Common names in 23 European languages →
The complete database record: 4 documented constituents, 1 pharmacological action, with 9 cited sources.
Botanical Description
Perennial, spore-bearing plant distinguished within the horsetail genus by its finely and repeatedly branched sterile stems, in which each primary whorled branch itself bears further fine side-branches, giving the plant an especially soft, feathery, almost fern-like appearance. It shares the deep black jointed rhizome typical of the genus.
Habitat & Distribution
Grows in damp woodland, woodland margins and shaded, boggy ground, typically in cooler northern and upland regions; found across Europe, Asia and North America.
Harvesting
The aerial (sterile) stems are cut in summer and dried; because this species is easily confused with other horsetails, including the more toxic marsh horsetail, careful identification is essential before wild-harvesting.
Key Constituents
Pharmacological Actions
Traditional Use & History
Wood horsetail shares the broader horsetail genus's traditional folk reputation as a diuretic, astringent and wound-healing herb, though the species itself is very little studied and has no dedicated clinical evidence base of its own.
Safety, Cautions & Contraindications
Wood horsetail (Equisetum sylvaticum) shares the horsetail genus's traditional reputation as a diuretic, astringent and wound-healing herb, but the species itself is very little studied and no clinical data exist. As with other horsetails, prolonged use is cautioned because the genus contains the enzyme thiaminase, which can degrade vitamin B1; thiaminase-inactivated preparations are preferred. Not evaluated for safety in pregnancy or lactation.
Dangerous Lookalikes
Harvest Readiness
[6]
External Identifiers
References & Sources
- Wang, Z., Tian, Y., Sugimoto, S., Yamano, Y., Kawakami, S., Otsuka, H. and Matsunami, K (2022) 'Four new glucosides from the aerial parts of Equisetum sylvaticum', Journal of Natural Medicines, 76(4), pp. 832-841. doi:10.1007/s11418-022-01643-0 Preclinical
https://doi.org/10.1007/s11418-022-01643-0 - Batir-Marin, D., Boev, M., Cioanca, O., Mircea, C., Burlec, A.F., Beppe, G.J., Spac, A., Corciova, A., Hritcu, L. and Hancianu, M (2021) 'Neuroprotective and antioxidant enhancing properties of selective Equisetum extracts', Molecules, 26(9), pp. 2565. doi:10.3390/molecules26092565 Preclinical
https://doi.org/10.3390/molecules26092565 - Batir-Marin, D., Mircea, C., Boev, M., Burlec, A.F., Corciova, A., Fifere, A., Iacobescu, A., Cioanca, O., Verestiuc, L. and Hancianu, M (2021) 'In vitro antioxidant, antitumor and photocatalytic activities of silver nanoparticles synthesized using Equisetum species: a green approach', Molecules, 26(23), pp. 7325. doi:10.3390/molecules26237325 Preclinical
https://doi.org/10.3390/molecules26237325 - Patova, O.A., Smirnov, V.V., Golovchenko, V.V., Vityazev, F.V., Shashkov, A.S. and Popov, S.V (2019) 'Structural, rheological and antioxidant properties of pectins from Equisetum arvense L. and Equisetum sylvaticum L', Carbohydrate Polymers, 209, pp. 239-249. doi:10.1016/j.carbpol.2018.12.098 Preclinical
https://doi.org/10.1016/j.carbpol.2018.12.098 - Fry, S.C., Nesselrode, B.H.W.A., Miller, J.G. and Mewburn, B.R (2008) 'Mixed-linkage (1->3,1->4)-beta-D-glucan is a major hemicellulose of Equisetum (horsetail) cell walls', New Phytologist, 179(1), pp. 104-115. doi:10.1111/j.1469-8137.2008.02435.x Preclinical
https://doi.org/10.1111/j.1469-8137.2008.02435.x - Dallwitz, M. J. and Paine, T. A. and Zurcher, E. J 'Horsetails of Britain and Ireland - Equisetum sylvaticum L'. Available at: https://www.delta-intkey.com/britht/www/sylvatic.htm Traditional / reference
https://www.delta-intkey.com/britht/www/sylvatic.htm - NatureSpot 'Marsh Horsetail - Equisetum palustre'. Available at: https://www.naturespot.org/species/marsh-horsetail Traditional / reference
https://www.naturespot.org/species/marsh-horsetail - Muller, J. and Puttich, P.M. and Beuerle, T (2020) 'Variation of the Main Alkaloid Content in Equisetum palustre L. in the Light of Its Ontogeny', Toxins, 12(11), pp. 710. doi:10.3390/toxins12110710 Preclinical
https://doi.org/10.3390/toxins12110710 - Ibi, A. and Du, M. and Beuerle, T. and Melchert, D. and Solnier, J. and Chang, C (2022) 'A Multi-Pronged Technique for Identifying Equisetum palustre and Equisetum arvense - Combining HPTLC, HPLC-ESI-MS/MS and Optimized DNA Barcoding Techniques', Plants, 11(19), pp. 2562. doi:10.3390/plants11192562 Preclinical
https://doi.org/10.3390/plants11192562
Selected studies & references
All 5 studies in the Knowledge Finder →
This profile is assembled automatically from the Omnia Sana plant database, which we curate by hand. How this site is built.