Javascript must be enabled to continue!
Regression of Abdominal Aortic Aneurysm by Inhibition of c‐Jun N‐Terminal Kinase in Mice
View through CrossRef
Abstract: Abdominal aortic aneurysm (AAA) is a common disease that, when surgical treatment is inapplicable, results in rupture of the aorta with high mortality. Although nonsurgical treatment for AAA is eagerly awaited, the destruction of the aortic walls in AAA has been considered an irreversible process. We found that c‐Jun N‐terminal kinase (JNK) is highly activated in human AAA walls. We also found that JNK activity is essential for the expression of matrix metalloproteinase (MMP)‐9 and, concurrently, suppression of the extracellular matrix (ECM) biosynthesis. We therefore investigated the role of JNK in the pathogenesis of AAA in vivo. We created a mouse AAA model by periaortic application of CaCl2, which was accompanied by activation of JNK and MMPs, and suppression of lysyl oxidase (LOX), which is an essential biosynthetic enzyme for collagen and elastin fibers. Our data indicate that, in addition to MMP activities, suppression of ECM biosynthesis may contribute to the AAA pathogenesis because local LOX gene delivery prevented AAA formation. Treatment of mice with SP600125, a specific JNK inhibitor, completely abrogated the formation of CaCl2‐induced AAA. Furthermore, SP600125 treatment after the establishment of AAA caused a reduction in the aortic diameters with normalized tissue architecture. SP600125 treatment also caused significant regression of angiotensin II‐induced AAA in ApoE‐null mice after its establishment, as demonstrated by serial ultrasonographic studies in live animals. These data demonstrate that JNK dictates the abnormal ECM metabolism in AAA pathogenesis by enhancing tissue degradation and suppressing tissue repair. Therefore, inhibition of JNK may provide a novel therapeutic option for AAA.
Title: Regression of Abdominal Aortic Aneurysm by Inhibition of c‐Jun N‐Terminal Kinase in Mice
Description:
Abstract: Abdominal aortic aneurysm (AAA) is a common disease that, when surgical treatment is inapplicable, results in rupture of the aorta with high mortality.
Although nonsurgical treatment for AAA is eagerly awaited, the destruction of the aortic walls in AAA has been considered an irreversible process.
We found that c‐Jun N‐terminal kinase (JNK) is highly activated in human AAA walls.
We also found that JNK activity is essential for the expression of matrix metalloproteinase (MMP)‐9 and, concurrently, suppression of the extracellular matrix (ECM) biosynthesis.
We therefore investigated the role of JNK in the pathogenesis of AAA in vivo.
We created a mouse AAA model by periaortic application of CaCl2, which was accompanied by activation of JNK and MMPs, and suppression of lysyl oxidase (LOX), which is an essential biosynthetic enzyme for collagen and elastin fibers.
Our data indicate that, in addition to MMP activities, suppression of ECM biosynthesis may contribute to the AAA pathogenesis because local LOX gene delivery prevented AAA formation.
Treatment of mice with SP600125, a specific JNK inhibitor, completely abrogated the formation of CaCl2‐induced AAA.
Furthermore, SP600125 treatment after the establishment of AAA caused a reduction in the aortic diameters with normalized tissue architecture.
SP600125 treatment also caused significant regression of angiotensin II‐induced AAA in ApoE‐null mice after its establishment, as demonstrated by serial ultrasonographic studies in live animals.
These data demonstrate that JNK dictates the abnormal ECM metabolism in AAA pathogenesis by enhancing tissue degradation and suppressing tissue repair.
Therefore, inhibition of JNK may provide a novel therapeutic option for AAA.
Related Results
Blood pressure, hypertension, and the risk of aortic aneurysm in the UK Biobank
Blood pressure, hypertension, and the risk of aortic aneurysm in the UK Biobank
Abstract
Background
Although an association between elevated blood pressure and risk of aortic aneurysm is established, f...
Mortality After Elective and Ruptured Abdominal Aortic Aneurysm Surgical Repair: 12-Year Single-Center Experience of Estonia
Mortality After Elective and Ruptured Abdominal Aortic Aneurysm Surgical Repair: 12-Year Single-Center Experience of Estonia
Background and Aims:
Abdominal aortic aneurysm is a degenerative vascular pathology with high mortality due to its rupture, which is why timely treatment is cru...
Vascular Smooth Muscle Cells in Aortic Aneurysm: From Genetics to Mechanisms
Vascular Smooth Muscle Cells in Aortic Aneurysm: From Genetics to Mechanisms
Aortic aneurysm, including thoracic aortic aneurysm and abdominal aortic aneurysm, is the second most prevalent aortic disease following atherosclerosis, representing the ninth‐lea...
Imaging Characteristic of Abdominal Aortic Aneurysm on CTscanner at E Hospital
Imaging Characteristic of Abdominal Aortic Aneurysm on CTscanner at E Hospital
Abstract: Abdominal aortic aneurysm is a swelling (aneurysm) of the aorta. Abdominal aortic aneurysms often grow slowly without noticeable symptoms, so screening by clinical examin...
AORTIC ROOT ANEURYSM OR ECTASIA TREATED WITH AORTIC ROOT WRAPPED PROCEDURE
AORTIC ROOT ANEURYSM OR ECTASIA TREATED WITH AORTIC ROOT WRAPPED PROCEDURE
Objectives
To develop a relatively simple and effective and less risk operation, aortic root wrapped procedure, to treat with aortic root aneurysm or ectasia.
...
P1820New parameters for the evaluation of mechanic and elastic properties of the aortic root in Marfan Syndrome
P1820New parameters for the evaluation of mechanic and elastic properties of the aortic root in Marfan Syndrome
Abstract
Background
Elastic properties of the thoracic aorta in patients with Marfan Syndrome (MS) have already been evaluated w...
Inhibition of Aneurysm Progression by Direct Renin Inhibition in a Rabbit Model
Inhibition of Aneurysm Progression by Direct Renin Inhibition in a Rabbit Model
Angiotensin II is thought to participate in aneurysm formation, because of its ability to induce and perpetuate inflammation in the aortic wall. Because activation of renin is the ...
Targeting MEK signalling with PD0325901 halts aortic dilatation and wall stiffening in a murine model of thoracic aortic aneurysm
Targeting MEK signalling with PD0325901 halts aortic dilatation and wall stiffening in a murine model of thoracic aortic aneurysm
Abstract
Background
Thoracic aortic aneurysm (TAA) is a fatal condition marked by progressive aortic dilation and weakeni...

