Adipose tissue depot differences in adipokines and effects on skeletal and cardiac muscle
Tài liệu tham khảo
Kahn, 2019, Altered adipose tissue and adipocyte function in the pathogenesis of metabolic syndrome, J Clin Invest, 129, 3990, 10.1172/JCI129187
Rodríguez, 2017, Crosstalk between adipokines and myokines in fat browning, Acta Physiol, 219, 362, 10.1111/apha.12686
Deshmukh, 2019, Proteomics-based comparative mapping of the secretomes of human brown and white adipocytes reveals EPDR1 as a novel batokine, Cell Metab, 30, 963, 10.1016/j.cmet.2019.10.001
Villarroya, 2017, Brown adipose tissue as a secretory organ, Nat Rev Endocrinol, 13, 26, 10.1038/nrendo.2016.136
Castaño, 2018, Obesity-associated exosomal miRNAs modulate glucose and lipid metabolism in mice, Proc Natl Acad Sci U S A, 115, 12158, 10.1073/pnas.1808855115
Hernández-Saavedra, 2019, The regulation of lipokines by environmental factors, Nutrients, 11, E2422, 10.3390/nu11102422
Lee, 2019, Adipose tissue-derived signatures for obesity and type 2 diabetes: adipokines, batokines and microRNAs, J Clin Med, 8, E854, 10.3390/jcm8060854
Cinti, 2019, Anatomy and physiology of the nutritional system, Mol Aspects Med, 68, 101, 10.1016/j.mam.2019.04.001
Gómez-Ambrosi, 2018, Clinical usefulness of abdominal bioimpedance (ViScan) in the determination of visceral fat and its application in the diagnosis and management of obesity and its comorbidities, Clin Nutr, 37, 580, 10.1016/j.clnu.2017.01.010
Lee, 2018, Visceral and intrahepatic fat are associated with cardiometabolic risk factors above other ectopic fat depots: the Framingham Heart Study, Am J Med, 131, 684, 10.1016/j.amjmed.2018.02.002
Tanaka, 2019, Impact of abdominal fat distribution, visceral fat, and subcutaneous fat on coronary plaque scores assessed by 320-row computed tomography coronary angiography, Atherosclerosis, 287, 155, 10.1016/j.atherosclerosis.2019.06.910
Lidell, 2013, Evidence for two types of brown adipose tissue in humans, Nat Med, 19, 631, 10.1038/nm.3017
Koskensalo, 2017, Human brown adipose tissue temperature and fat fraction are related to its metabolic activity, J Clin Endocrinol Metab, 102, 1200, 10.1210/jc.2016-3086
Sarasniemi, 2018, Skin temperature may not yield human brown adipose tissue activity in diverse populations, Acta Physiol, 224, 10.1111/apha.13095
Li, 2017, Brown adipocytes can display a mammary basal myoepithelial cell phenotype in vivo, Mol Metab, 6, 1198, 10.1016/j.molmet.2017.07.015
Giordano, 2017, Mammary alveolar epithelial cells convert to brown adipocytes in post-lactating mice, J Cell Physiol, 232, 2923, 10.1002/jcp.25858
Muruzábal, 2002, Immunocytochemical detection of leptin in non-mammalian vertebrate stomach, Gen Comp Endocrinol, 128, 149, 10.1016/S0016-6480(02)00072-2
Stern, 2016, Adiponectin, leptin, and fatty acids in the maintenance of metabolic homeostasis through adipose tissue crosstalk, Cell Metab, 23, 770, 10.1016/j.cmet.2016.04.011
Becerril, 2019, Functional relationship between leptin and nitric oxide in metabolism, Nutrients, 11, E2129, 10.3390/nu11092129
Krause, 2019, Adiponectin-consideration for its role in skeletal muscle health, Int J Mol Sci, 20, E1528, 10.3390/ijms20071528
Rodríguez, 2015, Leptin administration activates irisin-induced myogenesis via nitric oxide-dependent mechanisms, but reduces its effect on subcutaneous fat browning in mice, Int J Obes, 39, 397, 10.1038/ijo.2014.166
Bal, 2017, Mild cold induced thermogenesis: are BAT and skeletal muscle synergistic partners?, Biosci Rep, 37, 10.1042/BSR20171087
Lynes, 2017, The cold-induced lipokine 12,13-diHOME promotes fatty acid transport into brown adipose tissue, Nat Med, 23, 631, 10.1038/nm.4297
Cao, 2008, Identification of a lipokine, a lipid hormone linking adipose tissue to systemic metabolism, Cell, 134, 933, 10.1016/j.cell.2008.07.048
Foryst-Ludwig, 2015, Adipose tissue lipolysis promotes exercise-induced cardiac hypertrophy involving the lipokine C16:1n7-palmitoleate, J Biol Chem, 290, 23603, 10.1074/jbc.M115.645341
Stanford, 2018, 12,13-diHOME: an exercise-induced lipokine that increases skeletal muscle fatty acid uptake, Cell Metab, 27, 1111, 10.1016/j.cmet.2018.03.020
Camino, 2020, Vesicles shed by pathological murine adipocytes spread pathology: characterization and functional role of insulin resistant/hypertrophied adiposomes, Int J Mol Sci, 21, 2252, 10.3390/ijms21062252
