Plant Comparison

Peach-leaved bellflower vs Lungwort

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
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Plant APeach-leaved bellflowerCampanula persicifoliaCampanulaceaeFull monograph →
Plant BLungwortPulmonaria officinalisBoraginaceaeFull monograph →

At a glance

Peach-leaved bellflower and Lungwort: they share 4 indicated uses (inflammation (general), skin irritation, sore throat, …); 2 pharmacological actions in common.

Peach-leaved bellflowerLungwort
Constituents42
Pharmacological actions44
Indicated uses67
Safety notes22
Cited sources512
Indicated uses
Only Peach-leaved bellflower
WoundsInfection (general)
Shared (4)
Inflammation (general)Skin irritationSore throatRespiratory support
Only Lungwort
Arthritis / joint painBronchitisCough
Pharmacological actions
Only Peach-leaved bellflower
AntimicrobialVulnerary (wound healing)
Shared (2)
AntioxidantAnti-inflammatory
Only Lungwort
Demulcent (soothing mucilage)Expectorant

Evidence face-off — shared uses

ConditionPeach-leaved bellflowerLungwortVerdict
Inflammation (general)7/102/10Stronger for Peach-leaved bellflower
Skin irritation7/101/10Stronger for Peach-leaved bellflower
Sore throat7/101/10Stronger for Peach-leaved bellflower
Respiratory support7/102/10Stronger for Peach-leaved bellflower

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

Phenolic acids (chlorogenic and caffeic acids)[1, 3]

Chlorogenic and caffeic acids are the dominant phenolics of bellflowers (antioxidant).

Phenolic acidsChlorogenic acidCaffeic acid
Flavonoids (quercetin and kaempferol glycosides)[1, 2]

Flavonol glycosides such as quercetin and kaempferol glycosides.

FlavonoidsQuercetinKaempferol
Polyacetylenes (lobetyol, lobetyolin)[1, 2]

Acetylenic (polyacetylene) compounds lobetyol and lobetyolin, characteristic antioxidant constituents of the Campanulaceae.

Triterpenes and saponins[1]

Triterpenes and saponins reported across the genus Campanula.

Triterpene saponinsSaponins
Phenolic acids (rosmarinic, lithospermic and salvianolic acids)[10, 11]

The main antioxidant and COX-2-inhibiting constituents; LC-MS/MS profiling of the aerial parts identified dozens of phenolic compounds (caffeic acid esters and danshensu/dicaffeic-acid conjugates), nine of them previously undescribed, with marked seasonal variation.

Phenolic compoundsPhenolic acidsCaffeic acidRosmarinic acid
Mucilage, flavonoids, allantoin and silicic acid[2, 10]

Soothing and supporting constituents underlying the traditional respiratory use.

FlavonoidsAllantoinMucilage

Pharmacological Actions

Antioxidant[1, 2, 3, 4]
Anti-inflammatory[1, 3]

Bellflower extracts downregulate inflammatory cytokines (TNF-alpha, IL-1beta).

Antimicrobial[1, 4]

Antibacterial activity of bellflower extracts/hydrolysates (genus Campanula).

Vulnerary (wound healing)[3]

Campanula macrostachya extract promoted fibroblast wound closure in vitro (genus congener).

Anti-inflammatory[10, 12]

Anti-inflammatory (cyclooxygenase-2 inhibition) and antioxidant

Antioxidant[1, 4, 7, 10, 12]

Anti-inflammatory (cyclooxygenase-2 inhibition) and antioxidant

Demulcent (soothing mucilage)[10]

Traditional demulcent / expectorant for cough, bronchitis, sore throat and respiratory catarrh (mucilage and saponins)

Expectorant[10]

Traditional demulcent / expectorant for cough, bronchitis, sore throat and respiratory catarrh (mucilage and saponins)

Traditional & Indicated Uses

Inflammation (general)[1, 3]Good · 7/10
Evidence: 7
Label: Inflammation (general)
Wounds[3]Traditional · 2/10

Bellflower extract promoted fibroblast wound healing in vitro (genus congener).

Evidence: 2
Label: Wounds
Skin irritation[1, 3]Good · 7/10

inferred from anti-inflammatory / traditional topical skin use

Evidence: 7
Label: Skin irritation
Infection (general)[4]Traditional · 2/10

inferred from antimicrobial action

Evidence: 2
Label: Infection (general)
Sore throat[1]Good · 7/10

inferred from traditional gargle use for throat/mouth inflammation

Evidence: 7
Label: Sore throat
Respiratory support[1]Good · 7/10

inferred from genus Campanula traditional use for respiratory complaints

Evidence: 7
Label: Respiratory support
Arthritis / joint pain[10, 12]Traditional · 2/10

inferred from anti-inflammatory action

Evidence: 2
Label: Arthritis / joint pain
Bronchitis[10]Traditional · 1/10

Traditional demulcent / expectorant for cough, bronchitis, sore throat and respiratory catarrh (mucilage and saponins)

Evidence: 1
Label: Bronchitis
Cough[10]Traditional · 1/10

Traditional demulcent / expectorant for cough, bronchitis, sore throat and respiratory catarrh (mucilage and saponins)

Evidence: 1
Label: Cough
Inflammation (general)[10, 12]Traditional · 2/10

inferred from anti-inflammatory action

Evidence: 2
Label: Inflammation (general)
Respiratory support[3, 7, 10]Traditional · 2/10

Traditional demulcent / expectorant for cough, bronchitis, sore throat and respiratory catarrh (mucilage and saponins)

Evidence: 2
Label: Respiratory support
Skin irritation[10]Traditional · 1/10

inferred from demulcent action

Evidence: 1
Label: Skin irritation
Sore throat[10]Traditional · 1/10

Traditional demulcent / expectorant for cough, bronchitis, sore throat and respiratory catarrh (mucilage and saponins)

Evidence: 1
Label: Sore throat

Safety, Cautions & Contraindications

Safety noteCaution

Peach-leaved bellflower is chiefly an edible and ornamental plant, and very little is known about medicinal use or safety of the species specifically; there are no clinical data. Use culinary amounts, and avoid medicinal doses in pregnancy and breastfeeding.

