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「食後の炎症が肥満リスクを左右する仕組み」の検索結果

194 件中 10 件を表示 (3706 ms) · ⭐ 保存した論文

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(postprandial inflammation OR post-meal inflammation OR postprandial immune response) AND (obesity OR obesity risk OR weight gain) AND (mechanism OR pathophysiology)

💡 食後炎症と肥満リスクの関連メカニズムに焦点を当て、postprandial(食後)とinflammation、obesityの組み合わせで検索

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  • Glucagon-like peptide 1 receptor agonists: cardiovascular benefits and mechanisms of action.

    John R Ussher, Daniel J Drucker · Nature reviews. Cardiology · 2023

    Type 2 diabetes mellitus (T2DM) and obesity are metabolic disorders characterized by excess cardiovascular risk. Glucagon-like peptide 1 (GLP1) receptor (GLP1R) agonists reduce body weight, glycaemia, blood pressure, postprandial lipaemia and inflammation - actions that could contribute to the reduction of cardiovascular events. Cardiovascular outcome trials (CVOTs) have demonstrated that GLP1R ag…

    📄 PubMed で読む (PMID: 36977782)
  • Sarcopenia.

    Anne Tournadre, Gaelle Vial, Frédéric Capel 他 · Joint bone spine · 2019

    Sarcopenia is defined as a combination of low muscle mass with low muscle function. The term was first used to designate the loss of muscle mass and performance associated with aging. Now, recognized causes of sarcopenia also include chronic disease, a physically inactive lifestyle, loss of mobility, and malnutrition. Sarcopenia should be differentiated from cachexia, which is characterized not on…

    📄 PubMed で読む (PMID: 30098424)
  • Dietary factors and low-grade inflammation in relation to overweight and obesity.

    Philip C Calder, Namanjeet Ahluwalia, Fred Brouns 他 · The British journal of nutrition · 2011

    Low-grade inflammation is a characteristic of the obese state, and adipose tissue releases many inflammatory mediators. The source of these mediators within adipose tissue is not clear, but infiltrating macrophages seem to be especially important, although adipocytes themselves play a role. Obese people have higher circulating concentrations of many inflammatory markers than lean people do, and th…

    📄 PubMed で読む (PMID: 22133051)
  • GLP-1 receptor agonist-based therapies and cardiovascular risk: a review of mechanisms.

    Neerav Mullur, Arianne Morissette, Nadya M Morrow 他 · The Journal of endocrinology · 2024

    Cardiovascular outcome trials (CVOTs) in people living with type 2 diabetes mellitus and obesity have confirmed the cardiovascular benefits of glucagon-like peptide 1 receptor agonists (GLP-1RAs), including reduced cardiovascular mortality, lower rates of myocardial infarction, and lower rates of stroke. The cardiovascular benefits observed following GLP-1RA treatment could be secondary to improve…

    📄 PubMed で読む (PMID: 39145614)
  • Changes in Expression of Genes Regulating Airway Inflammation Following a High-Fat Mixed Meal in Asthmatics.

    Qian Li, Katherine J Baines, Peter G Gibson 他 · Nutrients · 2016

    Consumption of a high fat meal can increase neutrophilic airway inflammation in asthma subjects. This study investigates the molecular mechanisms driving airway neutrophilia following a high fat meal in asthmatics. Subjects with asthma (n = 11) and healthy controls (n = 8) consumed a high-fat/energy meal, containing total energy (TE) of 3846 kJ and 48 g of total fat (20.5 g saturated). Sputum was …

    📄 PubMed で読む (PMID: 26751474)
  • Sucralose consumption modifies glucose homeostasis, gut microbiota, Curli protein, and related metabolites in healthy individuals: A randomized placebo-controlled, triple-blind trial.

    Alonso Romo-Romo, Mónica Sánchez-Tapia, M Guadalupe López-Carrasco 他 · Clinical nutrition ESPEN · 2025

    Sucralose consumption has been associated with a reduction in insulin sensitivity, potentially through changes in gut microbiota, induction of low-grade inflammation and other pathophysiologic mechanisms, thus the aim of this study was to evaluate the effect of sucralose consumption on glucose tolerance, insulin sensitivity, postprandial glucagon-like peptide 1 (GLP-1), gut microbiota composition,…

    📄 PubMed で読む (PMID: 40907790)
  • Targeting Insulin Resistance Through Nutrition: Pathophysiological Insights and Dietary Interventions.

    Amelia Caretto, Anna Zanardini, Giulio Frontino 他 · Nutrients · 2026

    Insulin resistance (IR) is a hallmark of metabolic disorders including type 2 diabetes mellitus (T2DM), metabolic syndrome, metabolic dysfunction-associated steatotic liver disease (MASLD), obesity, polycystic ovary syndrome (PCOS), and cardiovascular diseases. It arises from impaired insulin signaling in muscle, liver, and adipose tissue, driven by ectopic lipid accumulation, chronic inflammation…

    📄 PubMed で読む (PMID: 41978168)
  • Age and Body Condition Influence the Post-Prandial Interleukin-1β Response to a High-Starch Meal in Horses.

    Jessica Suagee-Bedore, Nichola Shost, Christian Miller 他 · Animals : an open access journal from MDPI · 2021

    Older horses and those prone to obesity may be at a higher risk for inflammation than younger and leaner counterparts. Previous research indicated a postprandial elevation in plasma concentrations of interleukin-1β (IL-1β), a pro-inflammatory cytokine, after consuming 1.2 g of non-structural carbohydrates/kilogram of body weight. However, these studies utilized horses of mixed age and body conditi…

    📄 PubMed で読む (PMID: 34944138)
  • Postprandial triglyceride-rich lipoproteins-induced premature senescence of adipose-derived mesenchymal stem cells via the SIRT1/p53/Ac-p53/p21 axis through oxidative mechanism.

    Qun-Yan Xiang, Feng Tian, Xiao Du 他 · Aging · 2020

    The accumulation of senescent adipose-derived mesenchymal stem cells (AMSCs) in subcutaneous white adipose tissue (WAT) is the main cause for the deterioration of WAT and the subsequent age-related disorders in obesity. The number of AMSCs staining positively for senescence-associated-β-galactosidase (SA-β-Gal) increased significantly after incubation with postprandial triglyceride-rich lipoprotei…

    📄 PubMed で読む (PMID: 33316776)
  • Lipid Metabolism-Signaling Crosstalk in Metabolic Disease and Aging: Mechanisms and Therapeutic Targets.

    Paalki Sethi, Awdhesh Kumar Mishra, Shampa Ghosh 他 · Nutrients · 2025

    Lipid metabolism and lipid-derived signaling together ensure cellular and systemic homeostasis. Their dysregulation causes obesity, type 2 diabetes, cardiovascular disease, NAFLD/MASH, and neurodegeneration throughout life. This review integrates central pathways, such as ACC-FASN-mediated de novo lipogenesis, lipid-droplet lipolysis, and mitochondrial and peroxisomal β-oxidation, and their regula…

    📄 PubMed で読む (PMID: 41373990)