Plant Comparison

Field restharrow vs Blackcurrant

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 AField restharrowOnonis arvensisFabaceaeFull monograph →
Plant BBlackcurrantRibes nigrumGrossulariaceaeFull monograph →

At a glance

Field restharrow and Blackcurrant: they share 7 indicated uses (urinary support, urinary tract infection (uti), swelling / fluid retention, …); 3 pharmacological actions in common.

Field restharrowBlackcurrant
Constituents63
Pharmacological actions125
Indicated uses1111
Safety notes32
Cited sources4214
Indicated uses
Only Field restharrow
Cancer (anticancer research)Kidney supportWoundsPain (general)
Shared (7)
Urinary supportUrinary tract infection (UTI)Swelling / fluid retentionInfection (general)Skin irritationInflammation (general)Cardiovascular / heart health
Only Blackcurrant
Arthritis / joint painCold & fluEye strain / eye healthImmune support
Pharmacological actions
Only Field restharrow
Urinary antisepticAntimicrobialVulnerary (wound healing)Analgesic (pain relief)GastroprotectiveAnticancer (preclinical)AntifungalLipid-loweringAntiplatelet / anticoagulant
Shared (3)
DiureticAnti-inflammatoryAntioxidant
Only Blackcurrant
AntiviralImmunomodulator / immune support

Evidence face-off — shared uses

ConditionField restharrowBlackcurrantVerdict
Urinary support9/105/10Stronger for Field restharrow
Urinary tract infection (UTI)2/105/10Stronger for Blackcurrant
Swelling / fluid retention7/105/10Stronger for Field restharrow
Infection (general)2/105/10Stronger for Blackcurrant
Skin irritation2/105/10Stronger for Blackcurrant
Inflammation (general)2/105/10Stronger for Blackcurrant
Cardiovascular / heart health2/106/10Stronger for Blackcurrant

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

Isoflavonoids (formononetin, ononin and derivatives)[1, 3, 5, 20]

Formononetin and its 7-O-glucoside ononin, plus related isoflavones - the signature restharrow constituents (also phytoestrogens).

FlavonoidsGlycosidesPhenolic compounds
Pterocarpans and isoflavanones (medicarpin, maackiain, onogenin, sativanone)[1, 4]

Pterocarpans and isoflavanones and their glucosides, contributing to antimicrobial and wound-healing activity.

FlavonoidsGlycosides
alpha-Onocerin[7]

alpha-Onocerin (onocerin), a characteristic triterpene of the genus Ononis.

Triterpene saponinsTerpenes / terpenoids
Coumarins (scopoletin, scopolin)[1]

Coumarins detected in the phytochemical profile.

Coumarins
Hydroxycinnamic / phenolic acids[6]

Caffeic, chlorogenic and p-coumaric acids (antioxidant).

Caffeic acidChlorogenic acidPhenolic acids
Essential (volatile) oil[10]

A volatile oil present in the root and aerial parts.

Essential (volatile) oil
Anthocyanins (delphinidin, cyanidin glycosides)[1]

Give the berries their deep colour and are the principal antioxidant constituents.

Anthocyanins
Vitamin C and polyphenols[9]

The fruit is exceptionally rich in vitamin C, contributing to its traditional cold/flu use.

Phenolic compounds
Gamma-linolenic acid (GLA, seed oil)[3]

The seed oil is a well-known plant source of the omega-6 fatty acid GLA.

Gamma-linolenic acid (GLA)

Pharmacological Actions

Diuretic[8, 13, 28, 30, 42]

Aquaretic diuretic; the classic irrigation-therapy action of restharrow root (Ononidis radix), used interchangeably for O. arvensis and O. spinosa.

Urinary antiseptic[15]

Aqueous root extract reduced adhesion of uropathogenic E. coli to bladder cells (anti-adhesive).

Anti-inflammatory[14, 16, 17, 39]

Inhibits IL-8 release via TLR4/LPS and cytosolic phospholipase A2alpha (restharrow root).

Antimicrobial[2, 13, 21, 41]
Vulnerary (wound healing)[16, 20]

Isoflavonoids from restharrow root promote wound healing in vivo.

Antioxidant[5, 6, 13, 21, 31, 34, 40]
Analgesic (pain relief)[18, 33]

Analgesic activity of Ononis extract in animals (congener O. spinosa).

Gastroprotective[19]

Protective against ethanol-induced gastric mucosal injury (congener O. spinosa).

Anticancer (preclinical)[5, 27]

Ononis isoflavones showed chemopreventive/antiproliferative activity against breast cancer cells (preclinical).

Antifungal[22]
Lipid-lowering[24, 35]
Antiplatelet / anticoagulant[26]
Anti-inflammatory[1, 4, 9, 11, 12, 13]
Antioxidant[9, 10, 11, 12, 13]
Antiviral[11, 12, 13]
Diuretic[11, 12, 13]
Immunomodulator / immune support[9, 11, 12, 13]

Traditional & Indicated Uses

Cancer (anticancer research)[5, 27]Traditional · 2/10

inferred from anticancer action

Evidence: 2
Label: Cancer (anticancer research)
Urinary support[8, 13, 15, 28, 30]Strong · 9/10

Aquaretic diuretic for irrigation therapy of the urinary tract.

