Polyphenol-rich extract of pomegranate peel alleviates tissue inflammation and hypercholesterolaemia in high-fat diet-induced obese mice: potential implication of the gut microbiota
暂无分享,去创建一个
[1] S. Nishikawa,et al. Gene Expression in Livers of BALB/C and C57BL/6J Mice Fed a High-Fat Diet , 2012, Toxicologic pathology.
[2] Jacques Schrenzel,et al. Responses of Gut Microbiota and Glucose and Lipid Metabolism to Prebiotics in Genetic Obese and Diet-Induced Leptin-Resistant Mice , 2011, Diabetes.
[3] Patrice D Cani,et al. Modulation of the gut microbiota by nutrients with prebiotic properties: consequences for host health in the context of obesity and metabolic syndrome , 2011, Microbial cell factories.
[4] Nathalie M. Delzenne,et al. Targeting gut microbiota in obesity: effects of prebiotics and probiotics , 2011, Nature Reviews Endocrinology.
[5] Patrice D Cani,et al. Interaction between obesity and the gut microbiota: relevance in nutrition. , 2011, Annual review of nutrition.
[6] P. François,et al. Altered Gut Microbiota and Endocannabinoid System Tone in Obese and Diabetic Leptin-Resistant Mice: Impact on Apelin Regulation in Adipose Tissue , 2011, Front. Microbio..
[7] T. van de Wiele,et al. Prebiotic Effects of Wheat Arabinoxylan Related to the Increase in Bifidobacteria, Roseburia and Bacteroides/Prevotella in Diet-Induced Obese Mice , 2011, PloS one.
[8] W. D. de Vos,et al. Do nutrient–gut–microbiota interactions play a role in human obesity, insulin resistance and type 2 diabetes? , 2011, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[9] M. Clifford,et al. Bioavailability of dietary flavonoids and phenolic compounds. , 2010, Molecular aspects of medicine.
[10] M. Garcia-Conesa,et al. Ellagitannins, ellagic acid and vascular health. , 2010, Molecular aspects of medicine.
[11] E. Vaughan,et al. Novel approaches for analysing gut microbes and dietary polyphenols: challenges and opportunities. , 2010, Microbiology.
[12] F. Bäckhed,et al. Effects of gut microbiota on obesity and atherosclerosis via modulation of inflammation and lipid metabolism , 2010, Journal of internal medicine.
[13] B. Burton-Freeman. Postprandial metabolic events and fruit-derived phenolics: a review of the science , 2010, British Journal of Nutrition.
[14] J. Espín,et al. NF-kappaB-dependent anti-inflammatory activity of urolithins, gut microbiota ellagic acid-derived metabolites, in human colonic fibroblasts. , 2010, The British journal of nutrition.
[15] Nathalie M. Delzenne,et al. Prebiotic effects: metabolic and health benefits , 2010, British Journal of Nutrition.
[16] D. Ferreira,et al. The influence of pomegranate by-product and punicalagins on selected groups of human intestinal microbiota. , 2010, International journal of food microbiology.
[17] P. Bork,et al. A human gut microbial gene catalogue established by metagenomic sequencing , 2010, Nature.
[18] F. Bäckhed,et al. Coordinated regulation of the metabolome and lipidome at the host-microbial interface. , 2010, Biochimica et biophysica acta.
[19] Ruth E Ley,et al. Obesity and the human microbiome , 2010, Current opinion in gastroenterology.
[20] J. Espín,et al. Interaction between phenolics and gut microbiota: role in human health. , 2009, Journal of agricultural and food chemistry.
[21] M. Garcia-Conesa,et al. Gene expression, cell cycle arrest and MAPK signalling regulation in Caco-2 cells exposed to ellagic acid and its metabolites, urolithins. , 2009, Molecular nutrition & food research.
[22] P. Hsieh,et al. COX‐2‐mediated Inflammation in Fat Is Crucial for Obesity‐linked Insulin Resistance and Fatty Liver , 2009, Obesity.
[23] Y. Schneider,et al. Inhibition of inflammatory mediators by polyphenolic plant extracts in human intestinal Caco-2 cells. , 2009, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[24] Patrice D Cani,et al. Dietary supplementation with chitosan derived from mushrooms changes adipocytokine profile in diet-induced obese mice, a phenomenon linked to its lipid-lowering action. , 2009, International immunopharmacology.
