Plant Comparison

Greater Burdock vs Fenugreek

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.

First plant
Second plant
Show:
Plant AGreater BurdockArctium lappaAsteraceaeFull monograph →
Plant BFenugreekTrigonella foenum-graecumFabaceaeFull monograph →

At a glance

Greater Burdock and Fenugreek: they share 4 indicated uses (arthritis / joint pain, cancer (anticancer research), inflammation (general), …); 2 pharmacological actions in common.

Greater BurdockFenugreek
Constituents14
Pharmacological actions54
Indicated uses78
Safety notes23
Cited sources2417
Indicated uses
Only Greater Burdock
BloatingEczemaIndigestion
Shared (4)
Arthritis / joint painCancer (anticancer research)Inflammation (general)Skin irritation
Only Fenugreek
Blood sugar / diabetes supportCardiovascular / heart healthFertilityMetabolic support
Pharmacological actions
Only Greater Burdock
AntioxidantDigestive aidEmollient / skin-soothing
Shared (2)
Anti-inflammatoryAnticancer (preclinical)
Only Fenugreek
Antidiabetic (blood-sugar lowering)Aphrodisiac

Evidence face-off — shared uses

ConditionGreater BurdockFenugreekVerdict
Arthritis / joint pain2/108/10Stronger for Fenugreek
Cancer (anticancer research)2/107/10Stronger for Fenugreek
Inflammation (general)2/107/10Stronger for Fenugreek
Skin irritation2/107/10Stronger for Fenugreek

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

Inulin-type fructans and caffeoylquinic acids[1, 4, 6, 8, 10, 11]

Burdock root is a rich source of prebiotic inulin-type fructans (fructooligosaccharides) along with chlorogenic and caffeic acids, the lignans arctiin and arctigenin, cynarine and quercetin, which underlie its antioxidant, anti-inflammatory and gut-supporting activity.

Chlorogenic acidCaffeic acidArctigenin / arctiinQuercetinPolysaccharidesLignansInulin
Steroidal saponins (diosgenin)[12]

Thought to contribute to the antidiabetic and cholesterol-lowering effects.

Saponins
Galactomannan (soluble fiber)[5]

Mucilaginous soluble fiber that slows carbohydrate absorption, a key mechanism behind the blood-sugar-lowering effect.

Polysaccharides
4-hydroxyisoleucine (amino acid)[12]

An unusual amino acid studied for insulin-potentiating activity.

Sotolon (flavor compound)[11]

Aromatic lactone responsible for fenugreek's characteristic maple-syrup smell, including the body-odor effect reported with supplementation.

Pharmacological Actions

Anti-inflammatory[1, 2, 3, 5, 6, 9, 10, 11, 13, 14, 15]
Anticancer (preclinical)[9, 16, 17, 18, 19, 20]

Burdock (Arctium lappa) extracts and the lignan arctigenin inhibit proliferation and induce apoptosis in colon, breast, lung and gastric cancer cells, attenuate melanoma progression and reduce preneoplastic colon lesions in vivo (preclinical).

Antioxidant[1, 2, 5, 10, 11, 13, 14, 15, 16]
Digestive aid[4, 11, 13, 14, 15]
Emollient / skin-soothing[1, 2, 13, 14, 15]
Anti-inflammatory[1, 5, 6, 9, 10, 11, 12]
Anticancer (preclinical)[8]
Antidiabetic (blood-sugar lowering)[4, 5, 6, 11, 12]
Aphrodisiac[3, 5, 11, 12]

Traditional & Indicated Uses

Arthritis / joint pain[1, 2, 11, 13, 14, 15]Traditional · 2/10

inferred from anti-inflammatory action

Evidence: 2
Label: Arthritis / joint pain
Bloating[4, 11, 13, 14, 15]Traditional · 2/10

inferred from digestive action

Evidence: 2
Label: Bloating
Cancer (anticancer research)[9, 16, 17, 18, 19, 20]Traditional · 2/10

Arctium lappa root reduces diet-induced preneoplastic colon lesions and suppresses melanoma progression; its lignan arctigenin induces apoptosis in colon (HT-29), breast (in vitro/in vivo), lung and gastric cancer cells and chemosensitizes them to doxorubicin (preclinical).