Evidence: 9
Label: Urinary support
Urinary tract infection (UTI)[15]Traditional · 2/10

Anti-adhesive activity against uropathogenic E. coli.

Evidence: 2
Label: Urinary tract infection (UTI)
Kidney support[8, 13]Good · 7/10

inferred from diuretic / urinary 'gravel' traditional use

Evidence: 7
Label: Kidney support
Swelling / fluid retention[13]Good · 7/10

inferred from diuretic (aquaretic) action

Evidence: 7
Label: Swelling / fluid retention
Infection (general)[2]Traditional · 2/10

inferred from antimicrobial action

Evidence: 2
Label: Infection (general)
Wounds[16]Traditional · 2/10

Isoflavonoid wound-healing agents from restharrow root.

Evidence: 2
Label: Wounds
Skin irritation[8, 17]Traditional · 2/10

inferred from anti-inflammatory and traditional skin/eczema use

Evidence: 2
Label: Skin irritation
Inflammation (general)[14, 17]Traditional · 2/10
Evidence: 2
Label: Inflammation (general)
Pain (general)[18]Traditional · 2/10

inferred from analgesic action

Evidence: 2
Label: Pain (general)
Cardiovascular / heart health[24, 26, 35]Traditional · 2/10

Ononis isoflavonoids (maackiain, ononin) showed anti-adipogenic activity via PPAR-gamma inhibition (preclinical).

Evidence: 2
Label: Cardiovascular / heart health
Arthritis / joint pain[11, 12, 13]Moderate · 5/10

inferred from anti-inflammatory action

Evidence: 5
Label: Arthritis / joint pain
Cardiovascular / heart health[6, 7, 8, 11, 12, 13]Moderate · 6/10
Evidence: 6
Label: Cardiovascular / heart health
Cold & flu[11, 12, 13]Moderate · 5/10

inferred from antiviral action

Evidence: 5
Label: Cold & flu
Eye strain / eye health[11, 12, 13]Moderate · 5/10
Evidence: 5
Label: Eye strain / eye health
Immune support[11, 12, 13]Moderate · 5/10
Evidence: 5
Label: Immune support
Infection (general)[11, 12, 13]Moderate · 5/10

inferred from antiviral action

Evidence: 5
Label: Infection (general)
Inflammation (general)[1, 4, 11, 12, 13]Moderate · 5/10

inferred from anti-inflammatory action

Evidence: 5
Label: Inflammation (general)
Skin irritation[11, 12, 13]Moderate · 5/10

inferred from anti-inflammatory action

Evidence: 5
Label: Skin irritation
Swelling / fluid retention[11, 12, 13]Moderate · 5/10

inferred from diuretic action

Evidence: 5
Label: Swelling / fluid retention
Urinary support[11, 12, 13]Moderate · 5/10

inferred from diuretic action

Evidence: 5
Label: Urinary support
Urinary tract infection (UTI)[11, 12, 13]Moderate · 5/10

inferred from diuretic action

Evidence: 5
Label: Urinary tract infection (UTI)

Safety, Cautions & Contraindications

Safety note[18]Warning

A safety signal exists in the genus: an Ononis spinosa root extract showed hepatotoxic effects at higher doses in animals (alongside analgesic activity). Avoid excessive or prolonged use, and use caution in liver disease.

Safety note[13]Caution

Used as an aquaretic for irrigation therapy of the urinary tract, restharrow should be taken with a generous fluid intake; it should NOT be used for 'flushing' when there is oedema due to impaired heart or kidney function (standard irrigation-therapy caution).

Safety note[1, 3]Caution

The root is rich in isoflavone phytoestrogens (formononetin); avoid medicinal doses in pregnancy and breastfeeding and use caution in hormone-sensitive conditions.

Safety note[11, 12, 13]Caution

Fruit (berries) • Generally safe as food for most people; adverse effects mainly GI discomfort or allergy in sensitive individuals. • If using high-dose extracts, use extra caution with blood-thinners/anticoagulants (evidence is not definitive, but polyphenol-rich supplements are often treated cautiously in practice). Leaf (folium) • EMA classifies blackcurrant leaf as a traditional herbal medicinal product (not “well-established use”): minor joint pain and urinary-tract flushing. • Typical label cautions (EMA-style): not recommended <18, avoid if you have edema due to impaired heart/kidney function, and seek medical advice if urinary symptoms persist/worsen. • Pregnancy/lactation: food use is fine, but medicinal leaf dosing is generally used cautiously due to limited robust safety data. Seed (seed oil) • Usually well tolerated, but may cause GI upset in some people. • Caution with anticoagulants/antiplatelet drugs (PUFA supplements are often used cautiously here). • Note: some trials explored maternal/infant contexts, but that does not automatically mean “recommended in pregnancy” outside medical supervision.

Safety note[11, 12, 13, 14]Info

Duke (2002) rates blackcurrant fruit highly (+++), with evidence for anti-inflammatory, angioprotective, and antioxidant activities. Ribes nigrum extracts showed the richest anthocyanin and polyphenol content in antioxidant studies, outperforming many other common berries. Clinical use is supported for diarrhea, colds, and flu. The high vitamin C and anthocyanin content underpin its vasoprotective effects. The fruit is treated as food-grade medicine and is classified as generally safe (Duke, 2002).

