[1]中国心血管健康与疾病报告编写组.中国心血管健康与疾病报告2020概要[J]. 中国循环杂志, 2021, 36: 521-545. [2]JOAKIMSEN O, BONAA KH, STENSLAND-BUGGE E, et al. Age and sex differences in the distribution and ultrasound morphology of carotid atherosclerosis: the Tromsø Study[J]. Arterioscler Thromb Vasc Biol, 1999, 19: 3007-3013. [3]IURCIUC S, CIMPEAN AM, MITU F, et al. Vascular aging and subclinical atherosclerosis: why such a “never ending” and challenging story in cardiology?[J]. Clin Interv Aging, 2017, 12: 1339-1345. [4]FRISMANTIENE A, PHILIPPOVA M, ERNE P, et al. Smooth muscle cell-driven vascular diseases and molecular mechanisms of VSMC plasticity[J]. Cell Signal, 2018, 52: 48-64. [5]LAKATTA EG, LEVY D. Arterial and cardiac aging: major shareholders in cardiovascular disease enterprises: Part I: aging arteries: a “set up” for vascular disease[J]. Circulation, 2003, 107: 139-146. [6]SALONEN JT, SALONEN R. Ultrasound B-mode imaging in observational studies of atherosclerotic progression[J]. Circulation, 1993, 87: 1156-1165. [7]KARIKKINETH AC, ALGHATRIF M, OBERDIER MT, et al. Sex differences in longitudinal determinants of carotid intima medial thickening with aging in a com-munity-dwelling population: the Baltimore longitudinal study on aging[J]. J Am Heart Assoc, 2020, 9: e015396.doi: 10.1161/JAHA.119.015396. [8]TAKEMURA A, IIJIMA K, OUCHI Y. Molecular mechanism of vascular aging: impact of vascular smooth muscle cell calcification via cellular senescence[J]. Clin Calcium, 2010, 20: 1646-1655. [9]VLACHOPOULOS C, AZNAOURIDIS K, STEFANADIS C. Prediction of cardiovascular events and all-cause mortality with arterial stiffness: a systematic review and meta-analysis[J]. J Am Coll Cardiol, 2010, 55: 1318-1327. [10]FRITZE O, ROMERO B, SCHLEICHER M, et al. Age-related changes in the elastic tissue of the human aorta[J]. J Vasc Res, 2012, 49: 77-86. [11]SEDAGHAT S, VAN SLOTEN TT, LAURENT S, et al. Common carotid artery diameter and risk of cardiovascular events and mortality: pooled analyses of four cohort studies[J]. Hypertension, 2018, 72: 85-92. [12]VANHOUTTE PM, MOMBOULI JV. Vascular endothelium: vasoactive mediators[J]. Progress in cardiovascular diseases, 1996, 39: 229-238. [13]MINAMINO T, MIYAUCHI H, YOSHIDA T, et al. Endothelial cell senescence in human atherosclerosis: role of telomere in endothelial dysfunction[J]. Circulation, 2002, 105: 1541-1544. [14]QIAN J, FULTON D. Post-translational regulation of endothelial nitric oxide synthase in vascular endothelium[J]. Front Physiol, 2013, 4: 347.doi: 10.3389/fphys.2013.00347. [15]BHANDARI SS, DAVIES JE, STRUCK J, et al. Plasma C-terminal proEndothelin-1 (CTproET-1) is affected by age, renal function, left atrial size and diastolic blood pressure in healthy subjects[J]. Peptides, 2014, 52: 53-57. [16]DONATO AJ, GANO LB, ESKURZA I, et al. Vascular endothelial dysfunction with aging: endothelin-1 and endothelial nitric oxide synthase[J]. Am J Physiol Heart Circ Physiol, 2009, 297: H425-432. [17]JANKOWICH MD, WU WC, CHOUDHARY G. Association of elevated plasma endothelin-1 levels with pulmonary hypertension, mortality, and heart failure in African American individuals: The Jackson Heart Study[J]. JAMA Cardiol, 2016, 1: 461-469. [18]O'DONNELL CJ, DEMISSIE S, KIMURA M, et al. Leukocyte telomere length and carotid artery intimal medial