Evidence: 2
Label: Cancer (anticancer research)
Eczema[1, 2, 13, 14, 15]Traditional · 2/10

inferred from emollient action

Evidence: 2
Label: Eczema
Indigestion[4, 11, 13, 14, 15]Traditional · 2/10

inferred from digestive action

Evidence: 2
Label: Indigestion
Inflammation (general)[1, 2, 11, 13, 14, 15]Traditional · 2/10

inferred from anti-inflammatory action

Evidence: 2
Label: Inflammation (general)
Skin irritation[1, 2, 11, 13, 14, 15]Traditional · 2/10

inferred from anti-inflammatory action

Evidence: 2
Label: Skin irritation
Arthritis / joint pain[1, 5, 11, 12]Good · 8/10

inferred from anti-inflammatory action

Evidence: 8
Label: Arthritis / joint pain
Blood sugar / diabetes support[4, 5, 11, 12]Good · 7/10

inferred from antidiabetic action

Evidence: 7
Label: Blood sugar / diabetes support
Cancer (anticancer research)[8]Good · 7/10

inferred from anticancer action

Evidence: 7
Label: Cancer (anticancer research)
Cardiovascular / heart health[5, 11, 12]Good · 7/10
Evidence: 7
Label: Cardiovascular / heart health
Fertility[3, 5, 11, 12]Good · 8/10
Evidence: 8
Label: Fertility
Inflammation (general)[5, 9, 10, 11, 12]Good · 7/10

inferred from anti-inflammatory action

Evidence: 7
Label: Inflammation (general)
Metabolic support[5, 11, 12]Good · 7/10
Evidence: 7
Label: Metabolic support
Skin irritation[5, 11, 12]Good · 7/10

inferred from anti-inflammatory action

Evidence: 7
Label: Skin irritation

Safety, Cautions & Contraindications

Safety note[13, 14, 15]Caution

Generally safe as a food plant. Allergic reactions are possible in those sensitive to Asteraceae. Avoid in pregnancy due to uterine-stimulating effects reported in animal studies. The burs (seed heads) can cause mechanical irritation of skin and eyes on contact. Not recommended in biliary obstruction.

Safety note[13, 14, 15, 21]Serious

Duke (2002) rates burdock as +++ and notes antibacterial, antimutagenic, antitumor, choleretic, diuretic, and prebiotic (bifidogenic) activities at the experimental level (score 1). The root is rich in inulin (a prebiotic fructooligosaccharide), which promotes growth of beneficial intestinal bacteria. Dose: 1–2 g dried root in tea three times daily, or 2–4 ml of tincture. Duke notes burdock's general safety, though it belongs to the Asteraceae family and can trigger reactions in sensitive individuals. It should be distinguished from belladonna and similar plants, which resemble it in early growth (Duke, 2002).

Safety note[5, 11, 12]Info

Fenugreek appears https://www.nccih.nih.gov/health/fenugreek for most people.

Safety note[5, 11, 12]Caution

Less serious side effects like diarrhea and indigestion have been reported anecdotally. You may also experience https://pubmed.ncbi.nlm.nih.gov/26251835/, which could be harmful if you have an eating disorder or are trying to https://www.healthline.com/nutrition/how-to-gain-weight. Moreover, some people report a strange and slightly sweet body odor when supplementing, but this is unconfirmed. Given its effect on blood sugar, fenugreek should be used with caution if you’re taking diabetes medication or other supplements that lower blood sugar levels.

Safety note[5, 11, 12, 13]Caution

Duke (2002) provides strong clinical evidence (score 2) for fenugreek's hypoglycemic and hypocholesterolemic activities — among the best-evidenced herbal treatments for blood sugar and lipid management. Anti-inflammatory and demulcent activities also have clinical support. The seed is Commission E approved as an appetite stimulant. Dose: 6–50 g of ground seeds daily for blood sugar management; 1–4 g seeds in tea for digestive use. The plant has lactagogue effects and can cause maple syrup-like body odor due to sotolon content. Contraindicated in pregnancy at medicinal doses due to uterotonic effects (Duke, 2002).