External Ids

Gbif: 2977171
Wikidata: Q164263
Gbif: 2986192
Wikidata: Q146604

Synonyms

Ononis hircina, Ononis arvensis subsp. arvensis

Not documented

Botanical Description

A tough, deep-rooted perennial herb or low subshrub of the pea family, 30-80 cm tall, sometimes bearing soft spines. It has a very long, woody, tenacious taproot - so strong it was said to stop (arrest) the harrow, giving 'rest-harrow' its name. The stems are hairy and sticky, often reddish, and clothed in small trifoliolate (clover-like) leaves with toothed leaflets. The flowers are typical pea flowers, pink to purplish-pink (occasionally white), borne singly or in pairs in the leaf axils. Field restharrow (O. arvensis) is generally less spiny than its close relative spiny restharrow (O. spinosa).[8, 10]

Height: 30-80 cm
Habit: Deep-rooted perennial herb or low subshrub, sometimes softly spiny
Leaves: Trifoliolate (clover-like), with finely toothed leaflets; stems hairy and glandular-sticky
Flowers: Pea-type, pink to purplish-pink (rarely white), solitary or paired in the leaf axils
Stem: Erect to ascending, hairy and sticky, often reddish; less spiny than O. spinosa
Root: Very long, woody, tenacious taproot (the medicinal Ononidis radix)
Fruit: A small, hairy, few-seeded pea pod
Flowering Period: June-September

Deciduous shrub (Grossulariaceae), 1-2 m tall, aromatic when the leaves are crushed. Leaves are palmately lobed (3-5 lobes), toothed, with resinous glands on the underside. Small, greenish-white to dull purple, bell-shaped flowers are borne in drooping racemes, followed by clusters of glossy black berries.

Height: 1-2 m
Habit: Deciduous shrub
Leaves: Palmately lobed (3-5 lobes), toothed, resin-glanded beneath, aromatic
Flowers: Small, greenish-white to dull purple, bell-shaped, in drooping racemes
Stem: Woody, multi-stemmed
Root: Fibrous woody root system
Fruit: Clusters of glossy black berries
Flowering Period: April-May

Habitat

Rough grassland, field margins, roadsides, dunes and dry, sandy or calcareous waste ground across Europe, western Asia and parts of North Africa. As a deep-rooted, nitrogen-fixing legume it colonises poor, disturbed soils and was historically a troublesome weed of arable fields (hence 'restharrow').[8]

Native to central and northern Europe and Siberia, growing in damp woodland, fens, riverbanks and hedgerows; widely cultivated commercially as a fruit crop in cool-temperate climates.

Harvesting

The root (Ononidis radix) is the principal medicinal part, dug in autumn from the second year onward and dried; the aerial flowering parts are also gathered in summer. The long woody taproot is cleaned and cut before drying for decoctions and infusions.[8]

Parts: Root, Aerial parts
Season: Root in autumn; aerial parts in flower (summer)

Berries are hand- or machine-harvested in mid- to late summer once fully ripe and black. Leaves are gathered in late spring to early summer, before flowering fades, for the medicinal leaf preparation. Seed oil is cold-pressed from the seeds after juicing.

Parts: Fruit, Leaf, Seed
Season: Berries mid-late summer; leaf late spring-early summer

Traditional Uses

Restharrow root has a long place in European herbal medicine as a gentle aquaretic diuretic used for 'irrigation therapy' of the urinary tract - to increase urine flow in cystitis, urinary gravel and stones, and to flush the bladder. Field restharrow (Ononis arvensis) is used interchangeably with the officinal spiny restharrow (O. spinosa, Ononidis radix). The root and flowering herb have also been used as a mild anti-inflammatory, for skin complaints and eczema, for rheumatic conditions, and (as a decoction or gargle) for the mouth and throat. The isoflavone-rich root is a folk remedy in central and eastern European traditions.[8, 13]

Blackcurrant has a long northern-European food-medicine tradition: the vitamin-C- and anthocyanin-rich berries have traditionally been used for colds, flu and general vitality, while the leaf has an official EU traditional-use registration for minor joint pain and as a urinary-tract flush, and the seed oil is valued as a source of gamma-linolenic acid (GLA). Modern research confirms broad antioxidant, anti-inflammatory, immunomodulatory and vasoprotective activity across the fruit, leaf and seed oil.[11, 12, 13]

Preparations

Decoction[8, 13]

The dried root simmered in water and taken as an aquaretic diuretic for irrigation of the urinary tract; the classic restharrow preparation.

Infusion[8]

The flowering aerial parts infused as a milder diuretic and anti-inflammatory tea.

Gargle / wash[8]

A root decoction used traditionally as a mouth/throat gargle and as a wash for skin complaints.

Leaf infusion (tea)[11, 12, 13]

Dried leaf steeped in hot water - the traditional joint-comfort/urinary-flush preparation.

Standardised fruit extract[1, 4]

Concentrated anthocyanin extract used in some clinical research.