thickness: the Framingham Heart Study[J]. Arterioscler Thromb Vasc Biol, 2008, 28: 1165-1171. [19]ZHANG W, CHEN Y, WANG Y, et al. Short telomere length in blood leucocytes contributes to the presence of atherothrombotic stroke and haemorrhagic stroke and risk of post-stroke death[J]. Clin Sci (Lond), 2013, 125: 27-36. [20]AVIV A. Genetics of leukocyte telomere length and its role in atherosclerosis[J]. Mutat Res, 2012, 730: 68-74. [21]VASILEIOU PVS, EVANGELOU K, VLASIS K, et al. Mitochondrial homeostasis and cellular senescence[J]. Cells, 2019, 8: 686. doi: 10.3390/cells8070686. [22]FOOTE K, REINHOLD J, YU EPK, et al. Restoring mitochondrial DNA copy number preserves mitochondrial function and delays vascular aging in mice[J]. Aging Cell, 2018, 17: e12773.doi: 10.1111/acel.12773. [23]YU EPK, REINHOLD J, YU H, et al. Mitochondrial respiration is reduced in atherosclerosis, promoting necrotic core formation and reducing relative fibrous cap thickness[J]. Arterioscler Thromb Vasc Biol, 2017, 37: 2322-2332. [24]DI MICCO R, KRIZHANOVSKY V, BAKER D, et al. Cellular senescence in ageing: from mechanisms to therapeutic opportunities[J]. Nat Rev Mol Cell Biol, 2021, 22: 75-95. [25]COPPé JP, PATIL CK, RODIER F, et al. A human-like senescence-associated secretory phenotype is conserved in mouse cells dependent on physiological oxygen[J]. PLoS One, 2010, 5: e9188.doi: 10.1371/journal.pone.0009188. [26]WOLF D, LEY K. Immunity and Inflammation in Atherosclerosis[J]. Circ Res, 2019, 124: 315-327. [27]SONG Y, SHEN H, SCHENTEN D, et al. Aging enhances the basal production of IL-6 and CCL2 in vascular smooth muscle cells[J]. Arterioscler Thromb Vasc Biol, 2012, 32: 103-109. [28]MADAN M, BISHAYI B, HOGE M, et al. Atheroprotective role of interleukin-6 in diet- and/or pathogen-associated atherosclerosis using an ApoE heterozygote murine model[J]. Atherosclerosis, 2008, 197: 504-514. [29]FERRANTE G, CONDORELLI G. Interleukin-6 trans-signalling and risk of future cardiovascular events: a new avenue for atheroprotection?[J]. Cardiovasc Res, 2019, 115: 8-9. [30]ASHOR AW, LARA J, SIERVO M, et al. Exercise modalities and endothelial function: a systematic review and dose-response meta-analysis of randomized controlled trials[J]. Sports Med, 2015, 45: 279-296. [31]GREEN DJ, SMITH KJ. Effects of exercise on vascular function, structure, and health in humans[J]. Cold Spring Harb Perspect Med, 2018, 8: a029819. doi:10.1101/cshperspect.a029819. [32]DURRANT JR, SEALS DR, CONNELL ML, et al. Voluntary wheel running restores endothelial function in conduit arteries of old mice: direct evidence for reduced oxidative stress, increased superoxide dismutase activity and down-regulation of NADPH oxidase[J]. J Physiol, 2009, 587: 3271-3285. [32]LAROCCA TJ, MARTENS CR, SEALS DR. Nutrition and other lifestyle influences on arterial aging[J]. Ageing Res Rev, 2017, 39: 106-119. [33]GROOTAERT MOJ, FINIGAN A, FIGG NL, et al. SIRT6 protects smooth muscle cells from senescence and reduces atherosclerosis[J]. Circ Res, 2021, 128: 474-491. [34]HICKSON LJ, LANGHI PRATA LGP, BOBART SA, et al. Senolytics decrease senescent cells in humans: Preliminary report from a clinical trial of Dasatinib plus Quercetin in individuals with diabetic kidney disease[J]. E Bio Medicine, 2019, 47: 446-456. |