Plasma Lipidomic Profile Signature of Hypertension in Mexican American Families: Specific Role of Diacylglycerols
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L. Almasy | J. Blangero | P. Meikle | T. Dyer | J. Curran | Matthew P Johnson | C. Bellis | A. Comuzzie | M. Mahaney | J. Weir | Christopher K. Barlow | H. Kulkarni | M. Mamtani | J. Jowett | D. Rainwater
[1] Matthew R. Weir,et al. In the clinic: hypertension. , 2014, Annals of internal medicine.
[2] Franklin H Zimmerman,et al. Cardiovascular Disease and Risk Factors in Law Enforcement Personnel: A Comprehensive Review , 2012, Cardiology in review.
[3] S. Jee,et al. Linkage of Epidemiologic Evidence With the Clinical Aspects of Metabolic Syndrome , 2012, Korean circulation journal.
[4] Haiqiang Jiang,et al. Application of ultra-performance liquid chromatography coupled with mass spectrometry to metabonomic study on spontaneously hypertensive rats and intervention effects of Ping Gan prescription. , 2012, Journal of separation science.
[5] B. Koletzko,et al. Nonesterified fatty acid determination for functional lipidomics: comprehensive ultrahigh performance liquid chromatography-tandem mass spectrometry quantitation, qualification, and parameter prediction. , 2012, Analytical chemistry.
[6] T. Hankemeier,et al. Lipidomics Reveals Multiple Pathway Effects of a Multi-Components Preparation on Lipid Biochemistry in ApoE*3Leiden.CETP Mice , 2012, PloS one.
[7] S. Nicholls,et al. The emerging role of plasma lipidomics in cardiovascular drug discovery , 2012, Expert opinion on drug discovery.
[8] D. Lawlor,et al. Cardiovascular biomarkers and vascular function during childhood in the offspring of mothers with hypertensive disorders of pregnancy: findings from the Avon Longitudinal Study of Parents and Children , 2011, European heart journal.
[9] R. Ames. The Effects of Antihypertensive Drugs on Serum Lipids and Lipoproteins , 1986, Drugs.
[10] Stefan R Bornstein,et al. Shotgun lipidomics on a LTQ Orbitrap mass spectrometer by successive switching between acquisition polarity modes. , 2012, Journal of mass spectrometry : JMS.
[11] A. McCullough. Epidemiology of the metabolic syndrome in the USA , 2011, Journal of digestive diseases.
[12] Gert B. Eijkel,et al. Hypertension Is Associated with Marked Alterations in Sphingolipid Biology: A Potential Role for Ceramide , 2011, PloS one.
[13] Xianlin Han,et al. Metabolomics in Early Alzheimer's Disease: Identification of Altered Plasma Sphingolipidome Using Shotgun Lipidomics , 2011, PloS one.
[14] P. Meikle,et al. Lipidomics is providing new insight into the metabolic syndrome and its sequelae , 2011, Current opinion in lipidology.
[15] G. Boden. Obesity, insulin resistance and free fatty acids , 2011, Current opinion in endocrinology, diabetes, and obesity.
[16] J. Knight. Diseases and disorders associated with excess body weight. , 2011, Annals of clinical and laboratory science.
[17] Peter Kochunov,et al. Blood Pressure and Cerebral White Matter Share Common Genetic Factors in Mexican Americans , 2011, Hypertension.
[18] Hongwei Kong,et al. Application of plasma lipidomics in studying the response of patients with essential hypertension to antihypertensive drug therapy. , 2011, Molecular bioSystems.
[19] I. Goldberg,et al. Sphingolipids and cardiovascular diseases: lipoprotein metabolism, atherosclerosis and cardiomyopathy. , 2011, Advances in experimental medicine and biology.
[20] J. Hamlyn,et al. Upregulation of Na+/Ca2+ exchanger and TRPC6 contributes to abnormal Ca2+ homeostasis in arterial smooth muscle cells from Milan hypertensive rats. , 2010, American journal of physiology. Heart and circulatory physiology.
[21] M. Orešič,et al. Comparison of Lipid and Fatty Acid Composition of the Liver, Subcutaneous and Intra‐abdominal Adipose Tissue, and Serum , 2010, Obesity.
[22] Stefan R. Bornstein,et al. Top-Down Lipidomics Reveals Ether Lipid Deficiency in Blood Plasma of Hypertensive Patients , 2009, PloS one.