[25] A. Benson,et al. Diet-Induced Metabolic Improvements in a Hamster Model of Hypercholesterolemia Are Strongly Linked to Alterations of the Gut Microbiota , 2009, Applied and Environmental Microbiology.
[26] T. Haqqi,et al. Bioavailable constituents/metabolites of pomegranate (Punica granatum L) preferentially inhibit COX2 activity ex vivo and IL-1beta-induced PGE2 production in human chondrocytes in vitro , 2008, Journal of Inflammation.
[27] S. Parkar,et al. The potential influence of fruit polyphenols on colonic microflora and human gut health. , 2008, International journal of food microbiology.
[28] B. Cerdá,et al. Iberian pig as a model to clarify obscure points in the bioavailability and metabolism of ellagitannins in humans. , 2007, Journal of agricultural and food chemistry.
[29] C. Kwik-Uribe,et al. Flavanol monomer-induced changes to the human faecal microflora , 2007, British Journal of Nutrition.
[30] C. Knauf,et al. Selective increases of bifidobacteria in gut microflora improve high-fat-diet-induced diabetes in mice through a mechanism associated with endotoxaemia , 2007, Diabetologia.
[31] M. Matsuda,et al. Muscle and Liver Insulin Resistance Indexes Derived From the Oral Glucose Tolerance Test , 2007, Diabetes Care.
[32] Robert A Newman,et al. Punica granatum (pomegranate) and its potential for prevention and treatment of inflammation and cancer. , 2007, Journal of ethnopharmacology.
[33] David Heber,et al. Pomegranate juice ellagitannin metabolites are present in human plasma and some persist in urine for up to 48 hours. , 2006, The Journal of nutrition.
[34] S. Yim,et al. Suppressive effect of Punica granatum on the production of tumor necrosis factor (Tnf) in BV2 microglial cells. , 2006, Biological & pharmaceutical bulletin.
[35] Shishir Shishodia,et al. Molecular targets of dietary agents for prevention and therapy of cancer. , 2006, Biochemical pharmacology.
[36] Dae-Joong Kang,et al. Bile salt biotransformations by human intestinal bacteria Published, JLR Papers in Press, November 18, 2005. , 2006, Journal of Lipid Research.
[37] N. Seeram,et al. Pomegranate juice, total pomegranate ellagitannins, and punicalagin suppress inflammatory cell signaling in colon cancer cells. , 2006, Journal of agricultural and food chemistry.
[38] B. Hafeez,et al. Punica granatum L. extract inhibits IL-1beta-induced expression of matrix metalloproteinases by inhibiting the activation of MAP kinases and NF-kappaB in human chondrocytes in vitro. , 2005, The Journal of nutrition.
[39] G. Schieven. The biology of p38 kinase: a central role in inflammation. , 2005, Current topics in medicinal chemistry.
[40] H. Mukhtar,et al. Anthocyanin‐ and hydrolyzable tannin‐rich pomegranate fruit extract modulates MAPK and NF‐κB pathways and inhibits skin tumorigenesis in CD‐1 mice , 2005, International journal of cancer.
[41] A. Matsukawa,et al. INNATE IMMUNE RESPONSE IN TH1- AND TH2-DOMINANT MOUSE STRAINS , 2004, Shock.
[42] Sankar Ghosh,et al. Signaling to NF-kappaB. , 2004, Genes & development.
[43] B. Cerdá,et al. Evaluation of the bioavailability and metabolism in the rat of punicalagin, an antioxidant polyphenol from pomegranate juice , 2003, European journal of nutrition.
[44] M. Stoffel,et al. Human Glucagon-Like Peptide-1 Receptor Gene: Localization to Chromosome Band 6p21 by Fluorescence In Situ Hybridization and Linkage of a Highly Polymorphic Simple Tandem Repeat DNA Polymorphism to Other Markers on Chromosome 6 , 1993, Diabetes.
[45] R. Levy,et al. Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge. , 1972, Clinical chemistry.
[46] W. Verstraete,et al. Dietary modulation of clostridial cluster XIVa gut bacteria (Roseburia spp.) by chitin-glucan fiber improves host metabolic alterations induced by high-fat diet in mice. , 2012, The Journal of nutritional biochemistry.
[47] A. Basu,et al. Pomegranate juice: a heart-healthy fruit juice. , 2009, Nutrition reviews.