Thomou, 2017, Adipose-derived circulating miRNAs regulate gene expression in other tissues, Nature, 542, 450, 10.1038/nature21365
Shah, 2017, Extracellular RNAs are associated with insulin resistance and metabolic phenotypes, Diabetes Care, 40, 546, 10.2337/dc16-1354
Yu, 2018, Adipocyte-derived exosomal miR-27a induces insulin resistance in skeletal muscle through repression of PPARγ, Theranostics, 8, 2171, 10.7150/thno.22565
Ying, 2017, Adipose tissue macrophage-derived exosomal miRNAs can modulate in vivo and in vitro insulin sensitivity, Cell, 171, 372, 10.1016/j.cell.2017.08.035
Wang, 2013, Circulating miR-130b mediates metabolic crosstalk between fat and muscle in overweight/obesity, Diabetologia, 56, 2275, 10.1007/s00125-013-2996-8
Fang, 2016, Adipocyte-specific loss of PPARγ attenuates cardiac hypertrophy, JCI Insight, 1, 10.1172/jci.insight.89908
Liu, 2019, Exosomal miR-320d derived from adipose tissue-derived MSCs inhibits apoptosis in cardiomyocytes with atrial fibrillation (AF), Artif Cells Nanomed Biotechnol, 47, 3976, 10.1080/21691401.2019.1671432
Heinonen, 2014, Adipocyte morphology and implications for metabolic derangements in acquired obesity, Int J Obes, 38, 1423, 10.1038/ijo.2014.31
Camarena, 2017, Novel atherogenic pathways from the differential transcriptome analysis of diabetic epicardial adipose tissue, Nutr Metab Cardiovasc Dis, 27, 739, 10.1016/j.numecd.2017.05.010
Toczylowski, 2019, Plasma concentration and expression of adipokines in epicardial and subcutaneous adipose tissue are associated with impaired left ventricular filling pattern, J Transl Med, 17, 310, 10.1186/s12967-019-2060-7
Hubal, 2017, Circulating adipocyte-derived exosomal MicroRNAs associated with decreased insulin resistance after gastric bypass, Obesity, 25, 102, 10.1002/oby.21709
Lesna, 2017, Human adipose tissue accumulation is associated with pro-inflammatory changes in subcutaneous rather than visceral adipose tissue, Nutr Diabetes, 7, e264, 10.1038/nutd.2017.15
Torre-Villalvazo, 2018, Adiponectin synthesis and secretion by subcutaneous adipose tissue is impaired during obesity by endoplasmic reticulum stress, J Cell Biochem, 119, 5970, 10.1002/jcb.26794
Becerril, 2018, Targeted disruption of the iNOS gene improves adipose tissue inflammation and fibrosis in leptin-deficient ob/ob mice: role of tenascin C, Int J Obes, 42, 1458, 10.1038/s41366-018-0005-5
Frühbeck, 2018, Adiponectin-leptin ratio: a promising index to estimate adipose tissue dysfunction. Relation with obesity-associated cardiometabolic risk, Adipocyte, 7, 57, 10.1080/21623945.2017.1402151
Alcalá, 2017, Increased inflammation, oxidative stress and mitochondrial respiration in brown adipose tissue from obese mice, Sci Rep, 7, 16082, 10.1038/s41598-017-16463-6
Rebiger, 2016, Susceptibility of brown adipocytes to pro-inflammatory cytokine toxicity and reactive oxygen species, Biosci Rep, 36, 10.1042/BSR20150193
Gómez-Ambrosi, 2017, FGF19 and FGF21 serum concentrations in human obesity and type 2 diabetes behave differently after diet- or surgically-induced weight loss, Clin Nutr, 36, 861, 10.1016/j.clnu.2016.04.027
Lehnig, 2019, Exercise training induces depot-specific adaptations to white and brown adipose tissue, iScience, 11, 425, 10.1016/j.isci.2018.12.033
Rocha-Rodrigues, 2017, Impact of physical exercise on visceral adipose tissue fatty acid profile and inflammation in response to a high-fat diet regimen, Int J Biochem Cell Biol, 87, 114, 10.1016/j.biocel.2017.04.008
Rocha-Rodrigues, 2017, Physical exercise remodels visceral adipose tissue and mitochondrial lipid metabolism in rats fed a high-fat diet, Clin Exp Pharmacol Physiol, 44, 386, 10.1111/1440-1681.12706
Stanford, 2015, Exercise effects on white adipose tissue: beiging and metabolic adaptations, Diabetes, 64, 2361, 10.2337/db15-0227
Boström, 2012, A PGC1-α-dependent myokine that drives brown-fat-like development of white fat and thermogenesis, Nature, 481, 463, 10.1038/nature10777
May, 2017, Lipidomic adaptations in white and brown adipose tissue in response to exercise demonstrate molecular species-specific remodeling, Cell Rep, 18, 1558, 10.1016/j.celrep.2017.01.038
Gibala, 2017, Sprinting toward fitness, Cell Metab, 25, 988, 10.1016/j.cmet.2017.04.030