References

REF-2741, REF-2742, REF-2743, REF-2744, REF-2745, REF-2746, REF-2747, REF-2748, REF-2749, REF-2750, REF-2751, REF-2752, REF-2753, REF-2754, REF-2755, REF-2756, REF-2757, REF-2758, REF-2759, REF-2760, REF-3015, REF-3016, REF-3017, REF-3018, REF-3019, REF-3020, REF-3021, REF-3022, REF-3023, REF-3024, REF-3025, REF-3026, REF-3027, REF-3028, REF-3029, REF-3030, REF-3031, REF-3032, REF-3033, REF-3034, REF-3035, REF-3036
REF-1243, REF-1244, REF-1245, REF-1246, REF-1247, REF-1248, REF-1249, REF-1250, REF-1251, REF-1252

Drug Class Interactions

Safety note[8, 13]Caution
Drug Class: diuretics
Mechanism: Restharrow is an aquaretic diuretic; taken with pharmaceutical diuretics it may add to fluid and electrolyte loss.
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-10
Safety note[1, 3]Caution
Drug Class: hormonal-therapies
Mechanism: The root is rich in the isoflavone phytoestrogen formononetin; it could theoretically interact with hormonal contraceptives, hormone replacement or hormone-sensitive conditions.
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-10

Not documented

Pairings

Classic urinary irrigation-therapy pairing: both are aquaretic diuretics used to increase urine flow in cystitis and urinary gravel.[13]

Partner Id: solidago-virgaurea
Type: synergy
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-10

Both are traditional diuretic 'flushing' herbs for irrigation therapy of the urinary tract.[13]

Partner Id: betula-pendula
Type: synergy
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-10

Both are Fabaceae rich in the isoflavone phytoestrogen formononetin; combined use adds to phytoestrogen exposure - use caution in hormone-sensitive conditions.[1]

Partner Id: trifolium-pratense
Type: caution
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-10

Not documented

Lookalikes Review

[8]

Outcome: none-known
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-10
Outcome: none-known
Reviewed By: Omnia Sana (owner-authorized)
Reviewed Date: 2026-07-07

Dosage

Not documented

Leaf infusion[11, 12, 13]

EMA-style traditional-use guidance for the leaf suggests roughly 2-4 g dried leaf per cup as an infusion, up to three times daily, for short-term joint or urinary support (not recommended under 18, or with fluid retention linked to heart/kidney disease). Berries and juice are food-safe at normal dietary amounts. Educational reference only, not a prescription.

