[Endothelial cell senescence in human atherosclerosis: role of telomeres in endothelial dysfunction]. 2003

Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
Department of Cardiovascular Science and Medicine, Chiba University Graduate School of Medicine, Chiba.

BACKGROUND The functional changes associated with cellular senescence may be involved in human aging and age-related vascular disorders. We have shown the important role of telomeres and telomerase in vascular cell senescence in vitro. Progressive telomere shortening in vivo has been observed in the regions susceptible to atherosclerosis, implicating its contributions to atherogenesis. However, whether senescent vascular cells are present in the vascularture and contribute to the pathogenesis of atherosclerosis remains unclear. RESULTS Senescence-associated beta-galactosidase (beta-gal) activity was examined in the coronary arteries and the internal mammary arteries retrieved from autopsied individuals who had ischemic heart diseases. Strong beta-gal staining was observed in atherosclerotic lesions of the coronary arteries but not in the internal mammary arteries. An immunohistochemical analysis using anti-factor VIII antibody demonstrated that beta-gal stained cells are vascular endothelial cells. To determine whether endothelial cell senescence causes endothelial dysfunction, we induced senescence in human aortic endothelial cells (HAECs) by inhibiting telomere function and examined the expression of intercellular adhesion molecule (ICAM)-1 and endothelial nitric oxide synthase (NOS) activity. Senescent HAECs exhibited increased ICAM-1 expression and decreased eNOS activity, both of which are alterations implicated in atherogenesis. In contrast, introduction of telomerase catalytic component significantly extended the life span and inhibited the functional alterations associated with senescence in HAECs. CONCLUSIONS Vascular endothelial cells with senescence-associated phenotypes are present in human atherosclerotic lesions, and endothelial cell senescence induced by telomere shortening may contribute to atherogenesis.

UI MeSH Term Description Entries
D004730 Endothelium, Vascular Single pavement layer of cells which line the luminal surface of the entire vascular system and regulate the transport of macromolecules and blood components. Capillary Endothelium,Vascular Endothelium,Capillary Endotheliums,Endothelium, Capillary,Endotheliums, Capillary,Endotheliums, Vascular,Vascular Endotheliums
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000375 Aging The gradual irreversible changes in structure and function of an organism that occur as a result of the passage of time. Senescence,Aging, Biological,Biological Aging
D001161 Arteriosclerosis Thickening and loss of elasticity of the walls of ARTERIES of all sizes. There are many forms classified by the types of lesions and arteries involved, such as ATHEROSCLEROSIS with fatty lesions in the ARTERIAL INTIMA of medium and large muscular arteries. Arterioscleroses
D001616 beta-Galactosidase A group of enzymes that catalyzes the hydrolysis of terminal, non-reducing beta-D-galactose residues in beta-galactosides. Deficiency of beta-Galactosidase A1 may cause GANGLIOSIDOSIS, GM1. Lactases,Dairyaid,Lactaid,Lactogest,Lactrase,beta-D-Galactosidase,beta-Galactosidase A1,beta-Galactosidase A2,beta-Galactosidase A3,beta-Galactosidases,lac Z Protein,Protein, lac Z,beta D Galactosidase,beta Galactosidase,beta Galactosidase A1,beta Galactosidase A2,beta Galactosidase A3,beta Galactosidases
D016615 Telomere A terminal section of a chromosome which has a specialized structure and which is involved in chromosomal replication and stability. Its length is believed to be a few hundred base pairs. Telomeres
D016922 Cellular Senescence Process by which cells irreversibly stop dividing and enter a state of permanent growth arrest without undergoing CELL DEATH. Senescence can be induced by DNA DAMAGE or other cellular stresses, such as OXIDATIVE STRESS. Aging, Cell,Cell Aging,Cell Senescence,Replicative Senescence,Senescence, Cellular,Senescence, Replicative,Cell Ageing,Cellular Ageing,Cellular Aging,Ageing, Cell,Ageing, Cellular,Aging, Cellular,Senescence, Cell
D018799 Intercellular Adhesion Molecule-1 A cell-surface ligand involved in leukocyte adhesion and inflammation. Its production is induced by gamma-interferon and it is required for neutrophil migration into inflamed tissue. Antigens, CD54,CD54 Antigens,ICAM-1,CD54 Antigen,Antigen, CD54,Intercellular Adhesion Molecule 1
D019001 Nitric Oxide Synthase An NADPH-dependent enzyme that catalyzes the conversion of L-ARGININE and OXYGEN to produce CITRULLINE and NITRIC OXIDE. NO Synthase,Nitric-Oxide Synthase,Nitric-Oxide Synthetase,Nitric Oxide Synthetase,Oxide Synthase, Nitric,Synthase, Nitric Oxide
D019098 Telomerase An essential ribonucleoprotein reverse transcriptase that adds telomeric DNA to the ends of eukaryotic CHROMOSOMES. Telomerase Catalytic Subunit,Telomerase Reverse Transcriptase,Telomerase Reverse Transcriptase Catalytic Subunit,Catalytic Subunit, Telomerase,Reverse Transcriptase, Telomerase,Subunit, Telomerase Catalytic,Transcriptase, Telomerase Reverse

Related Publications

Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
January 2011, Nihon Ronen Igakkai zasshi. Japanese journal of geriatrics,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
June 2004, Circulation,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
August 2012, Cell and tissue research,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
July 2022, European heart journal open,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
September 2020, Cells,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
January 2008, Frontiers in bioscience : a journal and virtual library,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
October 2002, Current opinion in lipidology,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
July 2011, Hypertension (Dallas, Tex. : 1979),
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
July 2019, Biochimica et biophysica acta. Molecular basis of disease,
Tohru Minamino, and Hideyuki Miyauchi, and Toshihiko Yoshida, and Issei Komuro
October 2007, Current opinion in endocrinology, diabetes, and obesity,
Copied contents to your clipboard!