scholarly article | Q13442814 |
P50 | author | Manuel Mayr | Q37371734 |
P2093 | author name string | Q Xu | |
C Li | |||
Y Hu | |||
H Dietrich | |||
Y Zou | |||
B Metzler | |||
U Huemer | |||
P2860 | cites work | LDL stimulates mitogen-activated protein kinase phosphatase-1 expression, independent of LDL receptors, in vascular smooth muscle cells | Q28579468 |
Spontaneous hypercholesterolemia and arterial lesions in mice lacking apolipoprotein E | Q29615236 | ||
Mouse model of venous bypass graft arteriosclerosis | Q35753478 | ||
Intimal hyperplasia in autogenous vein grafts used for arterial bypass: a canine model | Q36487729 | ||
Acute hypertension activates mitogen-activated protein kinases in arterial wall | Q37350587 | ||
Syndromes of accelerated atherosclerosis: role of vascular injury and smooth muscle cell proliferation | Q37926154 | ||
The integrity of experimental vein graft endothelium--implications on the etiology of early graft failure | Q38565640 | ||
Co-expression of ICAM-1, VCAM-1, ELAM-1 and Hsp60 in human arterial and venous endothelial cells in response to cytokines and oxidized low-density lipoproteins | Q40425415 | ||
Relation of saphenous vein graft obstruction to serum cholesterol levels | Q40554784 | ||
Aortocoronary saphenous vein graft disease: pathogenesis, predisposition, and prevention | Q41729196 | ||
Promotion of lymphocyte growth by high density lipoproteins (HDL). Physiological significance of the HDL binding site | Q42006083 | ||
Increased sensitivity of human vascular smooth muscle cells from atherosclerotic plaques to p53-mediated apoptosis | Q42444922 | ||
Foam cell replication and smooth muscle cell apoptosis in human saphenous vein grafts. | Q42488496 | ||
S19 ribosomal protein cross-linked dimer causes monocyte-predominant infiltration by means of molecular mimicry to complement C5a. | Q42689499 | ||
Lipid utilization by human lymphocytes is correlated with high-density-lipoprotein binding site activity | Q42798168 | ||
Atherosclerosis in rabbit vein grafts | Q43876879 | ||
A monocyte chemotactic factor, S19 ribosomal protein dimer, in phagocytic clearance of apoptotic cells. | Q48032035 | ||
Apoptosis: molecular aspects of cell death and disease. | Q53570934 | ||
Coronary artery bypass grafting in familial hypercholesterolemia. | Q54180620 | ||
Apoptosis of vascular smooth muscle cells in atherosclerosis | Q63915369 | ||
Microsomal lipid peroxidation | Q67358293 | ||
Immunocytochemical investigation of atherosclerotic changes observed in aortocoronary bypass vein grafts using monoclonal antibodies | Q68091844 | ||
Immunology of atherosclerosis: cellular composition and major histocompatibility complex class II antigen expression in aortic intima, fatty streaks, and atherosclerotic plaques in young and aged human specimens | Q68536433 | ||
Histologic, morphometric, and biochemical evolution of vein bypass grafts in a nonhuman primate model. I. Sequential changes within the first three months | Q68690912 | ||
Distention promotes platelet and leukocyte adhesion and reduces short-term patency in pig arteriovenous bypass grafts | Q68718453 | ||
Regional accumulations of T cells, macrophages, and smooth muscle cells in the human atherosclerotic plaque | Q69990504 | ||
The relation of risk factors to the development of atherosclerosis in saphenous-vein bypass grafts and the progression of disease in the native circulation. A study 10 years after aortocoronary bypass surgery | Q70227394 | ||
The influence of nifedipine on microvascular vein graft intimal thickening | Q72781850 | ||
Pathobiology of intimal hyperplasia | Q72787481 | ||
Hypercholesterolemia and experimental vein grafts: accelerated development of intimal hyperplasia and an increase in abnormal vasomotor function | Q72902761 | ||
Immunocytochemical determination of cell type and proliferation rate in human vein graft stenoses | Q73025860 | ||
