Plant Comparison

Sea buckthorn vs Chia

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 ASea buckthornHippophae rhamnoidesElaeagnaceaeFull monograph →
Plant BChiaSalvia hispanicaLamiaceaeFull monograph →

At a glance

Sea buckthorn and Chia: they share 5 indicated uses (arthritis / joint pain, cardiovascular / heart health, inflammation (general), …); 2 pharmacological actions in common.

Sea buckthornChia
Constituents34
Pharmacological actions73
Indicated uses127
Safety notes22
Cited sources1814
Indicated uses
Only Sea buckthorn
Blood sugar / diabetes supportBruisingCancer (anticancer research)Cold & fluEczemaImmune supportWounds
Shared (5)
Arthritis / joint painCardiovascular / heart healthInflammation (general)Metabolic supportSkin irritation
Only Chia
BloatingIndigestion
Pharmacological actions
Only Sea buckthorn
Anticancer (preclinical)Antidiabetic (blood-sugar lowering)Emollient / skin-soothingImmunomodulator / immune supportVulnerary (wound healing)
Shared (2)
Anti-inflammatoryAntioxidant
Only Chia
Digestive aid

Evidence face-off — shared uses

ConditionSea buckthornChiaVerdict
Arthritis / joint pain1/105/10Stronger for Chia
Cardiovascular / heart health7/1010/10Stronger for Chia
Inflammation (general)1/105/10Stronger for Chia
Metabolic support1/106/10Stronger for Chia
Skin irritation1/105/10Stronger for Chia

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

Vitamin C and carotenoids[4]

Sea buckthorn berries are among the richest natural sources of vitamin C, along with beta-carotene and other carotenoids.

Carotenoids
Omega-7 fatty acids (palmitoleic acid)[4]

A distinctive fatty-acid profile, particularly rich in palmitoleic acid (omega-7), the basis of the oil's skin- and mucous-membrane-healing reputation.

Flavonoids[1]

Antioxidant flavonoids contributing to the plant's anti-inflammatory activity.

Flavonoids
Alpha-linolenic acid (omega-3 fatty acid)[1]

The dominant fatty acid of chia oil, one of the richest plant sources of omega-3 known.

Mucilage polysaccharides (seed coat)[2]

Responsible for the seed's characteristic gel-forming property when soaked.

MucilagePolysaccharides
Phenolic antioxidants (chlorogenic acid, caffeic acid, quercetin, kaempferol)[1]

Contribute to the seed's antioxidant activity.

Chlorogenic acidCaffeic acidQuercetinKaempferol
Protein and dietary fibre[2]

Chia is a complete plant protein source and exceptionally high in dietary fibre.

Pharmacological Actions

Anti-inflammatory[4, 7, 15, 16, 17]
Anticancer (preclinical)[8, 13]
Antidiabetic (blood-sugar lowering)[15, 16, 17]
Antioxidant[4, 10, 11, 12, 15, 16, 17]
Emollient / skin-soothing[5, 15, 16, 17]
Immunomodulator / immune support[9, 14, 15, 16, 17]
Vulnerary (wound healing)[5, 15, 16, 17]
Anti-inflammatory[2, 9, 10, 11, 12]
Antioxidant[1, 2, 4, 7, 10, 11, 12]
Digestive aid[11, 12]

Traditional & Indicated Uses

Arthritis / joint pain[15, 16, 17]Traditional · 1/10

inferred from anti-inflammatory action

Evidence: 1
Label: Arthritis / joint pain
Blood sugar / diabetes support[15, 16, 17]Traditional · 1/10

inferred from antidiabetic action

Evidence: 1
Label: Blood sugar / diabetes support
Bruising[15, 16, 17]Traditional · 1/10

inferred from vulnerary action

Evidence: 1
Label: Bruising
Cancer (anticancer research)[8, 13]Traditional · 2/10

inferred from anticancer action

Evidence: 2
Label: Cancer (anticancer research)
Cardiovascular / heart health[6, 15, 16, 17]Good · 7/10
Evidence: 7
Label: Cardiovascular / heart health
Cold & flu[15, 16, 17]Traditional · 1/10