References & Sources

  1. Gampe, N. and Darcsi, A. and Nagyne Nedves, A. and Boldizsar, I. and Kursinszki, L. and Beni, S (2019) 'Phytochemical analysis of Ononis arvensis L. by liquid chromatography coupled with mass spectrometry', Journal of Mass Spectrometry, 54(2), pp. 121-133. doi:10.1002/jms.4308 Preclinical
    https://doi.org/10.1002/jms.4308
  2. Denes, T. and Bartha, S.G. and Kerenyi, M. and Varga, E. and Balazs, V.L. and Csepregi, R. and Papp, N (2017) 'Histological and antimicrobial study of Ononis arvensis L', Acta Biologica Hungarica, 68(3), pp. 321-333. doi:10.1556/018.68.2017.3.9 Preclinical
    https://doi.org/10.1556/018.68.2017.3.9
  3. Gampe, N. and Nagy, E. and Kursinszki, L. and Beni, S (2021) 'Quantitative determination of isoflavonoids in Ononis species by UPLC-UV-DAD', Phytochemical Analysis, 32(4), pp. 474-481. doi:10.1002/pca.2995 Preclinical
    https://doi.org/10.1002/pca.2995
  4. Gampe, N. and Szakacs, Z. and Darcsi, A. and Boldizsar, I. and Szoke, E. and Kuzovkina, I. and Kursinszki, L. and Beni, S (2021) 'Qualitative and Quantitative Phytochemical Analysis of Ononis arvensis Hairy Root Cultures', Frontiers in Plant Science, 11, pp. 622585. doi:10.3389/fpls.2020.622585 Preclinical
    https://doi.org/10.3389/fpls.2020.622585
  5. Pazdziora, W. and Grabowska, K. and Zagrodzki, P. and Pasko, P. and Prochownik, E. and Podolak, I. and Galanty, A (2025) 'Quantitative Analysis of Isoflavones from Ononis Species and Their Chemopreventive Potential on Breast Cancer Cells', Molecules, 30(11), pp. 2379. doi:10.3390/molecules30112379 Preclinical
    https://doi.org/10.3390/molecules30112379
  6. Spilkova, J. and Bednar, P. and Stroblikova, R (2001) 'Capillary electrophoretic analysis of hydroxycinnamic acids from Ononis arvensis L', Die Pharmazie, 56(5), pp. 424-425. Preclinical
    https://scholar.google.com/scholar?q=Capillary%20electrophoretic%20analysis%20of%20hydroxycinnamic%20acids%20from%20Ononis%20arvensis%20L.
  7. Spilkova, J. and Hubik, J (1982) 'Pharmacognosy study of Ononis arvensis L. II. Flavonoids and onocerin in the drug', Ceskoslovenska Farmacie, 31(1), pp. 24-26. Preclinical
    https://scholar.google.com/scholar?q=Pharmacognosy%20study%20of%20Ononis%20arvensis%20L.%20II.%20Flavonoids%20and%20onocerin%20in%20the%20drug
  8. Rezacova, A. and Spilkova, J. and Hubik, J (1978) 'A pharmacognostic study of the species Ononis arvensis L', Ceskoslovenska Farmacie, 27(10), pp. 452-455. Traditional / reference
    https://scholar.google.com/scholar?q=A%20pharmacognostic%20study%20of%20the%20species%20Ononis%20arvensis%20L.
  9. Felsberg, A.A. and Rosentsveig, P.E (1965) 'A comparative phytochemical study of the roots of Ononis arvensis L. and Ononis spinosa L', Aptechnoe Delo, 14(6), pp. 26-32. Preclinical
    https://scholar.google.com/scholar?q=A%20comparative%20phytochemical%20study%20of%20the%20roots%20of%20Ononis%20arvensis%20L.%20and%20Ononis%20spinosa%20L.
  10. Sichinava, M.B. and Mchelidze, K.Z. and Churadze, M.V. and Alaniia, M.D. and Aneli, D.N (2014) 'Chemical composition and microstructural peculiarities of overground and underground vegetative organs of field restharrow (Ononis arvensis L.)', Georgian Medical News, (231), pp. 88-94. Preclinical
    https://scholar.google.com/scholar?q=Chemical%20composition%20and%20microstructural%20peculiarities%20of%20overground%20and%20underground%20vegetative%20organs%20of%20field%20restharrow%20%28Ononis%20arvensis%20L.%29
  11. Dedio, I. and Kozlowski, J (1977) 'Comparative morphological and phytochemical studies of Ononis spinosa L. and Ononis arvensis L. I. Biometric and chromatographic studies of methanolic extracts', Acta Poloniae Pharmaceutica, 34(1), pp. 97-102. Preclinical
    https://scholar.google.com/scholar?q=Comparative%20morphological%20and%20phytochemical%20studies%20of%20Ononis%20spinosa%20L.%20and%20Ononis%20arvensis%20L.%20I.%20Biometric%20and%20chromatographic%20studies%20of%20methanolic%20extracts
  12. Felsberg, A.A. and Rozentsveig, P.E (1965) 'Photochemical examination of Ononis arvensis. I', Aptechnoe Delo, 14(3), pp. 25-27. Preclinical
    https://scholar.google.com/scholar?q=Photochemical%20examination%20of%20Ononis%20arvensis.%20I
  13. Nechita, V. and Tarau, A. and Suster, A. and Nechita, M. and Toiu, A. and Benedec, D. and Hanganu, D. and Siserman, C. and Drugan, C. and Oniga, I (2026) 'Phytochemical Constituents and Biological Activities of Ononis spinosa: A Comprehensive Review', Plants (Basel), 15(9), pp. 1409. doi:10.3390/plants15091409 Meta-analysis / review
    https://doi.org/10.3390/plants15091409
