Plant Comparison
Water Hyssop vs Motherwort
A side-by-side comparison of two medicinal plants — every documented constituent, action, use, safety note and cited source, assembled automatically from the Omnia Sana database.
At a glance
Water Hyssop and Motherwort: they share 4 indicated uses (arthritis / joint pain, inflammation (general), insomnia / sleeplessness, …); 3 pharmacological actions in common.
Evidence face-off — shared uses
| Condition | Water Hyssop | Motherwort | Verdict |
|---|---|---|---|
| Arthritis / joint pain | 1/10 | 1/10 | Comparable evidence |
| Inflammation (general) | 1/10 | 1/10 | Comparable evidence |
| Insomnia / sleeplessness | 1/10 | 2/10 | Comparable evidence |
| Skin irritation | 1/10 | 1/10 | Comparable evidence |
Evidence scores (1–10) are computed from the tier of each cited source. “Comparable” means the two scores are within one point. Follow a score to its detailed sources.
Key Constituents
Leonurine and related iridoid/alkaloid-type constituents are considered the principal cardioactive and uterotonic compounds.
Antioxidant constituents contributing to the plant's anti-inflammatory activity.
Bitter diterpenes, shared with related Lamiaceae bitters, contributing to the traditional digestive and cardiac reputation.
Pharmacological Actions
Bacopa monnieri (Brahmi) extract and its saponins (bacopaside II, bacopasaponins) inhibit proliferation and induce apoptosis in colon and lung cancer cells (preclinical).
Traditional & Indicated Uses
inferred from anti-inflammatory action
Bacopaside II from Bacopa monnieri inhibits colon cancer cell growth via cell-cycle arrest and apoptosis (aquaporin-1 blockade), and its bacopasaponins are cytotoxic to lung (PC9) and colon (SW620) cancer cells (preclinical).
inferred from neuroprotective action
inferred from anti-inflammatory action
inferred from sedative action
inferred from anti-inflammatory action
inferred from anti-inflammatory action
inferred from anti-inflammatory action
inferred from sedative action
inferred from antispasmodic action
Safety, Cautions & Contraindications
Generally well tolerated at standard doses. The most commonly reported side effects are gastrointestinal — nausea, stomach cramps, and increased bowel movements — which can be reduced by taking with food. Not recommended during pregnancy. May interact with medications that increase acetylcholine levels (e.g. Alzheimer's medications). Use with caution in thyroid conditions, as bacopa may increase thyroid hormone levels.
Contraindicated in pregnancy (uterine stimulant). Avoid in heavy menstrual bleeding. May enhance anticoagulant and antihypertensive drug effects. Avoid in thyroid disorders. Generally well tolerated in normal doses for short-term use.
Duke (2002) rates motherwort as ++ and notes hypotensive, cardiotonic (negative chronotropic), anti-aggregant, and sedative activities at the experimental level (score 1). The plant is traditionally used for heart palpitations, hypertension, and menstrual regulation in European herbalism. Duke emphasizes strong safety caution: motherwort has documented oxytocic (uterine-stimulating) activity and is strictly contraindicated in pregnancy. It may also enhance the effects of cardiac medications and sedatives (Duke, 2002).
External Ids
Botanical Description
Low, creeping, succulent perennial herb that roots at the nodes as it spreads across wet ground. The leaves are small, fleshy, spatula-shaped and arranged oppositely along the trailing stems. Small, pale lavender to white, four- to five-petalled flowers are borne singly in the leaf axils.[4]
Tall, upright perennial herb with deeply palmately lobed lower leaves (giving a lion's-paw appearance, the source of the genus name) and progressively less-divided upper leaves. Small, pink to pale purple, spiny-toothed, two-lipped flowers are borne in dense whorls up the square stem.[1]
Habitat
Grows in wet, marshy ground, muddy shorelines, rice paddies and shallow water throughout tropical and subtropical regions of Asia, and also found in parts of Africa, Australia and the Americas.[4]
Grows on waste ground, roadsides, hedgerows and near old dwellings; native to Central Asia and southeastern Europe and long naturalised across Europe and North America.[1]
Harvesting
The whole plant (leaf and trailing stem) is harvested during active growth, typically cut a few centimetres above the mud or water line, and dried or used fresh.