inferred from immunomodulator action

Evidence: 1
Label: Cold & flu
Eczema[15, 16, 17]Traditional · 1/10

inferred from emollient action

Evidence: 1
Label: Eczema
Immune support[15, 16, 17]Traditional · 1/10
Evidence: 1
Label: Immune support
Inflammation (general)[15, 16, 17]Traditional · 1/10

inferred from anti-inflammatory action

Evidence: 1
Label: Inflammation (general)
Metabolic support[15, 16, 17]Traditional · 1/10

inferred from antidiabetic action

Evidence: 1
Label: Metabolic support
Skin irritation[15, 16, 17]Traditional · 1/10

inferred from anti-inflammatory action

Evidence: 1
Label: Skin irritation
Wounds[15, 16, 17]Traditional · 1/10

inferred from vulnerary action

Evidence: 1
Label: Wounds
Arthritis / joint pain[11, 12]Moderate · 5/10

inferred from anti-inflammatory action

Evidence: 5
Label: Arthritis / joint pain
Bloating[11, 12]Moderate · 5/10

inferred from digestive action

Evidence: 5
Label: Bloating
Cardiovascular / heart health[3, 5, 6, 9, 11, 12, 13]Strong · 10/10
Evidence: 10
Label: Cardiovascular / heart health
Indigestion[11, 12]Moderate · 5/10

inferred from digestive action

Evidence: 5
Label: Indigestion
Inflammation (general)[9, 11, 12]Moderate · 5/10

inferred from anti-inflammatory action

Evidence: 5
Label: Inflammation (general)
Metabolic support[11, 12, 13]Moderate · 6/10
Evidence: 6
Label: Metabolic support
Skin irritation[11, 12]Moderate · 5/10

inferred from anti-inflammatory action

Evidence: 5
Label: Skin irritation

Safety, Cautions & Contraindications

Safety note[15, 16, 17]Caution

Berries and juice are safe as food. Seed oil is safe topically and orally in moderate amounts. May have mild anticoagulant effects. May lower blood pressure and blood sugar — use caution with medications. Allergic reactions are rare.

Safety note[15, 16, 17, 18]Info

Duke (2002) rates sea buckthorn as +++ and notes antioxidant, hepatoprotective, antiulcer, and vulnerary activities at the experimental level (score 1). The berries are exceptionally rich in vitamins C (one of the highest natural sources) and E, carotenoids, flavonoids, and omega-7 fatty acids (palmitoleic acid). Duke recommends sea buckthorn as a 'food farmacy' — consumed as part of the regular diet for its nutritional-medicinal benefits. Its radioprotective properties have been studied, though without strong clinical validation. No significant safety concerns at food doses (Duke, 2002).

Safety note[11, 12, 13]Info

Never swallow a spoon of dry chia seeds and “chase” with water. They can swell fast and (rarely) cause a blockage, especially if someone already has swallowing problems (American College of Gastroenterology, 2014) Blood pressure / diabetes meds: if you’re on medication for blood pressure or blood sugar, chia as a major daily addition may slightly add to the effect for some people—monitor and talk to your clinician (Saadh et al., 2024) (Pam et al., 2024).

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

Duke (2002) does not include a dedicated entry for Chia (Salvia hispanica) in the Handbook of Medicinal Herbs, Second Edition.

External Ids

Gbif: 3039285
Powo: urn:lsid:ipni.org:names:323851-1
Wikidata: Q165378
Gbif: 2926992
Wikidata: Q1071585

Botanical Description

Thorny, deciduous shrub or small tree with narrow, silvery-grey, willow-like leaves. The plant is dioecious (separate male and female plants); female plants bear dense clusters of small, bright orange-yellow berries tightly packed along the branches, giving a striking display in autumn.[4]