External Ids

Gbif: 7353729
Wikidata: Q26932
Gbif: 5360475
Wikidata: Q133205

Botanical Description

Robust biennial herb forming a large rosette of huge, heart-shaped (rhubarb-like), long-stalked leaves, dark green above and whitish-woolly beneath, in its first year. In the second year it sends up a tall, branching, grooved flowering stem bearing purple thistle-like flower heads enclosed in a globe of stiff, hooked bracts that ripen into the familiar clinging burrs.[1, 2]

Height: 1-2 m (flowering stem, second year)
Habit: Robust biennial herb; large rosette in year one, tall branching stem in year two
Leaves: Huge, heart-shaped, long-stalked, dark green above and whitish-woolly beneath
Flowers: Purple thistle-like flower heads enclosed in a globe of stiff, hooked bracts
Stem: Tall, branching, grooved flowering stem (second year only)
Root: Long, thick, fleshy first-year taproot
Fruit: Bristly, hooked burr enclosing small achenes, clinging to fur and clothing
Flowering Period: July-September (second year)

Erect annual herb with trifoliate leaves, each leaflet oblong and finely toothed toward the tip. Small, pale yellow to white, pea-like flowers are borne singly or in pairs in the leaf axils, followed by long, slender, curved seed pods.[11]

Height: 30-80 cm
Habit: Erect annual herb
Leaves: Trifoliate, each leaflet oblong, finely toothed toward the tip
Flowers: Small, pale yellow to white, pea-like, borne singly or in pairs in leaf axils
Stem: Erect, branching, slightly hairy
Root: Taproot with nitrogen-fixing nodules
Fruit: Long, slender, curved seed pod (10-15 cm) containing 10-20 hard, angular, yellow-brown seeds
Flowering Period: May-June

Habitat

A common weed of disturbed ground, waste places, roadsides, field margins and riverbanks on rich, moist soils; native to Europe and temperate Asia and naturalised in North America and elsewhere.[2]

Cultivated widely as a food and forage crop; native to the eastern Mediterranean and western Asia, now grown throughout South Asia, the Middle East and North Africa.[11]

Harvesting

The root is dug at the end of the first growing season (autumn) or early in the second spring, before the flowering stem develops, when it is at its most tender and richest in inulin; leaves are picked through the first year, and the seed/fruit is collected from the dried burrs in the second autumn. Careful identification against deadly nightshade, whose root can resemble burdock, is essential before digging.[11]

Parts: Leaf, Root, Seed
Season: Root at the end of year one or start of year two; leaf through year one; seed in year-two autumn

Leaves and young sprouts are harvested throughout the growing season; seed pods are collected when fully mature and dried, then the hard seeds are threshed out.[11]

Parts: Leaf, Seed, Young sprouts
Season: Leaf/sprouts through growing season; seed at maturity

Traditional Uses

Burdock root is a classic 'alterative' or blood-purifying herb of European and East Asian (gobo) traditional medicine, used for chronic skin conditions, as a mild diuretic supporting elimination, and as a digestive bitter; the root is also eaten as a root vegetable (gobo) in Japanese cuisine.[1, 2]

Fenugreek seed has an ancient tradition across the Mediterranean, Middle East and South Asia as a digestive and appetite-stimulant remedy and lactation aid, and modern clinical research strongly supports its traditional use for blood sugar and cholesterol management, formalised in Commission E approval as an appetite stimulant.[5, 11, 12]

Preparations

Decoction (root)[2]

Dried or fresh root simmered in water as a traditional alterative and digestive decoction.

Tincture[12]

Tincture of the dried root, ethanol 45% V/V or 25% V/V, 8-12 ml three times daily per the EU herbal monograph. The monograph states the ethanol strength but no drug-extract ratio, so no 1:5 ratio is claimed here. Educational reference only, not a prescription.

Fresh root (culinary)[11]

Fresh root peeled and cooked as a root vegetable (gobo), continuing the traditional food-medicine use.

