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Abstract 101: Dipeptidylpeptidase-iv Inhibition Using MK626 Attenuates BAPB/AT2 Induced Murine Aneurysm
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The dearth of effective treatments to diminish aneurysm progression is a recognized clinical challenge. Modulation of the glucagon-like peptide-1 (GLP-1) pathway is a recent addition to anti-diabetic management regimes, and has pleiotropic effects to inhibit arterial wall macrophage infiltration, a key pathological event in aneurysmal disease. We therefore hypothesized that inhibition of endogenous breakdown of GLP-1, using the dipeptidylpeptidase-IV inhibitor MK626, would attenuate BAPN/AT2 induced murine aneurysm.
Eight-week-old C57/Bl6 mice received two weeks of oral beta-aminopropriononitrile (BAPN) and four weeks of angiotensin-2 (AT2) via mini-osmotic pump. MK626 3mg/kg in methylcellulose vehicle was administered daily and compared to control methylcellulose vehicle. At four weeks, whole aortas were dissected and photomicrographed. Cross sections of aorta were stained using H&E and EVG.
Compared to wild-type, BAPN/AT2 caused dilatation of the aorta from the ascending to the suprarenal segment (p<0.002) with infrarenal sparing (p=0.77). Focal aneurysmal dilatation reproducibly occurred in the suprarenal aorta (wild-type diameter 0.93±0.03mm, n=8; BAPN/AT2 diameter 2.26±0.12, n=8; p<0.0001). Treatment with MK626 attenuated dilatation of the descending aorta compared to controls (BAPN/AT2 control 1.26±0.05mm, n=8; MK626 1.07±0.05mm, n=10; p=0.03). The focal suprarenal aneurysmal dilatation was significantly reduced by treatment with MK626 (BAPN AT2 control 2.26±0.34mm, n=8; MK626 1.66±0.32mm, n=10; p=0.0001). BAPN/AT2 induced aortic aneurysm was associated with excess matrix deposition, increased medial thickness, and elastic fibre fragmentation.
Modulation of the GLP pathway using the dipeptidylpeptidase-IV inhibitor MK626 attenuates aneurysm in a BAPN/AT2 induced murine model.
Ovid Technologies (Wolters Kluwer Health)
Title: Abstract 101: Dipeptidylpeptidase-iv Inhibition Using MK626 Attenuates BAPB/AT2 Induced Murine Aneurysm
Description:
The dearth of effective treatments to diminish aneurysm progression is a recognized clinical challenge.
Modulation of the glucagon-like peptide-1 (GLP-1) pathway is a recent addition to anti-diabetic management regimes, and has pleiotropic effects to inhibit arterial wall macrophage infiltration, a key pathological event in aneurysmal disease.
We therefore hypothesized that inhibition of endogenous breakdown of GLP-1, using the dipeptidylpeptidase-IV inhibitor MK626, would attenuate BAPN/AT2 induced murine aneurysm.
Eight-week-old C57/Bl6 mice received two weeks of oral beta-aminopropriononitrile (BAPN) and four weeks of angiotensin-2 (AT2) via mini-osmotic pump.
MK626 3mg/kg in methylcellulose vehicle was administered daily and compared to control methylcellulose vehicle.
At four weeks, whole aortas were dissected and photomicrographed.
Cross sections of aorta were stained using H&E and EVG.
Compared to wild-type, BAPN/AT2 caused dilatation of the aorta from the ascending to the suprarenal segment (p<0.
002) with infrarenal sparing (p=0.
77).
Focal aneurysmal dilatation reproducibly occurred in the suprarenal aorta (wild-type diameter 0.
93±0.
03mm, n=8; BAPN/AT2 diameter 2.
26±0.
12, n=8; p<0.
0001).
Treatment with MK626 attenuated dilatation of the descending aorta compared to controls (BAPN/AT2 control 1.
26±0.
05mm, n=8; MK626 1.
07±0.
05mm, n=10; p=0.
03).
The focal suprarenal aneurysmal dilatation was significantly reduced by treatment with MK626 (BAPN AT2 control 2.
26±0.
34mm, n=8; MK626 1.
66±0.
32mm, n=10; p=0.
0001).
BAPN/AT2 induced aortic aneurysm was associated with excess matrix deposition, increased medial thickness, and elastic fibre fragmentation.
Modulation of the GLP pathway using the dipeptidylpeptidase-IV inhibitor MK626 attenuates aneurysm in a BAPN/AT2 induced murine model.
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