Height: 1-6 m (occasionally to 10 m)
Habit: Thorny, deciduous, dioecious shrub or small tree
Leaves: Narrow, silvery-grey, willow-like
Flowers: Small, inconspicuous, wind-pollinated, on separate male and female plants
Stem: Thorny, much-branched
Root: Extensive, nitrogen-fixing root system with suckering growth
Fruit: Small, bright orange-yellow berry, densely clustered along the branches (female plants only)
Flowering Period: Early spring, before leaf-out

Annual herb (Lamiaceae), 1-1.5 m tall, with square stems. Leaves are opposite, ovate to oblong with a toothed margin. Small purple to white, two-lipped flowers are borne in dense terminal spikes, followed by small oval seeds (grey-brown, mottled, or occasionally white) - the part used.[1]

Height: 1-1.5 m
Habit: Erect annual herb
Leaves: Opposite, ovate to oblong, toothed
Flowers: Small, purple to white, two-lipped, in dense terminal spikes
Stem: Square, erect
Root: Fibrous annual root system
Fruit: Small oval seeds, grey-brown and mottled (or occasionally white)
Flowering Period: Variable, typically late summer in its native range

Habitat

Grows on coastal dunes, riverbanks and disturbed, nutrient-poor or sandy soils; native across temperate Europe and Asia, tolerant of harsh, exposed conditions and cold climates, notably widespread in the Himalayan and Tibetan plateau region.[4]

Native to central and southern Mexico and Guatemala, historically a staple crop of Aztec and Mayan agriculture; now cultivated commercially in warm subtropical and tropical regions worldwide (notably South America and Australia) as a food crop.[1]

Harvesting

Berries are hand-picked (often by cutting whole fruiting branches, given the thorns and fragile fruit) in late summer to autumn once ripe; leaves are picked through the growing season, and seeds are separated from pressed fruit for seed oil.[4]

Parts: Fruit, Leaf, Seed
Season: Fruit in late summer to autumn; leaf through the growing season

Seed heads are harvested once dry, typically in autumn, and threshed to release the small seeds.[1]

Parts: Seed
Season: Autumn, once seed heads have dried

Traditional Uses

Sea buckthorn has a long Tibetan, Mongolian and traditional Chinese medicine history as a nutritive and healing tonic for respiratory, digestive and skin complaints, and the berries are exceptionally rich in vitamin C and carotenoids; the oil, from both fruit and seed, has a particular traditional and modern reputation for soothing and healing irritated or damaged skin and mucous membranes.[1, 4]

Chia seed has an ancient Mesoamerican food-medicine tradition as an energy-sustaining staple food for Aztec warriors and runners. Its modern popularity centres on its dense nutrient profile - fibre, omega-3 (alpha-linolenic acid) fatty acids, protein and antioxidants - studied for metabolic, cardiovascular and digestive support.[1]

Preparations

Fruit/seed oil[4]

Cold-pressed oil from the berry pulp or seed, applied topically for skin healing or taken orally as a nutritional/antioxidant supplement.

Whole or ground seed (culinary)[1]

Eaten whole, ground, or soaked to form a gel (due to the seed's high mucilage content), stirred into food or drinks.

References

REF-0836, REF-0837, REF-0838, REF-2317, REF-2318, REF-2319, REF-2320, REF-2321, REF-2322, REF-2323, REF-2324, REF-2325, REF-2326, REF-2327
REF-1263, REF-1264, REF-1265, REF-1266, REF-1267, REF-1268, REF-1269, REF-1270, REF-1271, REF-1272

Lookalikes Review

Outcome: none-known
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

Dosage

Not documented

Whole/ground seed[1, 2]

Typical dietary and study amounts range from about 15-25 g (roughly 1-2 tablespoons) of seed daily, usually soaked or ground for better digestibility. Educational reference only, not a prescription; always take with adequate liquid, never dry-swallowed.