The flowering aerial parts (leaf, stem and flower) are cut in summer as the plant comes into flower, and dried in a warm, shaded, airy place.[1]
Traditional Uses
Bacopa (brahmi) is a classic Ayurvedic 'medhya rasayana' (brain-nourishing) herb, traditionally used to support memory, learning and mental clarity, and as a calming nervine for anxiety and disturbed sleep. This traditional cognitive reputation is now supported by randomised controlled trials of standardised extracts.[1, 4]
Motherwort has a long European and Asian herbal tradition, reflected in its name, as a gynaecological and cardiac tonic, traditionally used for heart palpitations and nervous cardiac complaints, menstrual irregularities and cramps, and as a calming nervine for anxiety and to ease childbirth and postpartum recovery.[1, 6]
Preparations
Dosage
The EU herbal monograph gives a single dose of 1.5-4.5 g of the comminuted herb for tea preparation, for a daily dose of 3-10 g, in adults and elderly; a 1:5 tincture in 45% V/V ethanol at 2-6 mL three times daily and a liquid extract at 2-4 mL three times daily are also listed. If symptoms persist longer than 4 weeks a healthcare practitioner should be consulted. Not recommended under 18 years. Educational reference only, not a prescription.
References
Drug Class Interactions
Lookalikes Review
References & Sources
- Calabrese, C., Gregory, W.L., Leo, M., Kraemer, D. et al (2008) 'Effects of a standardized Bacopa monnieri extract on cognitive performance, anxiety, and depression in the elderly: a randomized, double-blind, placebo-controlled trial', Journal of Alternative and Complementary Medicine, 14(6), pp. 707-713. doi:10.1089/acm.2008.0018 Randomized trial
https://doi.org/10.1089/acm.2008.0018 - Lorca, C., Mulet, M., Arévalo-Caro, C., Sanchez, M.Á. et al (2022) 'Plant-derived nootropics and human cognition: A systematic review', Critical Reviews in Food Science and Nutrition, 63(22), pp. 5521-5545. doi:10.1080/10408398.2021.2021137 Meta-analysis / review
https://doi.org/10.1080/10408398.2021.2021137 - Fatima, U., Roy, S., Ahmad, S., Ali, S. et al (2022) 'Pharmacological attributes of Bacopa monnieri extract: Current updates and clinical manifestation', Frontiers in Nutrition, 9, pp. 972379. doi:10.3389/fnut.2022.972379 Traditional / reference
https://doi.org/10.3389/fnut.2022.972379 - Kongkeaw, C., Dilokthornsakul, P., Thanarangsarit, P., Limpeanchob, N. and Norman Scholfield, C (2014) 'Meta-analysis of randomized controlled trials on cognitive effects of Bacopa monnieri extract', Journal of Ethnopharmacology, 151(1), pp. 528-535. doi:10.1016/j.jep.2013.11.008 Meta-analysis / review
https://doi.org/10.1016/j.jep.2013.11.008 - Vinod, A., Sathianarayanan, S., Babu, A.E., Sadanandan, P., Venu, A.K. and Venkidasamy, B (2022) 'Bacopa monnieri for disorders affecting brain: current perspectives', Current Topics in Medicinal Chemistry, 22(23), pp. 1909-1929. doi:10.2174/1568026622666220119111538 Meta-analysis / review