Ground seed / seed tea[5]

Ground seeds taken with food, or whole seeds soaked/simmered as a tea, the traditional preparation for digestive and blood sugar support.

Standardized extract (capsule)[5]

Standardized seed extract in capsule form, the form most used in clinical trials on blood sugar and cholesterol.

Dosage

Root decoction[12]

The EU herbal monograph on Arctium lappa L., radix gives, for adults and elderly, a single dose of 2-6 g of the comminuted root as an infusion, 3 times daily; a powdered herbal substance at 350 mg 3-5 times daily, a liquid extract at 2-8 mL 3 times daily and a soft extract at 0.2 g per dose (1-2 g daily) are also listed. Not recommended under 18 years, and a practitioner should be consulted if symptoms persist beyond 2 weeks. Educational reference only, not a prescription.

Tincture[12]

The EU herbal monograph gives 8-12 mL three times daily, for tinctures in either 45% V/V or 25% V/V ethanol, in adults and elderly. Educational reference only, not a prescription.

Seed[5, 12]

Clinical research and traditional sources suggest around 6-50 g of ground seed daily (higher end for blood sugar management), or 1-4 g in tea for digestive use. Educational reference only, not a prescription.

References

REF-0709, REF-0705, REF-2338, REF-0707, REF-2339, REF-0722, REF-2340, REF-2341, REF-2342, REF-2343, REF-0706
REF-1114, REF-1115, REF-1116, REF-1117, REF-0182, REF-1118, REF-1119, REF-1120, REF-1121, REF-1122

Lookalikes Review

Outcome: has-lookalikes
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-07
Outcome: none-known
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-07

Dangerous Lookalikes

Safety note[22, 23, 24]Fatal
Dangerous Plant: atropa-belladonna
Confused Part: First-year taproots dug for use as food or 'burdock root tea'; the root of deadly nightshade closely resembles a burdock root and the two grow as weeds in the same rough ground.
Confusion Context: Greater burdock (Arctium lappa) is dug for its long first-year taproot, used as a vegetable and as 'burdock root tea.' Deadly nightshade (Atropa belladonna) grows as a weed in the same disturbed ground and its root closely resembles a burdock root, so belladonna root can be gathered or processed in mistake for burdock. This has caused real poisonings: a JAMA case report (Bryson et al., 1978) describes atropine poisoning from a commercial burdock root tea, and belladonna-contaminated herbal teas have caused severe anticholinergic poisoning from as little as a few milligrams of atropine. Belladonna contains tropane alkaloids (atropine, hyoscyamine, scopolamine); poisoning causes dry flushed skin, widely dilated pupils, blurred vision, fever, a racing heart, agitation, hallucinations, seizures and can be fatal, especially in children.
Distinguishing Features: Whole plant: only dig burdock when you can match the whole living plant - burdock has huge rhubarb-like heart-shaped leaves that are whitish-woolly underneath and, in its second year, the familiar hooked burrs. Deadly nightshade is a branching plant with dull green oval pointed leaves, solitary purple-brown bell-shaped flowers and shiny black cherry-sized berries., Berries (decisive if present): burdock never bears berries - it makes bristly burrs. A plant near your 'burdock' bearing shiny black berries in green star-shaped calyces is deadly nightshade - do not dig roots from that ground., Best practice: because the roots alone are hard to tell apart, do not wild-harvest burdock root unless an expert has confirmed the living plant - buy it from a reputable supplier instead.
Key Test: Identify the whole living plant before digging any root. Confirm large rhubarb-like leaves that are woolly-white underneath (and hooked burrs in the second year) for burdock. If there are shiny black berries, purple-brown bell-shaped flowers or oval pointed leaves among the plants, deadly nightshade may be present - do not dig or brew root tea from there. When in doubt, buy burdock rather than foraging the root.
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-07

Not documented

Drug Class Interactions

Not documented

Safety note[14, 15]Caution
Drug Class: antidiabetics
Mechanism: Fenugreek seed lowers fasting and post-meal blood sugar (confirmed by a meta-analysis of randomised trials in type 2 diabetes and prediabetes), so taken with diabetes medicines it may add to their effect and increase the risk of hypoglycaemia; monitor blood glucose.
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-03