References & Sources

  1. Liu, L., Wen, T., Xiao, Y., Chen, H. et al (2024) 'Sea buckthorn extract mitigates chronic obstructive pulmonary disease by suppression of ferroptosis via scavenging ROS and blocking p53/MAPK pathways', Journal of Ethnopharmacology, 336, pp. 118726. doi:10.1016/j.jep.2024.118726 Preclinical
    https://doi.org/10.1016/j.jep.2024.118726
  2. Wen, P., Zhao, P., Qin, G., Tang, S. et al (2018) 'Genotoxicity and teratogenicity of seabuckthorn (Hippophae rhamnoides L.) berry oil', Drug and Chemical Toxicology, 43(4), pp. 391-397. doi:10.1080/01480545.2018.1497047 Preclinical
    https://doi.org/10.1080/01480545.2018.1497047
  3. Gong, G., Guan, Y.Y., Zhang, Z.L., Rahman, K. et al (2020) 'Isorhamnetin: A review of pharmacological effects', Biomedicine & Pharmacotherapy, 128, pp. 110301. doi:10.1016/j.biopha.2020.110301 Traditional / reference
    https://doi.org/10.1016/j.biopha.2020.110301
  4. Suryakumar, G. and Gupta, A (2011) 'Medicinal and therapeutic potential of Sea buckthorn (Hippophae rhamnoides L.)', Journal of Ethnopharmacology, 138(2), pp. 268-278. doi:10.1016/j.jep.2011.09.024 Meta-analysis / review
    https://doi.org/10.1016/j.jep.2011.09.024
  5. Pundir, S., Garg, P., Dviwedi, A., Ali, A., Kapoor, V.K., Kapoor, D., Kulshrestha, S., Lal, U.R. and Negi, P (2021) 'Ethnomedicinal uses, phytochemistry and dermatological effects of Hippophae rhamnoides L.: a review', Journal of Ethnopharmacology, 266, pp. 113434. doi:10.1016/j.jep.2020.113434 Meta-analysis / review
    https://doi.org/10.1016/j.jep.2020.113434
  6. Chen, Y., He, W., Cao, H., Wang, Z., Liu, J., Wang, B. and Wang, C (2024) 'Research progress of sea buckthorn (Hippophae rhamnoides) in prevention and treatment of cardiovascular disease', Frontiers in Cardiovascular Medicine, 11, pp. 1477636. doi:10.3389/fcvm.2024.1477636 Meta-analysis / review
    https://doi.org/10.3389/fcvm.2024.1477636
  7. Ganju, L., Padwad, Y., Singh, R., Karan, D., Chanda, S., Chopra, M.K., Bhatnagar, P., Kashyap, R. and Sawhney, R.C (2005) 'Anti-inflammatory activity of seabuckthorn (Hippophae rhamnoides) leaves', International Immunopharmacology, 5(12), pp. 1675-1684. doi:10.1016/j.intimp.2005.03.017 Preclinical
    https://doi.org/10.1016/j.intimp.2005.03.017
  8. Yasukawa, K., Kitanaka, S., Kawata, K. and Goto, K (2009) 'Anti-tumor promoters phenolics and triterpenoid from Hippophae rhamnoides', Fitoterapia, 80(3), pp. 164-167. doi:10.1016/j.fitote.2009.01.006 Preclinical
    https://doi.org/10.1016/j.fitote.2009.01.006
  9. Zhu, Y., Wu, M., Li, X., Wang, Y., Li, M. and Zhou, H (2023) 'Flash extraction, characterization, and immunoenhancement activity of polysaccharide from Hippophae rhamnoides Linn', Chemistry & Biodiversity, 20(3), pp. e202200776. doi:10.1002/cbdv.202200776 Preclinical
    https://doi.org/10.1002/cbdv.202200776
  10. Zuchowski, J (2023) 'Phytochemistry and pharmacology of sea buckthorn (Elaeagnus rhamnoides; syn. Hippophae rhamnoides): progress from 2010 to 2021', Phytochemistry Reviews, 22(1), pp. 3-33. doi:10.1007/s11101-022-09832-1 Meta-analysis / review
    https://doi.org/10.1007/s11101-022-09832-1