Biomechanical stress-induced apoptosis in vein grafts involves p38 mitogen-activated protein kinases | Q73413683 | ||
Mouse model of transplant arteriosclerosis: role of intercellular adhesion molecule-1 | Q73435132 | ||
Reduced neointima hyperplasia of vein bypass grafts in intercellular adhesion molecule-1-deficient mice | Q73505432 | ||
Activation of mitogen-activated protein kinases (ERK/JNK) and AP-1 transcription factor in rat carotid arteries after balloon injury | Q73965833 | ||
Cooperative interactions between RB and p53 regulate cell proliferation, cell senescence, and apoptosis in human vascular smooth muscle cells from atherosclerotic plaques | Q74452665 | ||
Activation of PDGF receptor alpha in vascular smooth muscle cells by mechanical stress | Q77299416 | ||
Signal transduction in arteriosclerosis: mechanical stress-activated MAP kinases in vascular smooth muscle cells (review) | Q77678960 | ||
Is aggressive cholesterol control justified? Review of the post-coronary artery bypass graft trial | Q77709255 | ||
Early morphology of accelerated vein graft atheroma in experimental vein grafts | Q77978430 | ||
Inhibition of neointima hyperplasia of mouse vein grafts by locally applied suramin | Q78162548 | ||
Cyclic strain stress-induced mitogen-activated protein kinase (MAPK) phosphatase 1 expression in vascular smooth muscle cells is regulated by Ras/Rac-MAPK pathways | Q78177296 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 659-669 | |
P577 | publication date | 2000-08-01 | |
P1433 | published in | The American Journal of Pathology | Q4744259 |
P1476 | title | Rapid development of vein graft atheroma in ApoE-deficient mice | |
P478 | volume | 157 |
Q24568215 | Abundant progenitor cells in the adventitia contribute to atherosclerosis of vein grafts in ApoE-deficient mice |
Q36661497 | Accelerated intimal hyperplasia in aortocoronary internal mammary vein grafts in minipigs |
Q38218391 | Animal models of atherosclerosis and magnetic resonance imaging for monitoring plaque progression |
Q24657323 | Apelin signaling antagonizes Ang II effects in mouse models of atherosclerosis |
Q33280147 | ApoE gene deficiency enhances the reduction of bone formation induced by a high-fat diet through the stimulation of p53-mediated apoptosis in osteoblastic cells |
Q35088632 | Atherosclerosis as a paradigmatic disease of the elderly: role of the immune system |
Q79086919 | Circulating Progenitor Cells Regenerate Endothelium of Vein Graft Atherosclerosis, Which Is Diminished in ApoE-Deficient Mice |
Q36029229 | Defining smooth muscle cells and smooth muscle injury |
Q30499404 | Early adaptive responses of the vascular wall during venous arterialization in mice |
Q36168899 | Exacerbated vein graft arteriosclerosis in protein kinase Cdelta-null mice |
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Q35087837 | Gene therapy for all aspects of vein-graft disease |
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Q50894849 | Histopathologic insight into saphenous vein bypass graft disease. |
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Q37231481 | Pathophysiology of aortocoronary saphenous vein bypass graft disease |
Q34447966 | Plaque rupture complications in murine atherosclerotic vein grafts can be prevented by TIMP-1 overexpression |
Q51335172 | Role of nifedipine and hydrochlorothiazide in MAPK activation and vascular smooth muscle cell proliferation and apoptosis. |
Q34280178 | Smooth muscle cell apoptosis in arteriosclerosis |
Q42315498 | Tetrahydrobiopterin determines vascular remodeling through enhanced endothelial cell survival and regeneration |
Q36381967 | The impact of progenitor cells in atherosclerosis |
Q38293492 | Therapeutic potential of HDL in cardioprotection and tissue repair |
Q54643609 | Topical HDL administration reduces vein graft atherosclerosis in apo E deficient mice |
Q34934966 | Understanding and treating vein graft atherosclerosis |
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