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The impact of fat intake on hypercholesterolemia and related atherosclerotic cardiovascular diseases has been studied for decades. However, the current evidence base suggests that fatty acids also influences cardiometabolic diseases through other mechanisms including effects on glucose metabolism, body fat distribution, blood pressure, inflammation, and heart rate. Furthermore, studies evaluating single fatty acids have challenged the simplistic view of shared health effects within fatty acid groups categorized by degree of saturation. In addition, investigations of endogenous fatty acid metabolism, including genetic studies of fatty acid metabolizing enzymes, and the identification of novel metabolically derived fatty acids have further increased the complexity of fatty acids’ health impacts. This Special Issue aims to include original research and up-to-date reviews on genetic and dietary modulation of fatty acids, and the role and function of dietary and metabolically derived fatty acids in cardiometabolic health.
omega-3 --- cardiovascular disease --- statins --- type 2 diabetes mellitus --- medium-chain triglyceride --- long-chain triglyceride --- lipid metabolism --- klotho --- CKD --- fish oil --- fibrosis --- inflammation --- cardiometabolic disease --- unsaturated fat --- Mediterranean diet --- low-fat diet --- alternatively activated macrophages --- perivascular adipose tissue --- type 2 cytokines --- erucic acid --- fish --- seafood --- furan fatty acids --- docosapentaenoic acid --- conjugated fatty acids --- cardiovascular disease --- metabolic disease --- blood lipids --- inflammation --- antioxidant --- CYP450 eicosanoids --- omega-3 PUFA --- omega-6 PUFA --- blood pressure --- hemodynamics --- children --- EETs --- EEQs --- fatty acid --- diet --- genotype --- human --- FADS --- fatty acid --- desaturase --- Genome-wide association study (GWAS) --- Insulin sensitivity --- adipose tissue --- cholesterol ester --- omega 3 --- PUFA --- n-3 PUFA --- COPD --- inflammation --- coronary artery disease --- ischemic heart disease --- CAD --- CHD --- fat --- obesity --- body weight --- cohort study --- substitution models --- epidemiology --- prospective cohort study --- n-6 fatty acids --- n-3 fatty acids --- linoleic acid --- arachidonic acid
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“Personalised Nutrition” represents any initiative that attempts to provide tailor-made healthy eating advice based on the nutritional needs of each individual, as these are dictated by the individual’s behaviour, phenotype and/or genotype, and their interactions. This Special Issue of Nutrients is dedicated to the development, implementation and assessment of the effectiveness of evidence-based “Personalised Nutrition” strategies. In this regard, a selection of reviews and original research manuscripts will bring together the latest evidence on how lifestyle habits, physiology, nutraceuticals, gut microbiome and genetics can be integrated into nutritional solutions, specific to the needs of each individual, for maintaining health and preventing diseases.
FADS polymorphism --- omega-3 fatty acids --- type 2 diabetes --- taste --- genetics --- diet --- health --- children --- adults --- type 2 diabetes --- low-carbohydrate diet --- HbA1c --- weight loss --- formula diet --- food allergy --- avoidance diet --- nutrition --- personalized nutrition --- phenotype --- microbiome --- obesity --- postprandial adiponectin --- postprandial leptin --- postprandial total ghrelin --- high-carbohydrate meal --- high-fat meal --- glucose --- insulin --- weight --- diet --- macronutrient composition --- clinical nutrition --- gene-based --- personalised nutrition --- dietary recommendation --- nutrigenetics --- direct-to-consumer test --- genotype --- gene–diet interaction --- weight loss --- obesity --- personalised --- nutrition --- intervention --- children --- obesity --- healthcare professionals --- nutrigenetics --- nutrimetabolomics --- high-carbohydrate meal --- normo-carbohydrate meal --- postprandial metabolic fingerprinting --- ultra-high performance liquid chromatography --- PROX1 gene --- type 2 diabetes mellitus risk --- personalised nutrition --- microbiota --- dietary intervention --- obesity --- irritable bowel syndrome --- gastrointestinal symptoms --- n/a
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