  14. Spiegler, V. and Gierlikowska, B. and Saenger, T. and Addotey, J.N. and Sendker, J. and Jose, J. and Kiss, A.K. and Hensel, A (2020) 'Root Extracts From Ononis spinosa Inhibit IL-8 Release Via Interactions With Toll-Like Receptor 4 and Lipopolysaccharide', Frontiers in Pharmacology, 11, pp. 889. doi:10.3389/fphar.2020.00889 Preclinical
    https://doi.org/10.3389/fphar.2020.00889
  15. Deipenbrock, M. and Sendker, J. and Hensel, A (2020) 'Aqueous Root Extract from Ononis spinosa Exerts Anti-adhesive Activity against Uropathogenic Escherichia coli', Planta Medica, 86(4), pp. 247-254. doi:10.1055/a-1089-8645 Preclinical
    https://doi.org/10.1055/a-1089-8645
  16. Ergene Oz, B. and Saltan Iscan, G. and Kupeli Akkol, E. and Suntar, I. and Bahadir Acikara, O (2017) 'Isoflavonoids as wound healing agents from Ononidis Radix', Journal of Ethnopharmacology, 211, pp. 384-393. doi:10.1016/j.jep.2017.09.029 Preclinical
    https://doi.org/10.1016/j.jep.2017.09.029
  17. Arnold, E. and Benz, T. and Zapp, C. and Wink, M (2015) 'Inhibition of Cytosolic Phospholipase A2alpha (cPLA2alpha) by Medicinal Plants in Relation to Their Phenolic Content', Molecules, 20(8), pp. 15033-15048. doi:10.3390/molecules200815033 Preclinical
    https://doi.org/10.3390/molecules200815033
  18. Yilmaz, B.S. and Ozbek, H. and Citoglu, G.S. and Ugras, S. and Bayram, I. and Erdogan, E (2006) 'Analgesic and hepatotoxic effects of Ononis spinosa L', Phytotherapy Research, 20(6), pp. 500-503. doi:10.1002/ptr.1891 Preclinical
    https://doi.org/10.1002/ptr.1891
  19. Manal Ahmad, A. and Yasser Ibrahim, K. and Manal Mohammad, A (2021) 'Efficacy of extract from Ononis spinosa L. on ethanol-induced gastric mucosal injury in rats', Journal of Traditional Chinese Medicine, 41(2), pp. 270-275. Preclinical
    https://scholar.google.com/scholar?q=Efficacy%20of%20extract%20from%20Ononis%20spinosa%20L.%20on%20ethanol-induced%20gastric%20mucosal%20injury%20in%20rats
  20. Addotey, J.N. and Lengers, I. and Jose, J. and Gampe, N. and Beni, S. and Petereit, F. and Hensel, A (2018) 'Isoflavonoids with inhibiting effects on human hyaluronidase-1 and norneolignan clitorienolactone B from Ononis spinosa L. root extract', Fitoterapia, 130, pp. 169-174. doi:10.1016/j.fitote.2018.08.013 Preclinical
    https://doi.org/10.1016/j.fitote.2018.08.013
  21. Stojković, D. and Drakulić, D. and Gašić, U. and Zengin, G. and Stevanović, M. and Rajčević, N. and Sokóvić, M (2020) 'Ononis spinosa L., an edible and medicinal plant: UHPLC-LTQ-Orbitrap/MS chemical profiling and biological activities of the herbal extract', Food & Function. doi:10.1039/d0fo01595d Preclinical
    https://doi.org/10.1039/d0fo01595d
  22. Stojković, D. and Días, M.I. and Drakulić, D. and Barros, L. and Stevanović, M. and Ferreira, I.C. and Sokóvić, M (2020) 'Methanolic Extract of the Herb Ononis spinosa L. Is an Antifungal Agent with no Cytotoxicity to Primary Human Cells', Pharmaceuticals. doi:10.3390/ph13040078 Preclinical
    https://doi.org/10.3390/ph13040078
  23. Kırmızıgül, S. and Gören, N. and Yang, S. and Cordell, G.A. and Bozok-Johansson, C (1997) 'Spinonin, a Novel Glycoside from Ononis spinosa subsp. leiosperma', Journal of Natural Products. doi:10.1021/np9605652 Preclinical
    https://doi.org/10.1021/np9605652
  24. Mladenova, S.G. and Savova, M.S. and Marchev, A.S. and Ferrante, C. and Orlando, G. and Wabitsch, M. and Georgiev, M.I (2022) 'Anti-adipogenic activity of maackiain and ononin is mediated via inhibition of PPARγ in human adipocytes', Biomedicine & Pharmacotherapy. doi:10.1016/j.biopha.2022.112908 Preclinical
    https://doi.org/10.1016/j.biopha.2022.112908
  25. Лужанин, В.Г. and Whaley, A.K. and Ponkratova, A.O. and Grishukova, E.A. and Suloev, I.S. and Смирнов, С.Н. and Serebryakov, E.B (2021) 'Isolation of Individual Compounds from the Terrestrial Parts of Ononis Arvensis L. and Solidago Canadensis L', Drug development & registration. doi:10.33380/2305-2066-2021-10-1-83-89 Preclinical
    https://doi.org/10.33380/2305-2066-2021-10-1-83-89
  26. Bogoutdinova, A. and Whaley, A.K. and Ponkratova, A.O. and Orlova, A. and Goncharov, M.Y. and Shpakova, V. and Farmanova, N.T. and Nurullaeva, D.K. and Sharipov, A. and Gambaryan, S. and Повыдыш, М.Н (2021) 'Isolation of formononetin-7-O-β-D-glucopyranoside from the grass of Ononis arvensis L. and the assessment of its effect on induced platelet activation', Drug development & registration. doi:10.33380/2305-2066-2021-10-4(1)-14-19 Preclinical
    https://doi.org/10.33380/2305-2066-2021-10-4(1)-14-19