https://doi.org/10.2174/1568026622666220119111538 - Dubey, T., Kushwaha, P., Thulasiram, H.V., Chandrashekar, M. and Chinnathambi, S (2023) 'Bacopa monnieri reduces Tau aggregation and Tau-mediated toxicity in cells', International Journal of Biological Macromolecules, 234, pp. 123171. doi:10.1016/j.ijbiomac.2023.123171 Preclinical
https://doi.org/10.1016/j.ijbiomac.2023.123171 - Shalini, V.T., Neelakanta, S.J. and Sriranjini, J.S (2021) 'Neuroprotection with Bacopa monnieri - a review of experimental evidence', Molecular Biology Reports, 48(3), pp. 2653-2668. doi:10.1007/s11033-021-06236-w Meta-analysis / review
https://doi.org/10.1007/s11033-021-06236-w - Simpson, T., Pase, M. and Stough, C (2015) 'Bacopa monnieri as an antioxidant therapy to reduce oxidative stress in the aging brain', Evidence-Based Complementary and Alternative Medicine, 2015, pp. 615384. doi:10.1155/2015/615384 Meta-analysis / review
https://doi.org/10.1155/2015/615384 - Saini, N., Singh, D. and Sandhir, R (2019) 'Bacopa monnieri prevents colchicine-induced dementia by anti-inflammatory action', Metabolic Brain Disease, 34(2), pp. 505-518. doi:10.1007/s11011-018-0332-1 Preclinical
https://doi.org/10.1007/s11011-018-0332-1 - Dubey, T. and Chinnathambi, S (2019) 'Brahmi (Bacopa monnieri): an ayurvedic herb against the Alzheimer's disease', Archives of Biochemistry and Biophysics, 676, pp. 108153. doi:10.1016/j.abb.2019.108153 Meta-analysis / review
https://doi.org/10.1016/j.abb.2019.108153 - Bhandari, P., Kumar, N., Singh, B. and Kaul, V.K (2007) 'Cucurbitacins from Bacopa monnieri', Phytochemistry, 68(9), pp. 1248-1254. doi:10.1016/j.phytochem.2007.03.013 Preclinical
https://doi.org/10.1016/j.phytochem.2007.03.013 - Sivaramakrishna, C., Rao, C.V., Trimurtulu, G., Vanisree, M. and Subbaraju, G.V (2005) 'Triterpenoid glycosides from Bacopa monnieri', Phytochemistry, 66(23), pp. 2719-2728. doi:10.1016/j.phytochem.2005.09.016 Preclinical
https://doi.org/10.1016/j.phytochem.2005.09.016 - World Health Organization (2002) 'WHO Monographs on Selected Medicinal Plants'. Traditional / reference
https://scholar.google.com/scholar?q=WHO%20Monographs%20on%20Selected%20Medicinal%20Plants - Smith, E. and Palethorpe, H.M. and Tomita, Y. and Pei, J.V. and Townsend, A.R. and Price, T.J. and Young, J.P. and Yool, A.J. and Hardingham, J.E (2018) 'The Purified Extract from the Medicinal Plant Bacopa monnieri, Bacopaside II, Inhibits Growth of Colon Cancer Cells In Vitro by Inducing Cell Cycle Arrest and Apoptosis', Cells, 7(7), pp. 81. doi:10.3390/cells7070081 Preclinical
https://doi.org/10.3390/cells7070081 - Yen, D.T.H. and Cuc, N.T. and Tai, B.H. and Van Kiem, P. and Hoang Duc, M. and Nhiem, N.X. and Cho, S.-H. and Jeong, S.B. and Seo, Y. and Park, S (2022) 'Two new triterpenoid glycosides from Bacopa monnieri and their cytotoxic activity', Natural Product Research, 38(7), pp. 1120-1126. doi:10.1080/14786419.2022.2132498 Preclinical
https://doi.org/10.1080/14786419.2022.2132498 - Calabrese, C., Gregory, W.L., Leo, M., Kraemer, D., Bone, K. and Oken, B (2008) 'Effects of a standardized Bacopa monnieri extract on cognitive performance, anxiety, and depression in the elderly', 14(6), pp. 707--713. Randomized trial
