OBJECTIVE: Shorter leukocyte telomeres are associated with atherosclerosis and predict future heart disease. The goal of the present study was to determine whether leukocyte telomere length is related to atherosclerotic plaque telomere length and whether it is associated with plaque characteristics or recurrence of disease. METHODS AND RESULTS: Telomere length was measured by real-time quantitative polymerase chain reaction in atherosclerotic plaques and leukocytes in patients with carotid atherosclerosis undergoing carotid endarterectomy (n=684) and of leukocytes in age- and gender-balanced subjects without clinical atherosclerosis (n=780). Leukocyte telomere length was shorter in patients versus controls (0.99 [interquartile range (IQR): 0.79 to 1.26] versus 1.06 [0.80 to 1.39]; P=0.0007). Plaque telomeres were longer than leukocyte telomeres (1.42 [IQR: 1.21 to 1.77] versus 1.01 [IQR: 0.75 to 1.34]; P<1.00×10(-6)) and independent of age. Leukocyte and plaque telomere length were only weakly correlated (correlation coefficient r2=0.04, P=0.03). Patients, whose plaques showed marked macrophage infiltration and large lipid core, had longer plaque telomeres (1.61 [IQR: 1.32 to 2.04] versus 1.40 [IQR: 1.15 to 1.57]; P=0.006) and shorter leukocyte telomeres (0.88 [IQR: 0.75 to 1.20] versus 1.03 [IQR: 0.83 to 1.34]; P=0.02). Plaque telomere length was associated with restenosis 1 year after endarterectomy (OR 1.58±0.206; P=0.026 per SD decrease of plaque telomere length). CONCLUSIONS: Leukocyte telomere length is associated with the presence of atherosclerotic carotid plaques but is not a proxy for local plaque telomere length. Plaque telomere length is related to plaque characteristics and development of restenosis following endarterectomy.
OBJECTIVE: Shorter leukocyte telomeres are associated with atherosclerosis and predict future heart disease. The goal of the present study was to determine whether leukocyte telomere length is related to atherosclerotic plaque telomere length and whether it is associated with plaque characteristics or recurrence of disease. METHODS AND RESULTS: Telomere length was measured by real-time quantitative polymerase chain reaction in atherosclerotic plaques and leukocytes in patients with carotid atherosclerosis undergoing carotid endarterectomy (n=684) and of leukocytes in age- and gender-balanced subjects without clinical atherosclerosis (n=780). Leukocyte telomere length was shorter in patients versus controls (0.99 [interquartile range (IQR): 0.79 to 1.26] versus 1.06 [0.80 to 1.39]; P=0.0007). Plaque telomeres were longer than leukocyte telomeres (1.42 [IQR: 1.21 to 1.77] versus 1.01 [IQR: 0.75 to 1.34]; P<1.00×10(-6)) and independent of age. Leukocyte and plaque telomere length were only weakly correlated (correlation coefficient r2=0.04, P=0.03). Patients, whose plaques showed marked macrophage infiltration and large lipid core, had longer plaque telomeres (1.61 [IQR: 1.32 to 2.04] versus 1.40 [IQR: 1.15 to 1.57]; P=0.006) and shorter leukocyte telomeres (0.88 [IQR: 0.75 to 1.20] versus 1.03 [IQR: 0.83 to 1.34]; P=0.02). Plaque telomere length was associated with restenosis 1 year after endarterectomy (OR 1.58±0.206; P=0.026 per SD decrease of plaque telomere length). CONCLUSIONS: Leukocyte telomere length is associated with the presence of atherosclerotic carotid plaques but is not a proxy for local plaque telomere length. Plaque telomere length is related to plaque characteristics and development of restenosis following endarterectomy.
Authors: Shiqin Xiong; Nikolay Patrushev; Farshad Forouzandeh; Lula Hilenski; R Wayne Alexander Journal: Cell Rep Date: 2015-08-20 Impact factor: 9.423
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Authors: Michael Gardner; David Bann; Laura Wiley; Rachel Cooper; Rebecca Hardy; Dorothea Nitsch; Carmen Martin-Ruiz; Paul Shiels; Avan Aihie Sayer; Michelangela Barbieri; Sofie Bekaert; Claus Bischoff; Angela Brooks-Wilson; Wei Chen; Cyrus Cooper; Kaare Christensen; Tim De Meyer; Ian Deary; Geoff Der; Ana Diez Roux; Annette Fitzpatrick; Anjum Hajat; Julius Halaschek-Wiener; Sarah Harris; Steven C Hunt; Carol Jagger; Hyo-Sung Jeon; Robert Kaplan; Masayuki Kimura; Peter Lansdorp; Changyong Li; Toyoki Maeda; Massimo Mangino; Tim S Nawrot; Peter Nilsson; Katarina Nordfjall; Giuseppe Paolisso; Fu Ren; Karl Riabowol; Tony Robertson; Goran Roos; Jan A Staessen; Tim Spector; Nelson Tang; Brad Unryn; Pim van der Harst; Jean Woo; Chao Xing; Mohammad E Yadegarfar; Jae Yong Park; Neal Young; Diana Kuh; Thomas von Zglinicki; Yoav Ben-Shlomo Journal: Exp Gerontol Date: 2013-12-21 Impact factor: 4.032