Pairings

Not documented

Fenugreek and bitter melon can each lower blood sugar, so taking them together — especially alongside diabetes medicines — may add up and increase the risk of hypoglycaemia. Monitor your blood glucose.[15, 16]

Partner Id: momordica-charantia
Type: caution
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-03

Fenugreek and black seed (Nigella sativa) can each lower blood sugar, so taking them together — especially alongside diabetes medicines — may add up and increase the risk of hypoglycaemia. Monitor your blood glucose.[15, 17]

Partner Id: nigella-sativa
Type: caution
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-03

References & Sources

  1. Chan, Y.S., Cheng, L.N., Wu, J.H., Chan, E., Kwan, Y.W., Lee, S.M.Y., Leung, G.P.H., Yu, P.H.F. and Chan, S.W (2010) 'A review of the pharmacological effects of Arctium lappa (burdock)', Inflammopharmacology, 19(5), pp. 245--254. doi:10.1007/s10787-010-0062-4 Preclinical
    https://doi.org/10.1007/s10787-010-0062-4
  2. de Souza, A.R.C., de Oliveira, T.L., Fontana, P.D., Carneiro, M.C., Corazza, M.L., de Messias Reason, I.J. and Bavia, L (2022) 'Phytochemicals and Biological Activities of Burdock (Arctium lappa L.) Extracts: A Review', Chemistry and Biodiversity, 19(11). doi:10.1002/cbdv.202200615 Preclinical
    https://doi.org/10.1002/cbdv.202200615
  3. Yosri, N., Alsharif, S.M., Xiao, J., Musharraf, S.G., Zhao, C., Saeed, A., Gao, R., Said, N.S., Di Minno, A., Daglia, M., Guo, Z., Khalifa, S.A.M. and El-Seedi, H.R (2023) 'Arctium lappa (burdock): insights from ethnopharmacology potential, chemical constituents, clinical studies, pharmacological utility and nanomedicine', Biomedicine & Pharmacotherapy, 158, pp. 114104. doi:10.1016/j.biopha.2022.114104 Meta-analysis / review
    https://doi.org/10.1016/j.biopha.2022.114104
  4. Mondal, S.C. and Eun, J.B (2022) 'Mechanistic insights on burdock (Arctium lappa L.) extract effects on diabetes mellitus', Food Science and Biotechnology, 31(8), pp. 999--1008. doi:10.1007/s10068-022-01091-2 Preclinical
    https://doi.org/10.1007/s10068-022-01091-2
  5. Shyam, M. and Sabina, E.P (2024) 'Harnessing the power of Arctium lappa root: a review of its pharmacological properties and therapeutic applications', Natural Products and Bioprospecting, 14(1), pp. 49. doi:10.1007/s13659-024-00466-8 Meta-analysis / review
    https://doi.org/10.1007/s13659-024-00466-8
  6. Gao, Q., Yang, M. and Zuo, Z (2018) 'Overview of the anti-inflammatory effects, pharmacokinetic properties and clinical efficacies of arctigenin and arctiin from Arctium lappa L', Acta Pharmacologica Sinica, 39(5), pp. 787-801. doi:10.1038/aps.2018.32 Traditional / reference
    https://doi.org/10.1038/aps.2018.32
  7. Jin, X., Liu, S., Chen, S., Wang, L., Cui, Y., He, J., Fang, S., Li, J. and Chang, Y (2023) 'A systematic review on botany, ethnopharmacology, quality control, phytochemistry, pharmacology and toxicity of Arctium lappa L. fruit', Journal of Ethnopharmacology, 308, pp. 116223. doi:10.1016/j.jep.2023.116223 Meta-analysis / review
    https://doi.org/10.1016/j.jep.2023.116223
  8. Shukla, S., Kakade, M., Cherian, S., Alagarasu, K. and Parashar, D (2024) 'Arctigenin from Arctium lappa L. inhibits chikungunya virus by affecting its entry and replication', Phytomedicine, 128, pp. 155491. doi:10.1016/j.phymed.2024.155491 Preclinical