https://scholar.google.com/scholar?q=Effects%20of%20a%20standardized%20Bacopa%20monnieri%20extract%20on%20cognitive%20performance%2C%20anxiety%2C%20and%20depression%20in%20the%20elderly - Stough, C., Lloyd, J., Clarke, J., Downey, L.A., Hutchison, C.W., Rodgers, T. and Nathan, P.J (2001) 'The chronic effects of an extract of Bacopa monniera (Brahmi) on cognitive function in healthy human subjects', 156(4), pp. 481--484. doi:10.1007/s002130100815 Randomized trial
https://doi.org/10.1007/s002130100815 - Duke, J.A (2002) 'Handbook of Medicinal Herbs, Second Edition'. Traditional / reference
https://scholar.google.com/scholar?q=Handbook%20of%20Medicinal%20Herbs%2C%20Second%20Edition - Ghasemzadeh Rahbardar, M. and Hosseinzadeh, H (2024) 'Therapeutic potential of hypnotic herbal medicines: A comprehensive review', Phytotherapy Research, 38(6), pp. 3037-3059. doi:10.1002/ptr.8201 Meta-analysis / review
https://doi.org/10.1002/ptr.8201 - Block, K.I., Gyllenhaal, C. and Mead, M.N (2004) 'Safety and efficacy of herbal sedatives in cancer care', Integrative Cancer Therapies, 3(2), pp. 128-148. doi:10.1177/1534735404265003 Meta-analysis / review
https://doi.org/10.1177/1534735404265003
- Fierascu, R.C., Fierascu, I., Ortan, A., Fierascu, I.C. and others (2019) 'Leonurus cardiaca L. as a Source of Bioactive Compounds: An Update of the European Medicines Agency Assessment Report (2010)', BioMed Research International, 2019, pp. 4303215. doi:10.1155/2019/4303215 Traditional / reference
https://doi.org/10.1155/2019/4303215 - Wojtyniak, K., Szymanski, M. and Matlawska, I (2013) 'Leonurus cardiaca L. (motherwort): a review of its phytochemistry and pharmacology', Phytotherapy Research, 27(8), pp. 1115-1120. doi:10.1002/ptr.4850 Traditional / reference
https://doi.org/10.1002/ptr.4850 - Kuchta, K., Volk, R.B. and Rauwald, H.W (2013) 'Stachydrine in Leonurus cardiaca, Leonurus japonicus, Leonotis leonurus: detection and quantification by instrumental HPTLC and 1H-qNMR analyses', Pharmazie, 68(7), pp. 534-540. Available at: https://pubmed.ncbi.nlm.nih.gov/23923634/ Preclinical
https://pubmed.ncbi.nlm.nih.gov/23923634/ - Kuchta, K., Volk, R.B. and Rauwald, H.W (2012) 'Leonurus japonicus, Leonurus cardiaca, Leonotis leonurus: a novel HPLC study on the occurrence and content of the pharmacologically active guanidino derivative leonurine', Pharmazie, 67(12), pp. 973-979. Available at: https://pubmed.ncbi.nlm.nih.gov/23346757/ Preclinical
https://pubmed.ncbi.nlm.nih.gov/23346757/ - Koshovyi, O., Raal, A., Kireyev, I., Tryshchuk, N. and others (2021) 'Phytochemical and Psychotropic Research of Motherwort (Leonurus cardiaca L.) Modified Dry Extracts', Plants (Basel), 10(2), pp. 230. doi:10.3390/plants10020230 Preclinical
https://doi.org/10.3390/plants10020230 - Angeloni, S., Spinozzi, E., Maggi, F., Sagratini, G. and others (2021) 'Phytochemical Profile and Biological Activities of Crude and Purified Leonurus cardiaca Extracts', Plants (Basel), 10(2), pp. 195. doi:10.3390/plants10020195 Preclinical