[23] S. Anderson,et al. Plasma Fatty Acid Composition as a Predictor of Arterial Stiffness and Mortality , 2009, Hypertension.
[24] M. Taskinen,et al. Serum saturated fatty acids containing triacylglycerols are better markers of insulin resistance than total serum triacylglycerol concentrations , 2009, Diabetologia.
[25] Youjun Wang,et al. STIM, ORAI AND TRPC CHANNELS IN THE CONTROL OF CALCIUM ENTRY SIGNALS IN SMOOTH MUSCLE , 2008, Clinical and experimental pharmacology & physiology.
[26] P. Meikle,et al. A Mouse Model of Harlequin Ichthyosis Delineates a Key Role for Abca12 in Lipid Homeostasis , 2008, PLoS genetics.
[27] J. Blangero,et al. Genetics of variation in HOMA-IR and cardiovascular risk factors in Mexican-Americans , 2008, Journal of Molecular Medicine.
[28] J. Blangero,et al. A chromosome 11q quantitative-trait locus influences change of blood-pressure measurements over time in Mexican Americans of the San Antonio Family Heart Study. , 2007, American journal of human genetics.
[29] R. Murphy,et al. Detection of the abundance of diacylglycerol and triacylglycerol molecular species in cells using neutral loss mass spectrometry. , 2007, Analytical biochemistry.
[30] G. Rosano,et al. The Metabolic Syndrome in Women , 2006, Women's health.
[31] G. Davı̀,et al. Endothelial dysfunction and oxidative stress in arterial hypertension. , 2006, Nutrition, metabolism, and cardiovascular diseases : NMCD.
[32] M. Lombardi,et al. Visceral Fat in Hypertension: Influence on Insulin Resistance and β-Cell Function , 2004, Hypertension.
[33] R. D'Agostino,et al. Prevalence and characteristics of the metabolic syndrome in the San Antonio Heart and Framingham Offspring Studies. , 2003, Diabetes.
[34] B. Vessby. Dietary fat, fatty acid composition in plasma and the metabolic syndrome , 2003, Current opinion in lipidology.
[35] A. Wierzbicki. Lipid lowering: another method of reducing blood pressure? , 2002, Journal of Human Hypertension.
[36] S. Haffner,et al. Homeostasis model assessment of insulin resistance in relation to the incidence of cardiovascular disease: the San Antonio Heart Study. , 2002, Diabetes care.
[37] L. Almasy,et al. Genetics of atherosclerosis risk factors in Mexican Americans. , 2009, Nutrition reviews.
[38] A. Folsom,et al. Plasma fatty acid composition and 6-year incidence of hypertension in middle-aged adults: the Atherosclerosis Risk in Communities (ARIC) Study. , 1999, American journal of epidemiology.
[39] L. Almasy,et al. A genome search identifies major quantitative trait loci on human chromosomes 3 and 4 that influence cholesterol concentrations in small LDL particles. , 1999, Arteriosclerosis, thrombosis, and vascular biology.
[40] L. Almasy,et al. Multipoint quantitative-trait linkage analysis in general pedigrees. , 1998, American journal of human genetics.
[41] Huaiyu Zhu. On Information and Sufficiency , 1997 .
[42] I. Godsland,et al. Relationships between blood pressure, oral contraceptive use and metabolic risk markers for cardiovascular disease. , 1995, Contraception.
[43] E. Schiffrin. Intracellular signal transduction for vasoactive peptides in hypertension. , 1994, Canadian journal of physiology and pharmacology.
[44] F. Horber,et al. Insulin sensitivity and body fat distribution in normotensive offspring of hypertensive parents , 1993, The Lancet.
[45] A. Simon,et al. Biochemical and functional alterations associated with hypercholesterolemia in platelets from hypertensive patients. , 1992, Atherosclerosis.
[46] P. Weidmann,et al. Altered insulin sensitivity, hyperinsulinemia, and dyslipidemia in individuals with a hypertensive parent. , 1991, The American journal of medicine.
[47] P. Björntorp,et al. Fat distribution and gender differences in serum lipids in men and women from four European communities. , 1991, Atherosclerosis.
[48] O. Akinkugbe. Epidemiology of cardiovascular disease in developing countries. , 1990, Journal of hypertension. Supplement : official journal of the International Society of Hypertension.
[49] P. Weidmann,et al. Effects of antihypertensive therapy on serum lipoproteins. , 1983, Hypertension.