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  9. Nascimento, B.A.C., Gardinassi, L.G., Silveira, I.M.G., Gallucci, M.G., Tome, M.A., Oliveira, J.F.D., Moreira, M.R.A., Meirelles, A.F.G., Faccioli, L.H., Tefe-Silva, C. and Zoccal, K.F (2019) 'Arctium lappa extract suppresses inflammation and inhibits melanoma progression', Medicines, 6(3), pp. 81. doi:10.3390/medicines6030081 Preclinical
    https://doi.org/10.3390/medicines6030081
  10. Lu, N., Wei, J., Gong, X., Tang, X., Zhang, X., Xiang, W., Liu, S., Luo, C. and Wang, X (2023) 'Preventive effect of Arctium lappa polysaccharides on acute lung injury through anti-inflammatory and antioxidant activities', Nutrients, 15(23), pp. 4946. doi:10.3390/nu15234946 Preclinical
    https://doi.org/10.3390/nu15234946
  11. Moro, T.M.A. and Clerici, M.T.P.S (2020) 'Burdock (Arctium lappa L) roots as a source of inulin-type fructans and other bioactive compounds: Current knowledge and future perspectives for food and non-food applications', Food Research International. doi:10.1016/j.foodres.2020.109889 Preclinical
    https://doi.org/10.1016/j.foodres.2020.109889
  12. European Medicines Agency (HMPC) (2011) 'Community herbal monograph on Arctium lappa L., radix'. Available at: https://www.ema.europa.eu/en/documents/herbal-monograph/final-community-herbal-monograph-arctium-lappa-l-radix_en.pdf Traditional / reference
    https://www.ema.europa.eu/en/documents/herbal-monograph/final-community-herbal-monograph-arctium-lappa-l-radix_en.pdf
  13. Royal Botanic Gardens, Kew (n.d.). Available at: https://powo.science.kew.org Traditional / reference
    https://powo.science.kew.org
  14. World Health Organization (2002) 'WHO Monographs on Selected Medicinal Plants'. Traditional / reference
    https://scholar.google.com/scholar?q=WHO%20Monographs%20on%20Selected%20Medicinal%20Plants
  15. Xu, Z., Li, Y., Jiang, D. and Deng, L (2008) 'Arctium lappa L.: A review of its traditional uses, phytochemistry, and pharmacology', 121(2), pp. 167--184. Traditional / reference
    https://scholar.google.com/scholar?q=Arctium%20lappa%20L.%3A%20A%20review%20of%20its%20traditional%20uses%2C%20phytochemistry%2C%20and%20pharmacology
  16. Romualdo, G.R., Silva, E.D.A., Da Silva, T.C., Aloia, T.P.A., Nogueira, M.S., De Castro, I.A. and others (2019) 'Burdock (Arctium lappa L.) root attenuates preneoplastic lesion development in a diet and thioacetamide-induced model of steatohepatitis-associated hepatocarcinogenesis', Environmental Toxicology, 35(4), pp. 518--527. doi:10.1002/tox.22887 Preclinical
    https://doi.org/10.1002/tox.22887
  17. Chen, Y.-F. and Liu, R.-Z. and Ying, W.-W. and Yang, Y.-N. and Xiang, S.-F. and Shao, X.-J. and Cao, J. and Zhang, Y.-Q. and Yang, B. and He, Q.-J. and Ying, M.-D (2022) 'Arctigenin impairs UBC12 enzyme activity and cullin neddylation to attenuate cancer cells', Acta Pharmacologica Sinica, 44(3), pp. 661-669. doi:10.1038/s41401-022-00992-6 Preclinical
    https://doi.org/10.1038/s41401-022-00992-6
  18. Shi, H. and Zhao, L. and Guo, X. and Fang, R. and Zhang, H. and Dong, G. and Fu, J. and Yan, F. and Zhang, J. and Ning, Z. and Ma, Q. and Li, Z. and Li, C. and Dai, J. and Si, C. and Xiong, H (2020) 'Arctigenin Attenuates Breast Cancer Progression through Decreasing GM-CSF/TSLP/STAT3/beta-Catenin Signaling', International Journal of Molecular Sciences, 21(17), pp. 6357. doi:10.3390/ijms21176357 Preclinical
    https://doi.org/10.3390/ijms21176357
