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Effects of Silybum marianum Extract on High-Fat Diet Induced Metabolic Disorders in Rats

(L-Aspartate:2-oxoglutarate amino-transferase, EC 2.6.1.1) Clin. Chem., 1978, 24/4, 720–721. 7. BrahmaNaidu P., Nemani H., Meriga B., Mehar S.K., Potana S., Ramgopalrao S., Mitigating efficacy of piperine in the physiological derangements of high fat diet induced obesity in Sprague Dawley rats. Chem. Biol. Inter., 2014, 221, 42–51. 8. Bulló M., Casas-Agustench P., Amigó-Correig P., Aranceta J., Salas-Salvadó J., Inflammation, obesity and comorbidities: the role of diet. Publ. Health Nutr., 2007, 10, 1164–1172. 9. Chen I.S., Chen Y.C., Chou C

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Potency of Cape Gooseberry (Physalis Peruviana) Juice in Improving Antioxidant and Adiponectin Level of High Fat Diet Streptozotocin Rat Model

, Ghoneim MAM . A possible inhibitory effect of Physalis (physalis pubescens L.) on diabetes in male rats. World Appl Sci J 21(5): 681–688, 2013. 14. Sathyadevi M, Suchithra ER, Subramanian S . Physalis peruviana Linn. fruit extract improves insulin sensitivity and ameliorates hyperglycemia in high-fat diet low dose STZ-induced type 2 diabetic rats. J Pharm Res 8(4): 625–632, 2014. 15. Al-Olayan EM, El-Khadragy MF, Aref AM, Othman MS, Kassab RB, Abdel Moneim AE . The potential protective effect of physalis peruviana L. against carbon tetrachloride

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Possible ameliorating effects of Glycyrrhiza Glabra (Licorice) on the sperm parameters in rats under high fat diet

References Aoki F, Honda S, Kishida H, Kitano M, Arai N, Tanaka H, Yokota S, Nakagawa K, Asakura T, Nakai Y, Mae T. Suppression by licorice flavonoids of abdominal fat accumulation and body weight gain in high-fat diet-induced obese C57BL/6J mice. Biosci Biotechnol Biochem 71, 206–214, 2007. Armanini D, Bonanni G, Palermo M. Reduction of serum testosterone in men by licorice. N Engl J Med 341, 1158, 1999. Bakos HW, Henshaw RC, Mitchell M, Lane M. Paternal body mass index is associated with decreased blastocyst development and reduced live birth

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Anti-Glycemic and Anti-Hepatotoxic Effects of Mangosteen Vinegar Rind from Garcinia mangostana Against HFD/STZ-Induced Type II Diabetes in Mice

. 3689208. 3. Bhandari U., Chaudhari H.S., Khanna G., Najmi A.K., Antidiabetic effects of Embelia ribes extract in high fat diet and low dose streptozotocin-induced type 2 diabetic rats. Front Life Sci., 2013, 7, 186-196. 4. Bligh E.G., Dyer W.J., A rapid method of total lipid extraction and purifi cation. Can. J. Biochem. Physiol., 1959, 37, 911-917. 5. Bonnefont-Rousselot D., Glucose and reactive oxygen species. Curr. Opin. Clin. Nutr. Metab. Care, 2002, 5, 561-568. 6. Carr T.P., Andresen C.J., Rudel L

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Effects Of Dietary Supplementation With A Mixture Of Buckwheat Leaf And Flower On Fatty Acid Composition Of Rat Brain Phospholipids

, 47:46-50. 16. Tamashiro KLK, Terrillion CE, Hyun J, Koenig JI, Moran TH. Prenatal stress or high-fat diet increases susceptibility to diet-induced obesity in rat offspring. Diabetes. 2009, 58:1116-1125. 17. Chajes V, Joulin V, Clavel-Chapelon F. The fatty acid desaturation index of blood lipids, as biomarker of hepatic stearoyl-CoA desaturase expression, is predictive factor of breast cancer risk. Curr Opin Lipidol. 2011,22:6-10. 18. Warensjo E, Rosell M, Hellenius ML, Vessby B, De Faire U, Riserus U. Associations between estimated fatty acid

