The proposed project concerns two main lines of investigation: (1) continuation of cell biology studies by the investigation especially of the biochemical organization of normal endothelium. The inquiries will include: (a) surface chemistry of microvascular endothelium in special capillary beds such as those of the lung, liver, muscle; possible local modulations of microdomains in arterioles, capillaries and venules will be also surveyed; (b) mapping of surface chemistry and membrane chemistry of endothelium in those vascular segments most frequently affected by atherosclerosis and thrombosis (coronary, cerebral, aorta, endocardium); (c) identification of mechanisms involved in electrostatic sorting and gatting of macromolecules by vascular endothelium; (d) continuation of the work for isolation of a membrane fraction from microvascular endothelium (rabbit myocardium) and arterial endothelium (bovine aorta). (2) Studies of experimental cell pathology by the search for mechanisms by which abnormal conditions can modify the chemistry of endothelial surface, and subsequently its reactivity and permeability, thus facilitating or inducing atherosclerosis and thrombosis. The investigations will include: (a) extension of the survey on the vessels mentioned under (1b) as a function of aging and hypercholesterolemia; (b) survey of the rate of transport of intact or modified LDL across the endothelium of large and small vessels in normal and abnormal conditions; (c) chemistry of platelet surface and membrane (especially endogenous lectins) in relation to platelet interactions with endothelium. The final goal is to identify the biochemical factors and mechanisms which may be involved in the prelesion stage of atherosclerosis and thrombosis.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL026343-09
Application #
3338583
Study Section
Pathology A Study Section (PTHA)
Project Start
1981-01-01
Project End
1990-05-31
Budget Start
1989-06-01
Budget End
1990-05-31
Support Year
9
Fiscal Year
1989
Total Cost
Indirect Cost
Name
Institute of Cellular Biology and Pathol
Department
Type
DUNS #
City
Bucharest
State
Country
Romania
Zip Code
Lupu, F; Moldovan, N; Ryan, J et al. (1993) Intrinsic procoagulant surface induced by hypercholesterolaemia on rabbit aortic endothelium. Blood Coagul Fibrinolysis 4:743-52
Lupu, C; Calb, M; Ionescu, M et al. (1993) Enhanced prothrombin and intrinsic factor X activation on blood platelets from diabetic patients. Thromb Haemost 70:579-83
Dobrian, A; Mora, R; Simionescu, M et al. (1993) In vitro formation of oxidatively-modified and reassembled human low-density lipoproteins: antioxidant effect of albumin. Biochim Biophys Acta 1169:12-24
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Manduteanu, I; Calb, M; Lupu, C et al. (1992) Increased adhesion of human diabetic platelets to cultured valvular endothelial cells. J Submicrosc Cytol Pathol 24:539-47
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Antohe, F; Heltianu, C; Simionescu, M (1991) Albumin-binding proteins of endothelial cells: immunocytochemical detection of the 18 kDa peptide. Eur J Cell Biol 56:34-42
Simionescu, M; Simionescu, N (1991) Endothelial transport of macromolecules: transcytosis and endocytosis. A look from cell biology. Cell Biol Rev 25:5-78
Radu, A; Moldovan, N (1991) 4-Hydroxynonenal reduces junctional communication between endothelial cells in culture. Exp Cell Res 196:121-6
Simionescu, M; Simionescu, N (1991) Endothelial transport of macromolecules: transcytosis and endocytosis. A look from cell biology. Cell Biol Rev 25:1-78

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