Oat Beta Glucan Cholesterol Meta-Analysis Evidence Table

Structured evidence table for Oat Beta Glucan Cholesterol Meta-Analysis, generated from 2 reusable source documents in the Migaku knowledge base.

topicclaimevidence levelcitationsource
Oat Beta Glucan Cholesterol Meta-AnalysisCow's milk compared to oat drink and its implications for lipid profile- a pilot randomized controlled trial.2Rosendahl-Riise H (2026)Cow's milk compared to oat drink and its implications for lipid profile- a pilot randomized controlled trial.
Oat Beta Glucan Cholesterol Meta-AnalysisFunctional prediction analysis specifically linked this microbial shift to the modulation of Akkermansia -associated metabolic pathways, which subsequently facilitated the activation of host metabolic networks to combat lipid deposition and systemic metabolic stress.4Guo Z (2026)Combined Oat β-Glucan and Soy Protein Isolate Reprogram Gut Microbiota and Improve Metabolic Dysfunction in Diet-Induced Obesity.
Oat Beta Glucan Cholesterol Meta-AnalysisBackground/objectives Although plant-derived dietary fiber and protein are favorable factors for improving host metabolic disorders, it remains unclear whether these two macronutrients exhibit synergistic health benefits.4Guo Z (2026)Combined Oat β-Glucan and Soy Protein Isolate Reprogram Gut Microbiota and Improve Metabolic Dysfunction in Diet-Induced Obesity.
Oat Beta Glucan Cholesterol Meta-AnalysisMethods To address this gap, utilizing oat dietary fiber (GLU) and soybean protein (SBP) as representative bioactive models, we investigated the effects of 5% GLU, 20% SBP, and their combined supplementation on high-fat diet (HFD)-induced metabolic dysregulation in C57BL/6J mice.4Guo Z (2026)Combined Oat β-Glucan and Soy Protein Isolate Reprogram Gut Microbiota and Improve Metabolic Dysfunction in Diet-Induced Obesity.

Source documents

  1. Cow's milk compared to oat drink and its implications for lipid profile- a pilot randomized controlled trial.
  2. Combined Oat β-Glucan and Soy Protein Isolate Reprogram Gut Microbiota and Improve Metabolic Dysfunction in Diet-Induced Obesity.