Disease: cardiovascular disease

Overcoming Solubility Challenges: Micronization of Berberine Using the GAS Antisolvent Technique

Berberine is a traditional medicinal compound that could treat many diseases but doesn’t work well in the body because it doesn’t dissolve in water. Researchers used a special technique with pressurized carbon dioxide to break berberine into much smaller particles. This made the particles dissolve 18% better in water, which could make berberine-based medicines more effective at treating diabetes, high cholesterol, and other conditions.

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Targeting Polycystic Ovary Syndrome (PCOS) Pathophysiology with Flavonoids: From Adipokine–Cytokine Crosstalk to Insulin Resistance and Reproductive Dysfunctions

Polycystic ovary syndrome (PCOS) is a common hormonal disorder affecting millions of women that causes irregular periods, infertility, and metabolic problems. Flavonoids are beneficial plant compounds found in fruits, vegetables, and tea that show promise in treating PCOS by improving insulin sensitivity, reducing inflammation, and balancing hormones. While current medications have limited benefits and side effects, flavonoid supplements could offer a safer, natural way to address multiple PCOS problems simultaneously. However, more large-scale clinical studies are needed to confirm their effectiveness and establish optimal dosing.

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Lysergic Acid Diethylamide (LSD) and the Heart: Exploring the Potential Impacts of LSD on Cardiovascular Function

This review examines how LSD affects the heart and blood vessels. While some evidence suggests LSD might protect against heart disease by reducing inflammation and blood clots, acute use can dangerously raise heart rate and blood pressure, and cause blood vessel constriction. Regular low-dose use raises concerns about potential valve damage. More research is needed to understand the full cardiovascular safety of LSD before it can be considered for medical use.

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Medicinal Mushrooms: Bioactive Compounds, Use, and Clinical Trials

This comprehensive review examines how medicinal mushrooms contain natural compounds that can boost immune function, fight cancer cells, reduce inflammation, and protect nerve cells. Different mushroom species like reishi, shiitake, and maitake contain various active substances such as beta-glucans and triterpenes that work through multiple biological pathways. While laboratory and animal studies show promising results, more human clinical trials are needed to confirm effectiveness and establish safe dosing guidelines.

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Unveiling roles of beneficial gut bacteria and optimal diets for health

Your gut bacteria are tiny living organisms that help digest food, support your immune system, and influence your overall health. Eating foods rich in fiber, fermented products like yogurt and kimchi, and colorful fruits and vegetables helps grow these beneficial bacteria. When your gut bacteria become unbalanced, it can lead to inflammation and various diseases, but eating the right foods can restore balance and improve your health.

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Effects of adding food ingredients rich in dietary fiber and polyphenols on the microstructure, texture, starch digestibility and functional properties of Chinese steamed bun

Researchers created an improved version of Chinese steamed bun by adding dragon fruit, kudzu root, and a medicinal mushroom called Hericium erinaceus. This new bun has much more fiber and antioxidants, and importantly, it causes much smaller increases in blood sugar after eating compared to traditional steamed buns. The study shows it can help promote beneficial gut bacteria and may be beneficial for people managing diabetes and metabolic health.

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Glyoxalase 1 Inducer, trans-Resveratrol and Hesperetin–Dietary Supplement with Multi-Modal Health Benefits

A dietary supplement combining trans-resveratrol and hesperetin activates a cellular defense mechanism called Nrf2, which increases production of an enzyme (Glo1) that helps eliminate harmful byproducts of sugar metabolism. This supplement improved multiple aspects of health in studies, including better blood sugar control, reduced inflammation, and improved liver function. The combination works better than either ingredient alone, and the trans form of resveratrol is much more effective than the cis form.

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Special Issue: Marine-Derived Compounds Applied in Cardiovascular Disease

This collection of studies explores how compounds from ocean sources like seaweed, fish, shrimp, and microalgae can help protect heart health and prevent cardiovascular diseases. Researchers examined various marine ingredients and found they can reduce inflammation, lower cholesterol, reduce blood pressure, and prevent blood clots. The findings suggest that marine-derived products could become safer, more affordable alternatives or complements to current heart disease medications while supporting sustainable ocean resource use.

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Antioxidant activity and phytochemical analysis of different varieties of barley (Hordeum vulgare L.) available in Pakistan

Researchers analyzed five varieties of barley grown in Pakistan to determine their nutritional and health benefits. They found that all varieties contained beneficial compounds with antioxidant properties, with Jau-21 performing exceptionally well. These barley varieties are rich in protein, fiber, minerals, and compounds that may help protect against diseases like diabetes and heart disease, making them promising ingredients for developing healthy food products.

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Molecular docking as a tool for the discovery of molecular targets of nutraceuticals in diseases management

This review explains how scientists use computer simulations to understand how natural food compounds (called nutraceuticals) interact with disease-causing molecules in the body. By using molecular docking software, researchers can predict which compounds might fight diseases like cancer and heart disease before conducting expensive laboratory tests. The review shows that many common foods like turmeric, grapes, and green tea contain compounds that could potentially treat various diseases by targeting specific proteins and pathways involved in disease development.

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