Effect of polyphenol, flavonoid, and saponin fractions from Thymus atlanticus on acute and chronic hyperlipidemia in mice
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T. Simmet | K. Ouguerram | H. Harnafi | M. Ramchoun | C. Alem | S. Amrani | M. Benlyas | T. Khouya
[1] R. Mihăilă,et al. Pragmatic Analysis of Dyslipidemia Involvement in Coronary Artery Disease: A Narrative Review , 2020, Current cardiology reviews.
[2] J. Dykens,et al. Mitochondrial dysfunction caused by drug and environmental toxicants , 2020 .
[3] T. Simmet,et al. Anti-inflammatory and anticoagulant effects of polyphenol-rich extracts from Thymus atlanticus: An in vitro and in vivo study. , 2019, Journal of ethnopharmacology.
[4] A. Pariente,et al. Real-Life Benefits of Statins for Cardiovascular Prevention in Elderly Subjects: A Population-Based Cohort Study. , 2019, The American journal of medicine.
[5] J. Kou,et al. Akebia Saponin D Regulates the Metabolome and Intestinal Microbiota in High Fat Diet-Induced Hyperlipidemic Rats , 2019, Molecules.
[6] P. Barter,et al. HDL cholesterol and ASCVD risk stratification: A debate. , 2019, Atherosclerosis.
[7] T. Dyson-Hudson,et al. Fenofibrate therapy to lower serum triglyceride concentrations in persons with spinal cord injury: A preliminary analysis of its safety profile , 2019, The journal of spinal cord medicine.
[8] Kunlun Huang,et al. Anti‐obesity and hypolipidemic effect of water extract from Pleurotus citrinopileatus in C57BL/6J mice , 2019, Food science & nutrition.
[9] S. Bhushan,et al. Malondialdehyde, lipoprotein-a, lipoprotein ratios, comprehensive lipid tetrad index and atherogenic index as surrogate markers for cardiovascular disease in patients with psoriasis: a case–control study , 2019, Archives of Dermatological Research.
[10] R. Sivakanesan,et al. Isolation, identification and characterization of pancreatic lipase inhibitors from Trigonella foenum-graecum seeds , 2019, South African Journal of Botany.
[11] Dılhun Keriman Arserim-Uçar,et al. Thymus spp. plants - Food applications and phytopharmacy properties , 2019, Trends in Food Science & Technology.
[12] P. Villeneuve,et al. Rosmarinic acid and its esters inhibit membrane cholesterol domain formation through an antioxidant mechanism based, in nonlinear fashion, on alkyl chain length. , 2019, Biochimica et biophysica acta. Biomembranes.
[13] V. Longo,et al. Polyphenolic characterisation of plant mixture (Lisosan® Reduction) and its hypocholesterolaemic effect in high fat diet-fed mice , 2019, Natural product research.
[14] J. Mehta,et al. Role of Ox-LDL and LOX-1 in Atherogenesis. , 2019, Current medicinal chemistry.
[15] John Fuller,et al. Efficacy and safety of statin therapy in older people: a meta-analysis of individual participant data from 28 randomised controlled trials , 2019, The Lancet.
[16] R. Lebrun,et al. Identification of a new natural gastric lipase inhibitor from star anise. , 2019, Food & function.
[17] H. Tamura,et al. Rosmarinic acid and its ester derivatives for enhancing antibacterial, α-glucosidase inhibitory, and lipid accumulation suppression activities. , 2018, Journal of food biochemistry.
[18] C. Matar,et al. The Immunomodulatory and Anti-Inflammatory Role of Polyphenols , 2018, Nutrients.
[19] G. Abu Sheikha,et al. Synthesis and in Vivo Lipid-Lowering Activity of Novel Imidazoles-5-carboxamide Derivatives in Triton-WR-1339-Induced Hyperlipidemic Wistar Rats. , 2018, Chemical & pharmaceutical bulletin.
[20] N. Brunetti,et al. Fenofibrate and Dyslipidemia: Still a Place in Therapy? , 2018, Drugs.
[21] A. Sahebkar,et al. PPAR-α agonist fenofibrate potentiates antioxidative elements and improves oxidative stress of hepatic cells in streptozotocin-induced diabetic animals , 2018, Comparative Clinical Pathology.
[22] Lawrence A Leiter,et al. Adverse effects of statin therapy: perception vs. the evidence – focus on glucose homeostasis, cognitive, renal and hepatic function, haemorrhagic stroke and cataract , 2018, European heart journal.
[23] J. Sinisalo,et al. New medications targeting triglyceride-rich lipoproteins: Can inhibition of ANGPTL3 or apoC-III reduce the residual cardiovascular risk? , 2018, Atherosclerosis.
[24] M. Battino,et al. Dietary polyphenols: Structures, bioavailability and protective effects against atherosclerosis. , 2018, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[25] A. Dyson,et al. Statin and Fibrate‐Induced Dichotomy of Mitochondrial Function , 2018 .
[26] E. Wolf,et al. Animal models of obesity and diabetes mellitus , 2018, Nature Reviews Endocrinology.
[27] K. Dhama,et al. Rosmarinic acid: modes of action, medicinal values and health benefits , 2017, Animal Health Research Reviews.