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The effect of peptide tyrosine tyrosine (PYY3–36), a selective Y2 receptor agonist on streptozotocin-induced diabetes in albino rats

Obes Metab Res 1, 30–38, 2014. Gutierrez-Rodelo C, Roura-Guiberna A, Olivares-Reyes JA. Molecular mechanisms of insulin resistance: An update. Gac Med Mex 153, 197–209, 2017. Hassan AM, Ibrahim MY, Ibrahim HM, Ragy MM, Ali H. Effect of peptide tyrosine tyrosine (PYY3–36) on high fat diet induced obesity and its metabolic hazards in adult albino rats. MJMR 26, 1–14, 2015. Hassan AM, Jain P, Mayerhofer R, Frohlich EE, Farzi A, Reichmann F, Herzog H, Holzer P. Visceral hyperalgesia caused by peptide YY deletion and Y2 receptor antagonism. Sci Rep 7

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Antioxidant enzyme activities in rabbits under oxidative stress induced by high fat diet

Introduction The proper amount and form (raw/non-oxidised) of vegetable oils with an optimal ratio of omega 3 to omega 6 fatty acids are essential aspects of a well-balanced diet and factors for the sufficient development of an organism. However, consumption of excessive amounts of fats (even vegetable) in either non-oxidised or oxidised form in a high-fat diet (HFD) may be an oxidative stress inductor, which in turn may damage proteins, lipids, and carbohydrates and causes many diseases ( 2 , 10 , 20 ). Nevertheless, due to different amounts of unsaturated

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ST2 Deficiency Ameliorates High Fat Diet-Induced Liver Steatosis In BALB/c Mice

2 enhances high - fat diet -induced visceral adiposity and inflammation in BALB/c mice [Delecija gena za ST2 promoviše gojaznost i inflamaciju u visceralnom adipoznom tkivu BALB/c miševa na dijeti sa visokim sadržajem masti]. Serb J Exp Clin Res 2013; 14(4): 155 -160. 25. Donnelly KL, Smith CI, Schwarzenberg SJ, Jessurun J, Boldt MD, Parks EJ. Sources of fatty acids stored in liver and secreted via lipoproteins in patients with nonalcoholic fatty liver disease. J Clin Invest. 2005;115(5):1343-51. 26. Langin D. Adipose tissue lipolysis as a metabolic

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Influence of α-lipoic acid on morphology of organs of rabbits fed a high fat diet with the addition of oxidised rapeseed oil

disease. Curr Opin Lipidol 2003, 13, 19–24. 6. Fiedurek J.: The role of food and nutrition in prophylaxis and therapy of human diseases. Edition of University of Maria Curie-Sklodowska, Lublin, 2007, pp. 46–47. 7. Garnol T., Endlicher R., Kucera O., Drahota Z., Cervinkova Z.: Impairment of mitochondrial function of rat hepatocytes by high fat diet and oxidative stress. Physiol Res 2014, 63, 271–274. 8. Haliga R.E., Mocanu V., Badescu M.: Antioxidative and antiatherogenic effects of flaxseed, α-tocopherol and their combination in diabetic hamsters fed

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Galectin-3 Deletion Enhances Visceral Adipose Tissue Inflammation and Dysregulates Glucose Metabolism in Mice on a High-Fat Diet

accelerates high-fat diet induced obesity and amplifies inflammation in adipose tissue and pancreatic islets. Diabetes 2013,62:1932-44. 19. Weigert J, Neumeier M, Wanninger J, Bauer S, Farkas S, Scherer MN et al. Serum galectin-3 is elevated in obesity and negatively correlates with glycosylated hemoglobin in type 2 diabetes. J Clin Endocrinol Metab 2010:95:1404-11 20. Rhodes DH, Pini M, Castellanos KJ, Montero-Melendez T, Cooper D, Perretti M et al. Adipose tissue-speific modulation of galectin expression in lean and obese mice: evidence for regulatory function

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