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151. Reshaping faecal gut microbiota composition by the intake of trans-resveratrol and quercetin in high-fat sucrose diet-fed rats

152. Genetics of weight loss: A basis for personalized obesity management

153. Interleukin-6 is a better metabolic biomarker than interleukin-18 in young healthy adults

154. Metabolic faecal fingerprinting of trans-resveratrol and quercetin following a high-fat sucrose dietary model using liquid chromatography coupled to high-resolution mass spectrometry

155. Perinatal maternal feeding with an energy dense diet and/or micronutrient mixture drives offspring fat distribution depending on the sex and growth stage

156. Therapeutic perspectives of epigenetically active nutrients

157. SH2B1 CpG-SNP Is Associated with Body Weight Reduction in Obese Subjects Following a Dietary Restriction Program

158. Obesity and ischemic stroke modulate the methylation levels of KCNQ1 in white blood cells

159. DNA methylation signatures at endoplasmic reticulum stress genes are associated with adiposity and insulin resistance

160. Gene methylation parallelisms between peripheral blood cells and oral mucosa samples in relation to overweight

161. Association of the Gly482Ser PPARGC1A gene variant with different cholesterol outcomes in response to two energy-restricted diets in subjects with excessive weight

162. DNA methylation patterns at sweet taste transducing genes are associated with BMI and carbohydrate intake in an adult population

163. Association of low dietary folate intake with lower CAMKK2 gene methylation, adiposity, and insulin resistance in obese subjects

164. Effect of the interaction between diet composition and the

165. Epigenetics of Undernutrition

166. Adherence to Mediterranean diet is associated with methylation changes in inflammation-related genes in peripheral blood cells

167. Dietary and Metabolic Compounds Affecting Covalent Histone Modifications

168. DNA methylation map in circulating leukocytes mirrors subcutaneous adipose tissue methylation pattern: a genome-wide analysis from non-obese and obese patients

169. Supplementation with methyl donors during lactation to high-fat-sucrose-fed dams protects offspring against liver fat accumulation when consuming an obesogenic diet

170. Epigenetic patterns of two gene promoters (TNF-α and PON) in stroke considering obesity condition and dietary intake

171. Modulation of hyperglycemia and TNFα-mediated inflammation by helichrysum and grapefruit extracts in diabetic db/db mice

172. Gene-Gene Interplay and Gene-Diet Interactions Involving the MTNR1B rs10830963 Variant with Body Weight Loss

173. European Summer School on Nutrigenomics. September 1–5, 2014 Camerino, Italy: Abstracts

174. Epigenetics in Adipose Tissue, Obesity, Weight Loss, and Diabetes

175. Maternal Methyl Donors Supplementation during Lactation Prevents the Hyperhomocysteinemia Induced by a High-Fat-Sucrose Intake by Dams

176. Future Challenges and Present Ethical Considerations in the Use of Personalized Nutrition Based on Genetic Advice

177. Transcriptomic and epigenetic changes in early liver steatosis associated to obesity: Effect of dietary methyl donor supplementation

178. TNF-alpha promoter methylation in peripheral white blood cells: Relationship with circulating TNFα, truncal fat and n-6 PUFA intake in young women

179. Do the Effects of Resveratrol on Thermogenic and Oxidative Capacities in IBAT and Skeletal Muscle Depend on Feeding Conditions?

180. Prevention of diet-induced obesity by apple polyphenols in Wistar rats through regulation of adipocyte gene expression and DNA methylation patterns

181. Shifting to a control diet after a high-fat, high-sucrose diet intake induces epigenetic changes in retroperitoneal adipocytes of Wistar rats

182. Diet-induced hyperinsulinemia differentially affects glucose and protein metabolism: a high-throughput metabolomic approach in rats

183. The rs9939609 Polymorphism in the FTO Gene Is Associated with Fat and Fiber Intakes in Patients with Type 2 Diabetes

184. Studies on Mechanistic Role of Natural Bioactive Compounds in the Management of Obesity An Overview

185. Screening of polyphenolic plant extracts for anti-obesity properties in Wistar rats

186. Guide and Position of the International Society of Nutrigenetics/Nutrigenomics on Personalised Nutrition: Part 1 - Fields of Precision Nutrition

187. LINE-1 and inflammatory gene methylation levels are early biomarkers of metabolic changes: association with adiposity

188. Higher Fruit Intake Is Related to TNF-α Hypomethylation and Better Glucose Tolerance in Healthy Subjects

189. LINE-1 methylation is positively associated with healthier lifestyle but inversely related to body fat mass in healthy young individuals

190. DNA methylation and hydroxymethylation levels in relation to two weight loss strategies: energy-restricted diet or bariatric surgery

191. CLOCK, PER2 and BMAL1 DNA Methylation: Association with Obesity and Metabolic Syndrome Characteristics and Monounsaturated Fat Intake

192. Dietary supplementation with methyl donors reduces fatty liver and modifies the fatty acid synthase DNA methylation profile in rats fed an obesogenic diet

193. The rs7204609 Polymorphism in the Fat Mass and Obesity-Associated Gene is Positively Associated With Central Obesity and Microalbuminuria in Patients With Type 2 Diabetes From Southern Brazil

194. Antidiabetic effects of natural plant extracts via inhibition of carbohydrate hydrolysis enzymes with emphasis on pancreatic alpha amylase

195. Vitamin C modulates the interaction between adipocytes and macrophages

196. Resveratrol attenuates steatosis in obese Zucker rats by decreasing fatty acid availability and reducing oxidative stress

197. Leptin and TNF-alpha promoter methylation levels measured by MSP could predict the response to a low-calorie diet

198. A dual epigenomic approach for the search of obesity biomarkers: DNA methylation in relation to diet‐induced weight loss

199. Liver Proteome Changes Induced by a Short-Term High-Fat Sucrose Diet in Wistar Rats

200. Extrusion decreases the negative effects of kidney bean on enzyme and transport activities of the rat small intestine

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