  27. Paździora, W. and Grabowska, K. and Paśko, P. and Prochownik, E. and Podolak, I. and Galanty, A (2026) 'Multifaceted Evaluation of Isoflavone-Rich Fabaceae Species in Prostate Cancer In Vitro Models', Applied Sciences. doi:10.3390/app16136289 Preclinical
    https://doi.org/10.3390/app16136289
  28. Gallo, G. and Cicione, A. and Nacchia, A. and Lombardo, R. and Riolo, S. and Guercio, A. and Fiasconaro, D. and Nunzio, C.D (2026) 'A randomized controlled trial comparing alpha-blocker (tamsulosin) and a phyto-complex (Solidago virga-aurea, Phyllantus niruri, Epilobium angustifolium, Peumus boldus and Ononis spinosa) in the treatment of ureteral stent-related symptoms', Urologia Journal. doi:10.1177/03915603261454171 Randomized trial
    https://doi.org/10.1177/03915603261454171
  29. Ismailov, E. and Рогожникова, Е. and Марданлы, С.Г. and Мизина, П. and Kalinina, T.S (2024) 'COMPARATIVE STUDY OF SETTINGS FROM WILD SPECIES OF STEELWORM', Problems of Biological Medical and Pharmaceutical Chemistry. doi:10.29296/25877313-2024-12-02 Preclinical
    https://doi.org/10.29296/25877313-2024-12-02
  30. Mauro, E.D. and Saldutto, P. and Rocca, R.L. and Sangiorgi, G. and Patelli, G. and Barone, B. and Verratti, V. and Castellucci, R. and Napolitano, L. and Iacono, F. and Altieri, V (2024) 'Efficacy and Safety of Boldine Combined with Phyllanthus niruri and Ononis spinosa in Medical Expulsive Therapy for Distal Ureteral Stones with Renal Colic: A Single-Center, Retrospective Cohort Study', Medicina. doi:10.3390/medicina60091455 Clinical study
    https://doi.org/10.3390/medicina60091455
  31. DÉNES, T (2022) 'PHYTOCHEMICAL INVESTIGATION AND ANTIOXIDANT POTENTIAL OF ONONIS ARVENSIS L', FARMACIA. doi:10.31925/farmacia.2022.3.20 Preclinical
    https://doi.org/10.31925/farmacia.2022.3.20
  32. Zarga, M.H.A. and Al‐Jaber, H.I. and Al‐Qudah, M.A. and Al-Aboudi, A.M (2021) 'A new cyclic polyketide and other constituents from Ononis spinosa growing wildly in Jordan and their antioxidant activity', Journal of Asian Natural Products Research. doi:10.1080/10286020.2021.1914597 Preclinical
    https://doi.org/10.1080/10286020.2021.1914597
  33. Abbas, M.A. and Jaffal, S.M (2019) 'ANTINOCICEPTIVE ACTION OF ONONIS SPINOSA LEAF EXTRACT IN MOUSE PAIN MODELS', Acta Poloniae Pharmaceutica - Drug Research. doi:10.32383/appdr/99291 Preclinical
    https://doi.org/10.32383/appdr/99291
  34. (2009) 'Radical scavenger and Antioxidant activities of extracts and fractions from Bulgarian Ononis spinosa L. and GC-MS analysis of Ethanol extract', The Internet Journal of Alternative Medicine. doi:10.5580/121d Preclinical
    https://doi.org/10.5580/121d
  35. Davitavyan, N. and Е.Б., Н. and Pogulyay, Y. and Khochava, M. and Мизина, П. and Адамов, Г (2024) 'STUDYING THE HYPOLYPIDEMIC ACTIVITY OF FLAVONOIDS AND ISOFLAVONOIDS OF THE ONONIS ARVENSIS L. METHODS BY IN SILICO', Problems of Biological Medical and Pharmaceutical Chemistry. doi:10.29296/25877313-2024-05-01 Preclinical
    https://doi.org/10.29296/25877313-2024-05-01
  36. Gampe, N. and Dávid, D.N. and Takács‐Novák, K. and Backlund, A. and Béni, S (2022) 'In vitro and in silico evaluation of Ononis isoflavonoids as molecules targeting the central nervous system', PLoS ONE. doi:10.1371/journal.pone.0265639 Preclinical
    https://doi.org/10.1371/journal.pone.0265639
  37. Pauli, G.F (2000) 'Comprehensive Spectroscopic Investigation of α-Onocerin', Planta Medica. doi:10.1055/s-2000-14895 Preclinical
    https://doi.org/10.1055/s-2000-14895
  38. Köster, J. and Strack, D. and Barz, W (1983) 'High Performance Liquid Chromatographic Separation of Isoflavones and Structural Elucidation of Isoflavone 7-O-glucoside 6″-malonates from Cicer arietinum', Planta Medica. doi:10.1055/s-2007-969907 Preclinical
    https://doi.org/10.1055/s-2007-969907
  39. Spiegler, V. and Michalak, B. and Addotey, J.N. and Saenger, T. and Jose, J. and Kiss, A.K. and Hensel, A (2019) 'Root extracts from Ononis spinosa exert anti-inflammatory activity in vitro on IL-8 and TNF-α release by inhibition of TLR-4 receptor', Planta Medica. doi:10.1055/s-0039-3399691 Preclinical
    https://doi.org/10.1055/s-0039-3399691
  40. Çoban, T. and Çitoğlu, G.S. and Yılmaz, B.S. and İşcan, M (2003) 'Antioxidant Activities of Plants Used in Traditional Medicine in Turkey', Pharmaceutical Biology. doi:10.1080/13880200390501974 Preclinical
    https://doi.org/10.1080/13880200390501974
  41. Obiștioiu, D. and Cocan, I. and Tîrziu, E. and Herman, V. and Negrea, M. and Ban-Cucerzan, A. and Neacşu, A. and Cozma, A. and Nichita, I. and Hulea, A. and Radulov, I. and Alexa, E (2021) 'Phytochemical Profile and Microbiological Activity of Some Plants Belonging to the Fabaceae Family', Antibiotics. doi:10.3390/antibiotics10060662 Preclinical
