Metabolic Effects of Betaine: A Randomized Clinical Trial of Betaine Supplementation in Prediabetes
暂无分享,去创建一个
M. Patti | A. Goldfine | R. Gerszten | J. Beckman | A. Lin | R. Basu | J. Dreyfuss | Ana María Grizales | V. A. Sahni | Emilie Cloutier | Kristen M Fowler | Hui Pan | Chisayo Kozuka | Adrienne Lee | D. Pober | V. Sahni | Allison B. Goldfine | Robert E. Gerszten | Alexander P Lin | Joshua A. Beckman | V Anik Sahni | David M. Pober
[1] J. L. Pryor,et al. The Effect of Betaine on Nitrate and Cardiovascular Response to Exercise , 2017, International journal of exercise science.
[2] L. Luzi,et al. Betaine promotes cell differentiation of human osteoblasts in primary culture , 2017, Journal of Translational Medicine.
[3] 2. Classification and Diagnosis of Diabetes , 2016, Diabetes Care.
[4] P. Njølstad,et al. Prospective Associations of Systemic and Urinary Choline Metabolites with Incident Type 2 Diabetes. , 2016, Clinical chemistry.
[5] E. Maratos-Flier,et al. Understanding the Physiology of FGF21. , 2016, Annual review of physiology.
[6] Thomas J. Wang,et al. Metabolite Profiles of Diabetes Incidence and Intervention Response in the Diabetes Prevention Program , 2016, Diabetes.
[7] F. Villarroya,et al. Dietary Betaine Supplementation Increases Fgf21 Levels to Improve Glucose Homeostasis and Reduce Hepatic Lipid Accumulation in Mice , 2016, Diabetes.
[8] Tae Woo Jung,et al. BAIBA attenuates insulin resistance and inflammation induced by palmitate or a high fat diet via an AMPK–PPARδ-dependent pathway in mice , 2015, Diabetologia.
[9] Thomas J. Wang,et al. Dimethylglycine Deficiency and the Development of Diabetes , 2015, Diabetes.
[10] R. Obeid,et al. The Metabolic Burden of Methyl Donor Deficiency with Focus on the Betaine Homocysteine Methyltransferase Pathway , 2013, Nutrients.
[11] W. Atkinson,et al. Betaine and Secondary Events in an Acute Coronary Syndrome Cohort , 2012, PloS one.
[12] J. Hardies,et al. Prevalence of Prediabetes and Diabetes and Metabolic Profile of Patients With Nonalcoholic Fatty Liver Disease (NAFLD) , 2012, Diabetes Care.
[13] Ahmad Esmaillzadeh,et al. Dietary Choline and Betaine Intakes and Risk of Cardiovascular Diseases: Review of Epidemiological Evidence , 2011, ARYA atherosclerosis.
[14] W. Atkinson,et al. Plasma Lipids and Betaine Are Related in an Acute Coronary Syndrome Cohort , 2011, PloS one.
[15] V. Mootha,et al. Metabolite profiles and the risk of developing diabetes , 2011, Nature Medicine.
[16] T. Bottiglieri,et al. Betaine improves nonalcoholic fatty liver and associated hepatic insulin resistance: a potential mechanism for hepatoprotection by betaine. , 2010, American journal of physiology. Gastrointestinal and liver physiology.
[17] S. Sanderson,et al. Betaine for nonalcoholic fatty liver disease: Results of a randomized placebo‐controlled trial , 2009, Hepatology.
[18] Peter Almgren,et al. Clinical risk factors, DNA variants, and the development of type 2 diabetes. , 2008, The New England journal of medicine.
[19] S. Vollset,et al. Divergent associations of plasma choline and betaine with components of metabolic syndrome in middle age and elderly men and women. , 2008, The Journal of nutrition.
[20] J. Hardies,et al. A placebo-controlled trial of pioglitazone in subjects with nonalcoholic steatohepatitis. , 2006, The New England journal of medicine.
[21] M. Katan,et al. Effect of Homocysteine-Lowering Nutrients on Blood Lipids: Results from Four Randomised, Placebo-Controlled Studies in Healthy Humans , 2005, PLoS medicine.
[22] S. Grundy,et al. Magnetic resonance spectroscopy to measure hepatic triglyceride content: prevalence of hepatic steatosis in the general population. , 2005, American journal of physiology. Endocrinology and metabolism.
[23] E. Benjamin,et al. Guidelines for the ultrasound assessment of endothelial-dependent flow-mediated vasodilation of the brachial artery: a report of the International Brachial Artery Reactivity Task Force. , 2002, Journal of the American College of Cardiology.
[24] K. Lindor,et al. Betaine, a promising new agent for patients with nonalcoholic steatohepatitis: results of a pilot study , 2001, American Journal of Gastroenterology.
[25] C. Kahn,et al. Metabolic effects of vanadyl sulfate in humans with non-insulin-dependent diabetes mellitus: in vivo and in vitro studies. , 2000, Metabolism: clinical and experimental.
[26] C. Bogardus,et al. Evaluation of simple indices of insulin sensitivity and insulin secretion for use in epidemiologic studies. , 2000, American journal of epidemiology.
[27] M. Matsuda,et al. Insulin sensitivity indices obtained from oral glucose tolerance testing: comparison with the euglycemic insulin clamp. , 1999, Diabetes care.
[28] R. N. Bergman,et al. Role of glucose and insulin resistance in development of type 2 diabetes mellitus: results of a 25-year follow-up study , 1992, The Lancet.
[29] R. DeFronzo,et al. Indirect calorimetry: methodological and interpretative problems. , 1990, The American journal of physiology.
[30] R. DeFronzo,et al. Fasting hyperglycemia in non-insulin-dependent diabetes mellitus: contributions of excessive hepatic glucose production and impaired tissue glucose uptake. , 1989, Metabolism: clinical and experimental.
[31] E. Ferrannini. The theoretical bases of indirect calorimetry: a review. , 1988, Metabolism: clinical and experimental.
[32] G. Gottschalk,et al. Betaine: New Oxidant in the Stickland Reaction and Methanogenesis from Betaine and l-Alanine by a Clostridium sporogenes-Methanosarcina barkeri Coculture , 1983, Applied and environmental microbiology.
[33] BOULIN,et al. Classification and Diagnosis of Diabetes. , 2022, Primary care.
[34] T. Hohlfeld,et al. Pharmacokinetics of oral betaine in healthy subjects and patients with homocystinuria. , 2003, British journal of clinical pharmacology.