[28] W. Lu,et al. The atherogenic index of plasma is a strong and independent predictor for coronary artery disease in the Chinese Han population , 2017, Medicine.
[29] Xu Wang,et al. A structural mechanism of flavonoids in inhibiting serine proteases. , 2017, Food & function.
[30] E. Boerwinkle,et al. Association of Elevated Triglycerides and Atherogenic Lipoproteins with Incident Cardiovascular Diseases: Insights from Genetic Data in the Atherosclerosis Risk in Communities Study , 2017 .
[31] S. T. Ogunbanwo,et al. Antagonistic activity of Thymus vulgaris extracts against Vibrio species isolated from seafoods , 2017, Journal of Food Science and Technology.
[32] C. Ayers,et al. HDL efflux capacity, HDL particle size, and high-risk carotid atherosclerosis in a cohort of asymptomatic older adults: the Chicago Healthy Aging Study , 2017, Journal of Lipid Research.
[33] G. Franceschini,et al. Role of LCAT in Atherosclerosis. , 2016, Journal of atherosclerosis and thrombosis.
[34] H. Harnafi,et al. Anti-inflammatory, anticoagulant and antioxidant effects of aqueous extracts from Moroccan thyme varieties , 2015 .
[35] Y. Zu,et al. Effects of rosmarinic acid on liver and kidney antioxidant enzymes, lipid peroxidation and tissue ultrastructure in aging mice. , 2015, Food & function.
[36] L. Labban,et al. The Effects of Rosemary ( Rosmarinus officinalis ) Leaves Powder on Glucose Level, Lipid Profile and Lipid Perodoxation , 2014 .
[37] D. Corella,et al. Changes in Ultrasound-Assessed Carotid Intima-Media Thickness and Plaque With a Mediterranean Diet: A Substudy of the PREDIMED Trial , 2014, Arteriosclerosis, thrombosis, and vascular biology.
[38] J. Koeller,et al. Fenofibrate-associated nephrotoxicity: a review of current evidence. , 2013, American journal of health-system pharmacy : AJHP : official journal of the American Society of Health-System Pharmacists.
[39] T. Simmet,et al. Hypolipidemic and antioxidant effect of polyphenol-rich extracts from Moroccan thyme varieties , 2012 .
[40] H. Harnafi,et al. Sweet basil (Ocimum basilicum L.) improves lipid metabolism in hypercholesterolemic rats , 2009 .
[41] Steve D. M. Brown,et al. The mouse ascending: perspectives for human-disease models , 2007, Nature Cell Biology.
[42] J. Jukema,et al. Fenofibrate increases HDL-cholesterol by reducing cholesteryl ester transfer protein expression Published, JLR Papers in Press, May 24, 2007. , 2007, Journal of Lipid Research.
[43] S. Manfredini,et al. Hypolipidaemic activity of aqueous ocimum basilicum extract in acute hyperlipidaemia induced by triton WR‐1339 in rats and its antioxidant property , 2006, Phytotherapy research : PTR.
[44] R. Morales. The history, botany and taxonomy of the genus Thymus , 2002 .
[45] M. Linton,et al. Mouse models of hyperlipidemia and atherosclerosis. , 2001, Frontiers in bioscience : a journal and virtual library.
[46] L. Howard,et al. Flavonoids and Antioxidant Activity of Fresh Pepper (Capsicum annuum) Cultivars , 1995 .
[47] C. Younos,et al. Repertory of standard herbal drugs in the Moroccan pharmacopoea. , 1991, Journal of ethnopharmacology.
[48] A. Tournadre. Statins, myalgia, and rhabdomyolysis. , 2020, Joint, bone, spine : revue du rhumatisme.
[49] R. Prasad,et al. Therapeutic role of lipases and lipase inhibitors derived from natural resources for remedies against metabolic disorders and lifestyle diseases , 2019, South African Journal of Botany.
[50] E. Kavanagh,et al. Statins: Rationale, Mode of Action, and Side Effects , 2019, The Impact of Nutrition and Statins on Cardiovascular Diseases.
[51] B. Ferguson,et al. Polyphenols: Novel Signaling Pathways. , 2018, Current pharmaceutical design.
[52] Jean-Claude Tardif,et al. HDL and atherosclerotic cardiovascular disease: genetic insights into complex biology , 2018, Nature Reviews Cardiology.
[53] R. Lamuela-Raventós,et al. Polyphenol intake from a Mediterranean diet decreases inflammatory biomarkers related to atherosclerosis: a substudy of the PREDIMED trial. , 2017, British journal of clinical pharmacology.
[54] M. Jordán,et al. Polyphenolic extract and essential oil quality of Thymus zygis ssp. gracilis shrubs cultivated under different watering levels , 2009 .
[55] J. Schultz,et al. Triton-induced hyperlipidemia in rats as an animal model for screening hypolipidemic drugs , 2006, Lipids.
[56] D. K. Sharma,et al. Hypolipidemic effect of different extracts of Clerodendron colebrookianum Walp in normal and high-fat diet fed rats. , 2004, Journal of ethnopharmacology.
[57] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..