Research Keyword: type 2 diabetes

A Review on the Structure and Anti-Diabetic (Type 2) Functions of β-Glucans

β-glucans are special sugar molecules found in foods like mushrooms, oats, and barley that can help control type 2 diabetes. These molecules work by two main methods: slowing down how quickly nutrients are absorbed in the digestive system, and blocking enzymes that break down carbohydrates into sugars. The shape and size of β-glucan molecules are very important—different structures have different effects on blood sugar control.

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Hypoglycemic Properties of Leccinum scabrum Extracts—An In Vitro Study on α-Glucosidase and α-Amylase Inhibition and Metabolic Profile Determination

Researchers tested birch bolete mushrooms (Leccinum scabrum) for diabetes-fighting properties. They found that extracts from this edible mushroom were exceptionally effective at blocking enzymes that break down carbohydrates, potentially helping control blood sugar levels. The study identified key beneficial compounds including healthy fats and plant alkaloids, suggesting the mushroom could become a functional food or dietary supplement for managing type-2 diabetes.

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The Impact of Psilocybin on High Glucose/Lipid-Induced Changes in INS-1 Cell Viability and Dedifferentiation

Researchers tested whether psilocybin, a compound from magic mushrooms, could protect pancreatic β-cells (which produce insulin) from damage caused by high glucose and fat levels. Using laboratory cells, they found that psilocybin reduced β-cell death by preventing apoptosis and showed promise in reducing dedifferentiation (when cells lose their specialized functions). However, psilocybin didn’t restore the cells’ ability to respond to glucose by releasing insulin.

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The Therapeutic Effect and Mechanism of Traditional Chinese Medicine in Type 2 Diabetes Mellitus and Its Complications

Traditional Chinese Medicine uses various herbs and plant compounds to treat Type 2 diabetes by improving how the body controls blood sugar and protects the pancreas. Many common TCM herbs like ginseng, rehmannia, and coptis work through natural mechanisms that reduce inflammation, protect cells from damage, and improve how the body uses insulin. Research shows TCM may also help prevent or reduce diabetes-related complications affecting the eyes, kidneys, and nerves. These herbal treatments offer potential benefits with fewer side effects compared to conventional medications.

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Neutral Polysaccharides From Hohenbuehelia serotina With Hypoglycemic Effects in a Type 2 Diabetic Mouse Model

Researchers extracted and studied special compounds called polysaccharides from H. serotina mushrooms. They found that these compounds significantly reduced blood sugar levels in mice with type 2 diabetes and also protected the liver. The study shows that mushroom polysaccharides could be a safe, natural alternative to existing diabetes medications with fewer side effects.

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Synergistic target network construction and dynamic simulation analysis based on a prospective systems pharmacology strategy

Researchers used computer-based methods to study how Sang Huang, a traditional medicinal fungus, might help treat type 2 diabetes. They identified 17 active compounds in the fungus and found that a key component called estradiol dipropionate could improve insulin sensitivity and glucose control by activating specific protein pathways. The study suggests Sang Huang could be a promising natural treatment for diabetes, though more laboratory and animal testing is needed.

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Novel Approaches in Glucose and Lipid Metabolism Disorder Therapy: Targeting the Gut Microbiota–Bile Acid Axis

Your gut bacteria play a key role in how your body manages blood sugar and fats, working through molecules called bile acids. Researchers have discovered that certain foods, supplements, and herbs can improve this gut bacteria-bile acid interaction to help prevent or treat diabetes and obesity. This review explains how these natural interventions work and suggests promising new ways to treat metabolic diseases by harnessing your gut health.

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