Cordyceps, Caterpillar Fungus · 2025 · Review
High relevanceThe Genus Cordyceps Sensu Lato: Their Chemical Constituents, Biological Activities, and Therapeutic Effects on Air Pollutants Related to Lung and Vascular Diseases.
Ophiocordyceps sinensis
Key points
- Air pollutants are significant environmental factors that contribute to the exacerbation of respiratory, cardiopulmonary, and skin diseases in East Asia, and their impact is based on particle size
- Natural products represent a promising and sustainable strategy for reducing the adverse effects of air pollutants on health
- The physiological effects of Cordyceps species are well documented and attributed to their chemical constituents, such as cordycepin, polysaccharides, cordymin, glycoprotein, ergosterol, and other bioactive extracts
- Cordyceps supplementation may support lung health and enhance respiratory function
- Although further clinical data are necessary, many preclinical studies have found a connection between Cordyceps and improved lung health
- In addition, preclinical and clinical studies have indicated that Cordyceps and its derivatives (e.g., Ningxinbao, Corbrin, and Jinshuibao capsules) protect against vascular diseases by modulating key molecular pathways
Metadata-grounded summary
Citation abstract
Air pollutants are significant environmental factors that contribute to the exacerbation of respiratory, cardiopulmonary, and skin diseases in East Asia, and their impact is based on particle size. Natural products represent a promising and sustainable strategy for reducing the adverse effects of air pollutants on health. Cordyceps spp. have been integral to traditional Chinese medicine. Recently, their fruiting bodies and related supplements have gained popularity. The physiological effects of Cordyceps species are well documented and attributed to their chemical constituents, such as cordycepin, polysaccharides, cordymin, glycoprotein, ergosterol, and other bioactive extracts. Cordyceps supplementation may support lung health and enhance respiratory function. Although further clinical data are necessary, many preclinical studies have found a connection between Cordyceps and improved lung health. In addition, preclinical and clinical studies have indicated that Cordyceps and its derivatives (e.g., Ningxinbao, Corbrin, and Jinshuibao capsules) protect against vascular diseases by modulating key molecular pathways. This review provides insights into the potential of Cordyceps for clinical application in the management of air pollutant-related respiratory and vascular diseases.
Citation
Park HJ (2025). The Genus Cordyceps Sensu Lato: Their Chemical Constituents, Biological Activities, and Therapeutic Effects on Air Pollutants Related to Lung and Vascular Diseases. Life (Basel, Switzerland) https://doi.org/10.3390/life15060935 PMID: 40566586
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