  19. Li, Q.-C. and Liang, Y. and Tian, Y. and Hu, G.-R (2016) 'Arctigenin induces apoptosis in colon cancer cells through ROS/p38MAPK pathway', Journal of BUON, 21(1), pp. 87-94. Preclinical
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  20. Lee, K.-S. and Lee, M.-G. and Kwon, Y.-S. and Nam, K.-S (2020) 'Arctigenin Enhances the Cytotoxic Effect of Doxorubicin in MDA-MB-231 Breast Cancer Cells', International Journal of Molecular Sciences, 21(8), pp. 2997. doi:10.3390/ijms21082997 Preclinical
    https://doi.org/10.3390/ijms21082997
  21. Duke, J.A (2002) 'Handbook of Medicinal Herbs, Second Edition'. Traditional / reference
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  22. Bryson, P.D. and Watanabe, A.S. and Rumack, B.H. and Murphy, R.C (1978) 'Burdock root tea poisoning. Case report involving a commercial preparation', JAMA, 239(20), pp. 2157. Available at: https://pubmed.ncbi.nlm.nih.gov/642161/ Clinical study
    https://pubmed.ncbi.nlm.nih.gov/642161/
  23. Berdai, M.A. and Labib, S. and Chetouani, K. and Harandou, M (2012) 'Atropa belladonna intoxication: a case report', Pan African Medical Journal, 11, pp. 72. Available at: https://pubmed.ncbi.nlm.nih.gov/22655106/ Clinical study
    https://pubmed.ncbi.nlm.nih.gov/22655106/
  24. Oerlemans, C. and de Vries, I. and van Riel, A.J.H.P (2017) 'Anticholinergic syndrome caused by contaminated herbal tea; acting swiftly to identify the source', Nederlands Tijdschrift voor Geneeskunde, 161, pp. D1261. Available at: https://pubmed.ncbi.nlm.nih.gov/28612694/ Clinical study
    https://pubmed.ncbi.nlm.nih.gov/28612694/
  1. Faghfoori, Z., Javadivala, Z., Khalili, Y. and Malek Mahdavi, A (2023) 'Effects of Trigonella foenum-graecum (fenugreek) on rheumatoid arthritis: a systematic review', Immunopharmacology and Immunotoxicology, 45(5), pp. 626-634. doi:10.1080/08923973.2023.2202298 Meta-analysis / review
    https://doi.org/10.1080/08923973.2023.2202298
  2. Ouzir, M., El Bairi, K. and Amzazi, S (2016) 'Toxicological properties of fenugreek (Trigonella foenum graecum)', Food and Chemical Toxicology, 96, pp. 145-154. doi:10.1016/j.fct.2016.08.003 Meta-analysis / review
    https://doi.org/10.1016/j.fct.2016.08.003
  3. Rao, A., Steels, E., Inder, W.J., Abraham, S. and others (2016) 'Testofen, a specialised Trigonella foenum-graecum seed extract reduces age-related symptoms of androgen decrease, increases testosterone levels and improves sexual function in healthy aging males in a double-blind randomised clinical study', The Aging Male, 19(2), pp. 134-142. doi:10.3109/13685538.2015.1135323 Randomized trial
    https://doi.org/10.3109/13685538.2015.1135323
  4. Avalos-Soriano, A., De la Cruz-Cordero, R., Rosado, J.L. and Garcia-Gasca, T (2016) '4-Hydroxyisoleucine from Fenugreek (Trigonella foenum-graecum): Effects on Insulin Resistance Associated with Obesity', Molecules, 21(11), pp. 1596. doi:10.3390/molecules21111596 Preclinical
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  5. Neelakantan, N., Narayanan, M., de Souza, R.J. and van Dam, R.M (2014) 'Effect of fenugreek (Trigonella foenum-graecum L.) intake on glycemia: a meta-analysis of clinical trials', pp. 7. Meta-analysis / review
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  6. Nagulapalli Venkata, K.C., Swaroop, A., Bagchi, D. and Bishayee, A (2017) 'A small plant with big benefits: Fenugreek (Trigonella foenum-graecum Linn.) for disease prevention and health promotion', Molecular Nutrition & Food Research, 61(6), pp. 1600950. doi:10.1002/mnfr.201600950 Meta-analysis / review