https://doi.org/10.3390/plants10020195 - Sadowska, B., Wieckowska-Szakiel, M., Paszkiewicz, M. and Rozalska, B (2019) 'Molecular Mechanisms of Leonurus cardiaca L. Extract Activity in Prevention of Staphylococcal Endocarditis - Study on in Vitro and ex Vivo Models', Molecules, 24(18), pp. 3318. doi:10.3390/molecules24183318 Preclinical
https://doi.org/10.3390/molecules24183318 - Kuchta, K., Hladikova, J., Thomsen, M., Nguyen, A.D. and others (2025) 'Phenolic and Iridoid Glycosides from Leonurus cardiaca L. and Their Effects on the alpha, delta, and gamma Subtypes of the PPAR System', Molecules, 30(2), pp. 419. doi:10.3390/molecules30020419 Preclinical
https://doi.org/10.3390/molecules30020419 - Pereira, O.R., Catarino, M.D., Afonso, A.F., Silva, A.M.S. and Cardoso, S.M (2019) 'Hepatoprotection of Leonurus cardiaca L., Leonurus japonicus Houtt. and Leonurus sibiricus L', Antioxidants (Basel), 8(8), pp. 267. doi:10.3390/antiox8080267 Preclinical
https://doi.org/10.3390/antiox8080267 - Kuchta, K., Ortwein, J. and Rauwald, H.W (2014) '1H-qNMR for direct quantification of stachydrine in Leonurus japonicus and L. cardiaca', Fitoterapia, 96, pp. 8-17. doi:10.1016/j.fitote.2014.03.023 Preclinical
https://doi.org/10.1016/j.fitote.2014.03.023 - European Medicines Agency (HMPC) (2010) 'Community herbal monograph on Leonurus cardiaca L., herba'. Available at: https://www.ema.europa.eu/en/documents/herbal-monograph/final-community-herbal-monograph-leonurus-cardiaca-l-herba_en.pdf Traditional / reference
https://www.ema.europa.eu/en/documents/herbal-monograph/final-community-herbal-monograph-leonurus-cardiaca-l-herba_en.pdf - Kowalchik, C. and Hylton, W (1998) 'Rodale'. Traditional / reference
https://scholar.google.com/scholar?q=Rodale - Prajapati, N.D., Purohit, S.S., Sharma, A.K. and Kumar, T (2003) 'A Handbook of Medicinal Plants'. Traditional / reference
https://scholar.google.com/scholar?q=A%20Handbook%20of%20Medicinal%20Plants - Shang, X. et al (2014) 'The genus Leonurus: traditional uses, phytochemistry and pharmacology', pp. 43--63. Traditional / reference
https://scholar.google.com/scholar?q=The%20genus%20Leonurus%3A%20traditional%20uses%2C%20phytochemistry%20and%20pharmacology - Duke, J.A (2002) 'Handbook of Medicinal Herbs, Second Edition'. Traditional / reference
https://scholar.google.com/scholar?q=Handbook%20of%20Medicinal%20Herbs%2C%20Second%20Edition - Ghasemzadeh Rahbardar, M. and Hosseinzadeh, H (2024) 'Therapeutic potential of hypnotic herbal medicines: A comprehensive review', Phytotherapy Research, 38(6), pp. 3037-3059. doi:10.1002/ptr.8201 Meta-analysis / review
https://doi.org/10.1002/ptr.8201 - Block, K.I., Gyllenhaal, C. and Mead, M.N (2004) 'Safety and efficacy of herbal sedatives in cancer care', Integrative Cancer Therapies, 3(2), pp. 128-148. doi:10.1177/1534735404265003 Meta-analysis / review
https://doi.org/10.1177/1534735404265003
Generated automatically from the Omnia Sana plant database and its cited sources. For educational purposes only — not medical advice. Always consult a qualified practitioner before using medicinal plants.