scholarly article | Q13442814 |
P50 | author | Robert L Raffai | Q93026509 |
Nikit Kumar | Q57023647 | ||
Delphine Eberlé | Q57023665 | ||
P2093 | author name string | Nathalie Gaudreault | |
Victor R Olivas | |||
Kyle Stephens | |||
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Introduction of human apolipoprotein E4 "domain interaction" into mouse apolipoprotein E | Q28508278 | ||
HDL promotes rapid atherosclerosis regression in mice and alters inflammatory properties of plaque monocyte-derived cells | Q33868782 | ||
Inflammatory markers are increased in youth with type 1 diabetes: the SEARCH Case-Control study | Q33984906 | ||
Diabetes adversely affects macrophages during atherosclerotic plaque regression in mice | Q35043471 | ||
Type 2 diabetes is associated with reduced ATP-binding cassette transporter A1 gene expression, protein and function | Q35131581 | ||
Cardiovascular disease in diabetes: where does glucose fit in? | Q35137148 | ||
Stage-specific remodeling of atherosclerotic lesions upon cholesterol lowering in LDL receptor knockout mice | Q35167972 | ||
Apolipoprotein E4 domain interaction accelerates diet-induced atherosclerosis in hypomorphic Arg-61 apoe mice. | Q35941643 | ||
Prospects for atherosclerosis regression through increase in high-density lipoprotein and other emerging therapeutic targets | Q36383197 | ||
Diabetic vascular disease: an experimental objective | Q36500921 | ||
Evidence of regression of atherosclerosis in primates and man | Q36811511 | ||
Type 1 diabetes promotes disruption of advanced atherosclerotic lesions in LDL receptor-deficient mice. | Q36883079 | ||
Rapid regression of atherosclerosis: insights from the clinical and experimental literature | Q37068628 | ||
Proteoglycan mediated lipoprotein retention: a mechanism of diabetic atherosclerosis | Q37201521 | ||
Delayed catabolism of apoB-48 lipoproteins due to decreased heparan sulfate proteoglycan production in diabetic mice | Q37202057 | ||
Coordination of inflammation and metabolism by PPAR and LXR nuclear receptors | Q37265280 | ||
Emigration of monocyte-derived cells from atherosclerotic lesions characterizes regressive, but not progressive, plaques | Q37416056 | ||
Diabetes and diabetes-associated lipid abnormalities have distinct effects on initiation and progression of atherosclerotic lesions | Q37486465 | ||
Statin effects on both low-density lipoproteins and high-density lipoproteins: is there a dual benefit? | Q37738353 | ||
Diabetic dyslipidemia: extending the target beyond LDL cholesterol | Q37757979 | ||
Atherosclerotic plaque regression: fact or fiction? | Q37765188 | ||
Recent advances in the treatment of atherogenic dyslipidemia in type 2 diabetes mellitus | Q37892300 | ||
Implementing cardiovascular risk reduction in patients with cardiovascular disease and diabetes mellitus | Q37908528 | ||
Glycoxidation and wound healing in diabetes: an interesting relationship | Q37918572 | ||
Current understanding of the role of B cell subsets and intimal and adventitial B cells in atherosclerosis | Q37924540 | ||
High glucose stimulates macrophage SR-BI expression and induces a switch in its activity from cholesterol efflux to cholesterol influx | Q39770227 | ||
Advanced glycation of apolipoprotein A-I impairs its anti-atherogenic properties. | Q40117639 | ||
Regression and stabilization of advanced murine atherosclerotic lesions: a comparison of LDL lowering and HDL raising gene transfer strategies | Q42023940 | ||
High glucose promotes intracellular lipid accumulation in vascular smooth muscle cells by impairing cholesterol influx and efflux balance | Q43223219 | ||
Hypomorphic apolipoprotein E mice: a new model of conditional gene repair to examine apolipoprotein E-mediated metabolism | Q43855742 | ||
Cytokine milieu tends toward inflammation in type 2 diabetes | Q44418874 | ||
Apolipoprotein E promotes the regression of atherosclerosis independently of lowering plasma cholesterol levels | Q45182834 | ||
Effects of cross-link breakers, glycation inhibitors and insulin sensitisers on HDL function and the non-enzymatic glycation of apolipoprotein A-I. | Q46626226 | ||
Decreased lipoprotein clearance is responsible for increased cholesterol in LDL receptor knockout mice with streptozotocin-induced diabetes | Q46696587 | ||
Monocyte-endothelium-smooth muscle cell interaction in co-culture: proliferation and cytokine productions in response to advanced glycation end products. | Q53237612 | ||
Studies of regression of advanced atherosclerosis in experimental animals and man | Q67531404 | ||
Lipid Depletion in Atheromatous Coronary Arteries in Rhesus Monkeys after Regression Diets | Q70372274 | ||
Sequential morphologic studies of regression of advanced atherosclerosis | Q71853347 | ||
Glycosaminoglycans in the human aorta in diabetes mellitus: a study of tunica media from areas with and without atherosclerotic plaque | Q72401496 | ||
Glycation of plasma low density lipoproteins increases interaction with arterial proteoglycans | Q73225117 | ||
Lipoprotein retention--and clues for atheroma regression | Q80963579 | ||
Distribution profiles of membrane Type-1 matrix metalloproteinase (MT1-MMP), matrix metalloproteinase-2 (MMP-2) and cyclooxygenase-2 (COX-2) in rabbit atherosclerosis: comparison with plaque instability analysis | Q81163866 | ||
Effect of MMP-2 deficiency on atherosclerotic lesion formation in apoE-deficient mice | Q82928035 | ||
P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | atherosclerosis | Q12252367 |
hyperglycemia | Q271993 | ||
P304 | page(s) | 1981-1992 | |
P577 | publication date | 2013-10-08 | |
P1433 | published in | The American Journal of Pathology | Q4744259 |
P1476 | title | Hyperglycemia impairs atherosclerosis regression in mice | |
P478 | volume | 183 |
Q46076928 | An intracellular matrix metalloproteinase-2 isoform induces tubular regulated necrosis: implications for acute kidney injury. |
Q90367399 | Apolipoprotein AI) Promotes Atherosclerosis Regression in Diabetic Mice by Suppressing Myelopoiesis and Plaque Inflammation |
Q35653968 | Effects of High Fat Feeding and Diabetes on Regression of Atherosclerosis Induced by Low-Density Lipoprotein Receptor Gene Therapy in LDL Receptor-Deficient Mice |
Q56971664 | Human Aldose Reductase Expression Prevents Atherosclerosis Regression in Diabetic Mice |
Q64234116 | Large-scale gene analysis of rabbit atherosclerosis to discover new biomarkers for coronary artery disease |
Q90458197 | Neutrophil extracellular traps promote macrophage inflammation and impair atherosclerosis resolution in diabetic mice |
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