The microbiota has been linked to the development of atherosclerosis, but the functional impact of these resident bacteria on the lesion size and cellular composition of atherosclerotic plaques in the aorta has never been experimentally addressed with the germ-free low-density lipoprotein receptor-deficient (Ldlr(-/-)) mouse atherosclerosis model. Here, we report that 16 weeks of high-fat diet (HFD) feeding of hypercholesterolemicLdlr(-/-)mice at germ-free (GF) housing conditions did not impact relative aortic root plaque size, macrophage content, and necrotic core area. Likewise, we did not find changes in the relative aortic arch lesion size. However, late atherosclerotic GFLdlr(-/-)mice had altered inflammatory plasma protein markers and...
<p>Atherosclerotic plaques were studied in LDLR<sup>−/−</sup>p110γ<sup>+/−</sup> (female, <i>n</i> =...
<p>A. Plaque area was measured in sections from the aortic root (see <a href="http://www.plosone.org...
<p><b>A and B:</b> SGEF<sup>+/+</sup>ApoE<sup>−/−</sup> and SGEF<sup>−/−</sup>ApoE<sup>−/−</sup> mic...
The microbiota has been linked to the development of atherosclerosis, but the functional impact of t...
Atherosclerotic plaque development depends on chronic inflammation of the arterial wall. A dysbiotic...
<p><b>A</b> therosclerosis-prone mice (males and females) lacking properdin were fed low fat or high...
Murine strains susceptible to atherosclerosis provide valuable models to study factors involved in a...
Objective—A semisynthetic diet with varying amounts of cholesterol was used to achieve hypercholeste...
Aim: In recent years the gut microbiome has been recognized as an important participant in the etiol...
BACKGROUND: Mice deficient in the LDL receptor (Ldlr(-/-) mice) have been widely used as a model to ...
<div><h3>Background</h3><p>Mice deficient in the LDL receptor (<em>Ldlr</em><sup>−/−</sup> mice) hav...
ObjectivesThe purpose of this study was to compare aortic valve function and morphology in adult wil...
<p>Low-density lipoprotein receptor-knockout (LDLr KO) mice were fed a NFD (a), a HFD (b), a HFD wit...
<p>LDLR<sup>−/−</sup> mice (n = 7) were immunized without adjuvant with killed <i>P. gingivalis</i> ...
mice in the setting of secondary prevention mice were fed with high cholesterol diet to induce aort...
<p>Atherosclerotic plaques were studied in LDLR<sup>−/−</sup>p110γ<sup>+/−</sup> (female, <i>n</i> =...
<p>A. Plaque area was measured in sections from the aortic root (see <a href="http://www.plosone.org...
<p><b>A and B:</b> SGEF<sup>+/+</sup>ApoE<sup>−/−</sup> and SGEF<sup>−/−</sup>ApoE<sup>−/−</sup> mic...
The microbiota has been linked to the development of atherosclerosis, but the functional impact of t...
Atherosclerotic plaque development depends on chronic inflammation of the arterial wall. A dysbiotic...
<p><b>A</b> therosclerosis-prone mice (males and females) lacking properdin were fed low fat or high...
Murine strains susceptible to atherosclerosis provide valuable models to study factors involved in a...
Objective—A semisynthetic diet with varying amounts of cholesterol was used to achieve hypercholeste...
Aim: In recent years the gut microbiome has been recognized as an important participant in the etiol...
BACKGROUND: Mice deficient in the LDL receptor (Ldlr(-/-) mice) have been widely used as a model to ...
<div><h3>Background</h3><p>Mice deficient in the LDL receptor (<em>Ldlr</em><sup>−/−</sup> mice) hav...
ObjectivesThe purpose of this study was to compare aortic valve function and morphology in adult wil...
<p>Low-density lipoprotein receptor-knockout (LDLr KO) mice were fed a NFD (a), a HFD (b), a HFD wit...
<p>LDLR<sup>−/−</sup> mice (n = 7) were immunized without adjuvant with killed <i>P. gingivalis</i> ...
mice in the setting of secondary prevention mice were fed with high cholesterol diet to induce aort...
<p>Atherosclerotic plaques were studied in LDLR<sup>−/−</sup>p110γ<sup>+/−</sup> (female, <i>n</i> =...
<p>A. Plaque area was measured in sections from the aortic root (see <a href="http://www.plosone.org...
<p><b>A and B:</b> SGEF<sup>+/+</sup>ApoE<sup>−/−</sup> and SGEF<sup>−/−</sup>ApoE<sup>−/−</sup> mic...