    https://doi.org/10.3390/antibiotics10060662
  42. Orlando, G. and Chiavaroli, A. and Ferrante, C. and Recinella, L. and Leone, S. and Brunetti, L. and Simone, S.C.D. and Menghini, L. and Petrucci, M. and Zengin, G. and Cesaroni, F. and Pontarelli, G. and Cindolo, L. and Neri, F (2021) 'Protective effects induced by the food supplement Fluxonorm® in the lower urinary tract', PubMed. doi:10.26355/eurrev_202104_25562 Preclinical
    https://doi.org/10.26355/eurrev_202104_25562
  1. Lee, Y., Pham, T.X., Bae, M., Hu, S. and others (2019) 'Blackcurrant (Ribes nigrum) Prevents Obesity-Induced Nonalcoholic Steatohepatitis in Mice', Obesity (Silver Spring), 27(1), pp. 112-120. doi:10.1002/oby.22353 Preclinical
    https://doi.org/10.1002/oby.22353
  2. da Costa, P., Schetinger, M.R.C., Baldissarelli, J., Stefanello, N. and others (2024) 'Blackcurrant (Ribes nigrum L.) improves cholinergic signaling and protects against chronic scopolamine-induced memory impairment in mice', Journal of Psychopharmacology, 38(12), pp. 1170-1183. doi:10.1177/02698811241273776 Preclinical
    https://doi.org/10.1177/02698811241273776
  3. Nanashima, N., Horie, K., Yamanouchi, K., Tomisawa, T. and others (2020) 'Blackcurrant (Ribes nigrum) Extract Prevents Dyslipidemia and Hepatic Steatosis in Ovariectomized Rats', Nutrients, 12(5), pp. 1541. doi:10.3390/nu12051541 Preclinical
    https://doi.org/10.3390/nu12051541
  4. Lee, Y. and Lee, J.Y (2019) 'Blackcurrant (Ribes nigrum) Extract Exerts an Anti-Inflammatory Action by Modulating Macrophage Phenotypes', Nutrients, 11(5), pp. 975. doi:10.3390/nu11050975 Preclinical
    https://doi.org/10.3390/nu11050975
  5. Lappi, J., Raninen, K., Vakevainen, K., Karlund, A. and others (2020) 'Blackcurrant (Ribes nigrum) lowers sugar-induced postprandial glycaemia independently and in a product with fermented quinoa: a randomised crossover trial', British Journal of Nutrition, 126(5), pp. 708-717. doi:10.1017/S0007114520004468 Randomized trial
    https://doi.org/10.1017/S0007114520004468
  6. Horie, K., Maeda, H., Nanashima, N. and Oey, I (2021) 'Potential Vasculoprotective Effects of Blackcurrant (Ribes nigrum) Extract in Diabetic KK-Ay Mice', Molecules, 26(21), pp. 6459. doi:10.3390/molecules26216459 Preclinical
    https://doi.org/10.3390/molecules26216459
  7. Nanashima, N., Horie, K., Kitajima, M., Takamagi, S. and others (2021) 'Hypocholesterolemic Effect of Blackcurrant (Ribes nigrum) Extract in Healthy Female Subjects: A Pilot Study', Molecules, 26(13), pp. 4085. doi:10.3390/molecules26134085 Clinical study
    https://doi.org/10.3390/molecules26134085
  8. Horie, K., Nanashima, N., Maeda, H., Tomisawa, T. and others (2021) 'Blackcurrant (Ribes nigrum L.) Extract Exerts Potential Vasculoprotective Effects in Ovariectomized Rats, Including Prevention of Elastin Degradation and Pathological Vascular Remodeling', Nutrients, 13(2), pp. 560. doi:10.3390/nu13020560 Preclinical
    https://doi.org/10.3390/nu13020560
  9. Oczkowski, M (2021) 'Health-promoting effects of bioactive compounds in blackcurrant (Ribes nigrum L.) berries', Roczniki Panstwowego Zakladu Higieny, 72(3), pp. 229-238. doi:10.32394/rpzh.2021.0174 Meta-analysis / review
    https://doi.org/10.32394/rpzh.2021.0174
  10. Vagiri, M., Conner, S., Stewart, D., Andersson, S.C. and others (2015) 'Phenolic compounds in blackcurrant (Ribes nigrum L.) leaves relative to leaf position and harvest date', Food Chemistry, 172, pp. 135-142. doi:10.1016/j.foodchem.2014.09.041 Preclinical
    https://doi.org/10.1016/j.foodchem.2014.09.041
  11. Gopalan, A., Reuben, S.C., Ahmed, S., Darvesh, A.S., Hohmann, J. and Bishayee, A (2012) 'The health benefits of blackcurrants', 3(8), pp. 795--809. doi:10.1039/c2fo30058c Randomized trial
    https://doi.org/10.1039/c2fo30058c
  12. Royal Botanic Gardens, Kew (n.d.). Available at: https://powo.science.kew.org Traditional / reference
    https://powo.science.kew.org
  13. Watson, A.W., Haskell-Ramsay, C.F., Kennedy, D.O., Dodd, F.L., Wightman, E.L. and Reay, J.L (2015) 'Acute supplementation with blackcurrant extracts modulates cognitive functioning and inhibits monoamine oxidase-B in healthy young adults', 54(3), pp. 505--513. Traditional / reference
    https://scholar.google.com/scholar?q=Acute%20supplementation%20with%20blackcurrant%20extracts%20modulates%20cognitive%20functioning%20and%20inhibits%20monoamine%20oxidase-B%20in%20healthy%20young%20adults
  14. 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

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.