  11. Ciesarova, Z., Murkovic, M., Cejpek, K., Kreps, F., Tobolkova, B., Koplik, R., Belajova, E., Kukurova, K., Dasko, L., Panovska, Z., Revenco, D. and Burcova, Z (2020) 'Why is sea buckthorn (Hippophae rhamnoides L.) so exceptional? A review', Food Research International, 133, pp. 109170. doi:10.1016/j.foodres.2020.109170 Meta-analysis / review
    https://doi.org/10.1016/j.foodres.2020.109170
  12. Ma, X., Yang, W., Kallio, H. and Yang, B (2022) 'Health promoting properties and sensory characteristics of phytochemicals in berries and leaves of sea buckthorn (Hippophae rhamnoides)', Critical Reviews in Food Science and Nutrition, 62(14), pp. 3798-3816. doi:10.1080/10408398.2020.1869921 Meta-analysis / review
    https://doi.org/10.1080/10408398.2020.1869921
  13. Dvorska, D., Sebova, D., Kajo, K., Kapinova, A., Svajdlenka, E., Goga, M., Frenak, R., Treml, J., Mersakova, S., Strnadel, J., Mazurakova, A., Baranova, I., Halasova, E., Brozmanova, M., Biringer, K., Kassayova, M., Dankova, Z., Smejkal, K., Hornak, S., Mojzis, J., Sadlonova, V., Brany, D., Kello, M. and Kubatka, P (2025) 'Chemopreventive and therapeutic effects of Hippophae rhamnoides L. fruit peels evaluated in preclinical models of breast carcinoma', Frontiers in Pharmacology, 16, pp. 1561436. doi:10.3389/fphar.2025.1561436 Preclinical
    https://doi.org/10.3389/fphar.2025.1561436
  14. Ling, N., Tian, H., Wang, Q., Gao, M., Xu, G., Sun, Y., Song, D., Li, W. and Ji, C (2024) 'Advance in Hippophae rhamnoides polysaccharides: extraction, structural characteristics, pharmacological activity, structure-activity relationship and application', International Journal of Biological Macromolecules, 270, pp. 132420. doi:10.1016/j.ijbiomac.2024.132420 Meta-analysis / review
    https://doi.org/10.1016/j.ijbiomac.2024.132420
  15. Chodak, A (2014) 'Sea buckthorn — values and medicinal properties', 21(1), pp. 72--75. Traditional / reference
    https://scholar.google.com/scholar?q=Sea%20buckthorn%20%E2%80%94%20values%20and%20medicinal%20properties
  16. Rousi, A (1971) 'The genus Hippophae L.: a taxonomic study', 8(3), pp. 177--227. Traditional / reference
    https://scholar.google.com/scholar?q=The%20genus%20Hippophae%20L.%3A%20a%20taxonomic%20study
  17. Zuñiga-López, M.C. et al (2021) 'Sea buckthorn (Hippophae rhamnoides L.) polysaccharides', 26(19). Traditional / reference
    https://scholar.google.com/scholar?q=Sea%20buckthorn%20%28Hippophae%20rhamnoides%20L.%29%20polysaccharides
  18. 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
  1. Khalid, W., Arshad, M.S., Aziz, A., Rahim, M.A. and others (2023) 'Chia seeds (Salvia hispanica L.): A therapeutic weapon in metabolic disorders', Food Science & Nutrition, 11(1), pp. 3-16. doi:10.1002/fsn3.3035 Meta-analysis / review
    https://doi.org/10.1002/fsn3.3035
  2. Enes, B.N., Moreira, L.P.D., Silva, B.P., Grancieri, M. and others (2020) 'Chia seed (Salvia hispanica L.) effects and their molecular mechanisms on unbalanced diet experimental studies: A systematic review', Journal of Food Science, 85(2), pp. 226-239. doi:10.1111/1750-3841.15003 Meta-analysis / review
    https://doi.org/10.1111/1750-3841.15003
  3. Silva, L.A., Verneque, B.J.F., Mota, A.P.L. and Duarte, C.K (2021) 'Chia seed (Salvia hispanica L.) consumption and lipid profile: a systematic review and meta-analysis', Food & Function, 12(19), pp. 8835-8849. doi:10.1039/d1fo01287h Meta-analysis / review