    https://doi.org/10.1002/mnfr.201600950
  7. Ulbricht, C., Basch, E., Burke, D., Cheung, L. and others (2007) 'Fenugreek (Trigonella foenum-graecum L. Leguminosae): an evidence-based systematic review by the natural standard research collaboration', Journal of Herbal Pharmacotherapy, 7(3-4), pp. 143-177. doi:10.1080/15228940802142852 Meta-analysis / review
    https://doi.org/10.1080/15228940802142852
  8. El Bairi, K., Ouzir, M., Agnieszka, N. and Khalki, L (2017) 'Anticancer potential of Trigonella foenum graecum: Cellular and molecular targets', Biomedicine & Pharmacotherapy, 90, pp. 479-491. doi:10.1016/j.biopha.2017.03.071 Meta-analysis / review
    https://doi.org/10.1016/j.biopha.2017.03.071
  9. Piao, C.H., Bui, T.T., Song, C.H., Shin, H.S. and others (2017) 'Trigonella foenum-graecum alleviates airway inflammation of allergic asthma in ovalbumin-induced mouse model', Biochemical and Biophysical Research Communications, 482(4), pp. 1284-1288. doi:10.1016/j.bbrc.2016.12.029 Preclinical
    https://doi.org/10.1016/j.bbrc.2016.12.029
  10. Asif, M., Yousaf, H.M., Saleem, M., Saadullah, M. and others (2021) 'Trigonella foenum-graecum Seeds Oil Attenuated Inflammation and Angiogenesis in vivo through Down-Regulation of TNF-alpha', Anti-Cancer Agents in Medicinal Chemistry, 21(11), pp. 1460-1471. doi:10.2174/1871520620666201005100132 Preclinical
    https://doi.org/10.2174/1871520620666201005100132
  11. World Health Organization (1999) 'WHO Monographs on Selected Medicinal Plants'. Traditional / reference
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  12. Kumar, P. and Bhandari, U (2013) 'Protective effect of fenugreek (Trigonella foenum-graecum L.) seeds in experimentally-induced myocardial infarction', 23(2), pp. 255--261. Traditional / reference
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  14. Neelakantan, N., Narayanan, M., de Souza, R.J. and van Dam, R.M (2014) 'Effect of fenugreek (Trigonella foenum-graecum L.) intake on glycemia: a meta-analysis of clinical trials', Nutrition Journal, 13, pp. 7. doi:10.1186/1475-2891-13-7 Meta-analysis / review
    https://doi.org/10.1186/1475-2891-13-7
  15. Kim, J., Noh, W., Kim, A., Choi, Y. and Kim, Y.S (2023) 'The effect of fenugreek in type 2 diabetes and prediabetes: a systematic review and meta-analysis of randomized controlled trials', International Journal of Molecular Sciences, 24(18), pp. 13999. doi:10.3390/ijms241813999 Meta-analysis / review
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  16. Zhang, X., Zhao, Y., Song, Y. and Miao, M (2024) 'Effects of Momordica charantia L. supplementation on glycemic control and lipid profile in type 2 diabetes mellitus patients: a systematic review and meta-analysis of randomized controlled trials', Heliyon, 10(10), pp. e31126. doi:10.1016/j.heliyon.2024.e31126 Meta-analysis / review
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  17. Daryabeygi-Khotbehsara, R., Golzarand, M., Ghaffari, M.P. and Djafarian, K (2017) 'Nigella sativa improves glucose homeostasis and serum lipids in type 2 diabetes: a systematic review and meta-analysis', Complementary Therapies in Medicine, 35, pp. 6-13. doi:10.1016/j.ctim.2017.08.016 Meta-analysis / review
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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.