly suppressed in CCN4-/-ApoE-/- mice compared to controls. Immunohistochemistry revealed a significantly lower proportion of macrophages, while the proportion of smooth muscle cells was not affected by the deletion of CCN4. There was also a reduction in both proliferation and apoptosis in CCN4-/-ApoE-/- mice compared to controls. In vitro studies showed that CCN4 significantly increased monocyte adhesion beyond that seen with TNFα and stimulated macrophage migration by more than threefold. In summary, absence of CCN4 reduced aneurysm severity and improved aortic integrity, which may be the result of reduced macrophage infiltration and cell apoptosis. Inhibition of CCN4 could offer a potential therapeutic approach for the treatment of aneurysms.
Insights
CCN4 deficiency reduces abdominal aortic aneurysm severity by decreasing macrophage infiltration and cell apoptosis. This suggests CCN4 inhibition may be a potential therapeutic strategy for treating aneurysms.
Area of Science:
- Vascular Biology
- Atherosclerosis Research
- Cellular and Molecular Medicine
Background:
- Abdominal aortic aneurysms (AAAs) pose significant health risks, often requiring high-risk surgery.
- A pharmaceutical approach to halt AAA progression could reduce mortality and healthcare costs.
- CCN4's known roles in cell migration, proliferation, and apoptosis suggest its involvement in AAA development.
Purpose of the Study:
- To investigate the role of CCN4 in AAA progression using a mouse model.
- To determine if CCN4 deficiency impacts AAA severity, aortic integrity, and cellular mechanisms.
Main Methods:
- Utilized apolipoprotein-E knockout (ApoE-/-) mice on a high-fat diet infused with Angiotensin II (AngII).
- Compared AAA development and aortic characteristics between CCN4-/-ApoE-/- mice and control CCN4+/+ApoE-/- mice.
- Performed immunohistochemistry and in vitro assays to assess cellular changes, macrophage infiltration, and smooth muscle cell behavior.
Main Results:
- CCN4 deletion significantly reduced aortic rupture, aneurysm size, and overall aneurysm grade.
- Absence of CCN4 suppressed vascular wall remodeling and elastic lamina breaks.
- CCN4 deficiency led to decreased macrophage infiltration and reduced cell proliferation and apoptosis, with no effect on smooth muscle cells.
- In vitro studies confirmed CCN4 enhances monocyte adhesion and macrophage migration.
Conclusions:
- Absence of CCN4 ameliorates AAA severity and enhances aortic integrity.
- Reduced macrophage infiltration and apoptosis are key mechanisms underlying CCN4's protective effect.
- Targeting CCN4 presents a promising therapeutic strategy for managing abdominal aortic aneurysms.
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