    https://doi.org/10.1039/d1fo01287h
  4. Valdivia-Lopez, M.A. and Tecante, A (2015) 'Chia (Salvia hispanica): A Review of Native Mexican Seed and its Nutritional and Functional Properties', Advances in Food and Nutrition Research, 75, pp. 53-75. doi:10.1016/bs.afnr.2015.06.002 Meta-analysis / review
    https://doi.org/10.1016/bs.afnr.2015.06.002
  5. Teoh, S.L., Lai, N.M., Vanichkulpitak, P., Vuksan, V. and others (2018) 'Clinical evidence on dietary supplementation with chia seed (Salvia hispanica L.): a systematic review and meta-analysis', Nutrition Reviews, 76(4), pp. 219-242. doi:10.1093/nutrit/nux071 Meta-analysis / review
    https://doi.org/10.1093/nutrit/nux071
  6. de Souza Ferreira, C., de Sousa Fomes, L.F., da Silva, G.E. and Rosa, G (2015) 'Effect of chia seed (Salvia hispanica L.) consumption on cardiovascular risk factors in humans: a systematic review', Nutricion Hospitalaria, 32(5), pp. 1909-1918. doi:10.3305/nh.2015.32.5.9394 Meta-analysis / review
    https://doi.org/10.3305/nh.2015.32.5.9394
  7. Knez Hrncic, M., Ivanovski, M., Cor, D. and Knez, Z (2019) 'Chia Seeds (Salvia hispanica L.): An Overview-Phytochemical Profile, Isolation Methods, and Application', Molecules, 25(1), pp. 11. doi:10.3390/molecules25010011 Meta-analysis / review
    https://doi.org/10.3390/molecules25010011
  8. Oliva, M.E., Ferreira, M.D.R., Vega Joubert, M.B. and D'Alessandro, M.E (2020) 'Salvia hispanica L. (chia) seed promotes body fat depletion and modulates adipocyte lipid handling in sucrose-rich diet-fed rats', Food Research International, 139, pp. 109842. doi:10.1016/j.foodres.2020.109842 Preclinical
    https://doi.org/10.1016/j.foodres.2020.109842
  9. Vega Joubert, M.B., Degrave, V., Ingaramo, P., Oliva, M.E. and others (2022) 'Salvia hispanica L. (chia) seed improves liver inflammation and endothelial dysfunction in an experimental model of metabolic syndrome', Food & Function, 13(21), pp. 11249-11261. doi:10.1039/d2fo02216h Preclinical
    https://doi.org/10.1039/d2fo02216h
  10. Grancieri, M., Martino, H.S.D. and Gonzalez de Mejia, E (2019) 'Chia Seed (Salvia hispanica L.) as a Source of Proteins and Bioactive Peptides with Health Benefits: A Review', Comprehensive Reviews in Food Science and Food Safety, 18(2), pp. 480-499. doi:10.1111/1541-4337.12423 Meta-analysis / review
    https://doi.org/10.1111/1541-4337.12423
  11. Royal Botanic Gardens, Kew (n.d.). Available at: https://powo.science.kew.org Traditional / reference
    https://powo.science.kew.org
  12. Vuksan, V., Jenkins, A.L., Dias, A.G., Lee, A.S., Jovanovski, E., Rogovik, A.L. and Hanna, A (2010) 'Reduction in postprandial glucose excursion and prolongation of satiety: possible explanation of the long-term effects of whole grain Salba (Salvia hispanica L.)', 64(4), pp. 436--438. doi:10.1038/ejcn.2009.159 Randomized trial
    https://doi.org/10.1038/ejcn.2009.159
  13. Chandalia, M., Garg, A., Lutjohann, D., von Bergmann, K., Grundy, S.M. and Brinkley, L.J (2000) 'Beneficial effects of high dietary fiber intake in patients with type 2 diabetes mellitus', 342(19), pp. 1392--1398. doi:10.1056/nejm200005113421903 Randomized trial
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  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.