
Nutritional Psychiatry: Food Is Medicine
Explaining The Reciprocity Between Your Brain and Your Belly For the past decade, the scientific community has increased its focus on mental health disorders including anxiety, depression,
Showing results for: "food medicine" (76 results)

Explaining The Reciprocity Between Your Brain and Your Belly For the past decade, the scientific community has increased its focus on mental health disorders including anxiety, depression,

Antibiotic resistance is making common infections hard to treat. Learn why it happens, how it affects communities in Nigeria and beyond, and what we can do to protect these life-saving medicines.

How a 150-year-old food industry technique became essential for creating stable biologics and inhaled medicines, transforming liquid drugs into life-saving powders.

Vaccines need precise temperature control to work but maintaining the cold chain wastes half of all doses globally. New thermostable formulations could change everything.

Let's talk about Type 2 diabetes, its symptoms, risk factors, diagnosis, and the laboratory tests, including HbA1c and blood glucose, that help detect and monitor the condition.

Talk about hepatitis testing, including blood tests for hepatitis A, B, C, D and E, common markers, liver tests, and what positive or negative results mean.

Drug repurposing is reshaping medicine. Discover how changing a drug's route of administration — not the molecule itself — can unlock new therapeutic potential.

Too big, it hits your throat. Too small, you exhale it. The sweet spot delivers drugs exactly where they're needed.

Healthcare is changing faster than ever before. Thanks to breakthroughs in artificial intelligence (AI), genomics, and wearable technology, medicine is entering the era of smart health, where data, devices, and biology work together to create care tailored to the individual.

This architecture is essential for shielding neurons from toxins, pathogens, and fluctuations in the bloodstream, but it also creates a devastating bottleneck for modern medicine. More than 98% of small-molecule drugs and nearly all large biological therapeutics fail to cross the BBB in meaningful amounts, leaving many promising treatments for neurodegenerative disorders, brain tumors, and inflammatory diseases stranded in the circulation.

The gut microbiomeover 100 trillion microorganisms, communicates with the brain via the gut–brain axis, influencing mood, cognition, immunity, and stress regulation. Dysbiosis is linked to depression, anxiety, autism spectrum disorders, and neurodegenerative diseases, emphasizing its critical role in mental and neurological health.

Pain is a common problem for millions of people. Many take medications every day to help make their discomfort manageable. People often turn to over-the-counter remedies, and if these do not provide sufficient relief, some seek out their physician for help

Learn what dehydration does inside your body from brain function and circulation to temperature control, symptoms, risks, and prevention tips.

Smart nanoparticles are an exciting step forward in modern medicine especially nanomedicine. They help doctors be more precise in cancer treatment.

Plant mucilage is a thick, glue-like substance produced by plants that helps with seed germination, water and nutrient storage, and defense. Flax and chia seeds are rich sources of mucilage and have various applications in the food and pharmaceutical industries.

Nanotechnology is having a big impact on pharmaceutical sciences, and drug delivery systems are one area where this is most evident. Compared to conventional medication delivery methods, nanoparticles provide a number of benefits, including increased effectiveness and fewer adverse drug reactions.

Antibiotic resistance could kill 10 million annually by 2050. Discover how AI found Halicin, a molecule that kills superbugs humans couldn't defeat.

Messenger RNA (mRNA) vaccines represent one of the most significant scientific advances in modern therapeutics. Unlike conventional vaccines that use weakened or inactivated pathogens, mRNA vaccines deliver genetic instructions that enable host cells to synthesize a target antigen and stimulate an immune response.

Cell and gene therapies represent a seismic shift in healthcare. They promise to cure the incurable, restoring sight to the blind and erasing cancer from the blood. But this frontier is wild. It comes with biological price tags, potential genetic misfires, and a regulatory landscape that is still being mapped.

Disorders of Gut–Brain Interaction (DGBIs), such as Functional Dyspepsia (FD) and Irritable Bowel Syndrome (IBS), present a formidable clinical impasse due to their profoundly heterogeneous and multifactorial nature.