Fungi have been recognized for their medicinal properties for centuries, playing critical roles in both traditional and modern medical systems. Ancient practices, such as Ayurveda and Traditional Chinese Medicine (TCM), have utilized fungi for their therapeutic properties, while modern pharmacology has harnessed fungal metabolites to develop groundbreaking drugs. This study aims to provide a comprehensive overview of the medicinal applications of fungi, emphasizing their role in traditional medicine systems, modern drug development, and potential mechanisms of action. It also addresses the challenges and prospects of integrating fungal‐based therapies into the healthcare system. A comprehensive analysis of classical medicinal texts and contemporary scientific literature identified key fungal species, their bioactive compounds, and the underlying mechanisms of their therapeutic effects. Fungal species such as Ganoderma lucidum , Cordyceps sinensis , and Trametes versicolor have a long‐standing tradition in traditional medicine for enhancing the immune system and promoting health restoration. Modern pharmacology has leveraged fungal metabolites, such as penicillin and cyclosporine, revolutionizing the development of antibiotics and immunosuppressants. Fungi play a crucial role in addressing global health challenges through their diverse mechanisms of action, including immune modulation, anti‐inflammatory pathways, and direct antimicrobial effects. Their bioactive compounds exhibit unique therapeutic properties, making them valuable in combating diseases and infections. As a bridge between traditional wisdom and modern science, fungi encapsulate centuries of indigenous knowledge about their medicinal uses. Integrating this traditional understanding with advanced biotechnological tools enables the discovery of novel applications for fungal metabolites. This synergy offers sustainable and innovative solutions for pressing health issues, paving the way for breakthroughs in pharmaceuticals, therapeutics, and global healthcare systems.
Mahajon et al. (Wed,) studied this question.