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Showing results for: "bacterial lysates" (11 results)

Repurposing Medicines: When Old Drugs Find New Routes
Health & Medicine

Repurposing Medicines: When Old Drugs Find New Routes

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

Debunking the myths surrounding toilet infections
Health & Medicine

Debunking the myths surrounding toilet infections

As a pharmacist during clinical clerking, I frequently encounter patients who use the term “toilet infections” to describe symptoms that clinically align with bacterial vaginosis, urinary tract infections, or yeast infections. This widespread misconception often stems from the assumption that symptoms occurring after the use of public toilets must be caused by them.

How Scientists Are Discovering the Next Generation of Tuberculosis Drugs
Science & Research

How Scientists Are Discovering the Next Generation of Tuberculosis Drugs

Tuberculosis (TB) remains one of the world's deadliest infectious diseases, claiming over a million lives each year. TB is the deadliest infectious disease known today, claiming more lives than COVID-19. TB is caused by the bacterium Mycobacterium tuberculosis. TB spreads through the air when infected people breathe, cough, sneeze,

Nourishing Wounds: How Micronutrients Drive Healing
Health & Medicine

Nourishing Wounds: How Micronutrients Drive Healing

Wound healing is a complex and dynamic biological process that occurs through four overlapping phases: hemostasis, inflammation, proliferation, and maturation. To repair tissue damage, the body works intensively, thereby significantly increasing cellular metabolic demands.

AUC-Guided Vancomycin Monitoring Explained: Why precision is redefining antibiotic dosing
Health & Medicine

AUC-Guided Vancomycin Monitoring Explained: Why precision is redefining antibiotic dosing

Vancomycin is an essential glycopeptide antibiotic used to treat life-threatening infections caused by Gram-positive bacteria, particularly Methicillin-Resistant Staphylococcus aureus (MRSA). It functions by inhibiting bacterial cell-wall synthesis and is still the most potent drug to be used when others fail (Patel, Preuss, & Bernice, 2023).