Safety note[1]Info

The pharmacological data here are for the genus Campanula and related bellflower species, not for Campanula persicifolia itself; interpret with caution.

Safety note[10]Serious

As a member of the borage family (Boraginaceae), which can contain hepatotoxic pyrrolizidine alkaloids, prolonged or high-dose internal use is best avoided; use in pregnancy and breastfeeding is not recommended.

Safety note[10]Info

Traditional use only; clinical evidence in humans is limited, so a cough or respiratory complaint that persists needs medical assessment.

External Ids

Gbif: 5411475
Wikidata: Q790170
Gbif: 5341204
Wikidata: Q324331

Synonyms

Campanula persicifolia subsp. persicifolia

Not documented

Botanical Description

An elegant perennial herb of the bellflower family, 30-90 cm tall, growing from a slender rhizome. It forms an overwintering rosette of narrow, leathery, finely-toothed leaves that resemble those of a peach tree (hence 'peach-leaved'); the few stem leaves are similar but smaller. The large, broad, open bell-shaped flowers - about 3-4 cm across, clear blue to lilac or white - are borne in a loose, one-sided spike in summer. Like other bellflowers it exudes a white latex when cut. It is widely grown as an ornamental garden perennial, and its young leaves and roots have historically been eaten.[1]

Height: 30-90 cm
Habit: Slender rhizomatous perennial with an evergreen leaf rosette
Leaves: Narrow, leathery, finely toothed, peach-leaf-like; mostly in a basal rosette
Flowers: Large, broad, open bells (3-4 cm), clear blue to lilac or white, in a loose one-sided spike
Stem: Erect, slender, little-branched, exuding white latex when cut
Root: Slender rhizome with fibrous roots
Fruit: A nodding capsule opening by pores near the top
Flowering Period: June-August

Low, hairy perennial herb (Boraginaceae), 15-30 cm tall. Basal leaves are long-stalked, ovate to lance-shaped, often white-spotted - the spotted pattern was historically likened to diseased lung tissue under the medieval Doctrine of Signatures, giving rise to the name 'lungwort' - and covered in bristly hairs. Funnel-shaped flowers open pink and turn blue as they mature, borne in small coiled clusters (cymes).[10]

Height: 15-30 cm
Habit: Low, hairy perennial herb
Leaves: Long-stalked, ovate to lance-shaped, often white-spotted, bristly-hairy
Flowers: Funnel-shaped, opening pink and turning blue with age, in small coiled cymes
Stem: Hairy, low-growing
Root: Short rhizome with fibrous roots
Fruit: Small nutlets (typical Boraginaceae)
Flowering Period: March-May

Habitat

Open woodland, wood margins, scrub, hedge banks and dry to moist grassland across much of Europe and into western Asia; also very widely cultivated and naturalised as a garden ornamental. It favours well-drained soils in sun or light shade.[1]

Native to central and southern Europe, growing in damp, shaded woodland, hedgebanks and scrub on humus-rich soils; widely cultivated as a shade garden plant.[10]

Harvesting

Young leaves and shoots are gathered in spring for use as a salad or pot-herb (mild, faintly sweet, like other bellflowers and rampion); the flowers are gathered in summer, and the root can be dug in autumn. Chiefly a food and ornamental plant rather than a medicinal drug.[5]

Parts: Leaf, Flower, Root
Season: Young leaves/shoots in spring; flowers in summer; root in autumn

Aerial flowering parts are cut during flowering (spring); the plant can also be gathered later in the growing season, though the phenolic constituent profile is documented to differ measurably between spring and autumn harvests.[11]

Parts: Aerial parts (flowering herb)
Season: Spring (flowering); constituent profile varies spring vs autumn

Traditional Uses

Peach-leaved bellflower is primarily an edible and ornamental plant rather than a classical medicinal herb: its young leaves and roots have long been eaten as a wild salad green or pot-herb, in the same way as its relative rampion (Campanula rapunculus). Folk use of bellflowers (Campanula) includes a leaf or flower infusion as a gentle gargle and wash for sore throat and mouth inflammation, and topical use of the crushed herb on inflamed skin. More broadly, the genus Campanula has traditional records of use for inflammatory, respiratory and cardiovascular complaints, backed by its phenolic, flavonoid and triterpene chemistry.[1, 5]

Lungwort's spotted leaves inspired its traditional use, under the Doctrine of Signatures, as a remedy for lung and respiratory complaints - coughs, bronchitis, catarrh and sore throat - valued for its soothing mucilage and astringent tannins. Modern research confirms antioxidant and anti-inflammatory (COX-2-inhibiting) activity of its phenolic-rich extract, though clinical trial evidence in humans remains limited.[10]

Preparations

Salad green / pot-herb[5]

Young leaves and shoots eaten raw in salads or lightly cooked as a mild pot-herb; the root is also edible (as with rampion bellflower).

Infusion / gargle[1]

A leaf or flower infusion used traditionally as a gentle gargle and wash for sore throat and mouth inflammation.

Infusion (tea)[10]

Dried aerial parts steeped in hot water, the traditional respiratory remedy.

References

REF-2816, REF-2817, REF-2818, REF-2819, REF-2820
REF-1544, REF-1545, REF-1546, REF-1547, REF-1548, REF-1549, REF-1550, REF-1551, REF-1552

Lookalikes Review

[1]

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

Infusion (tea)[10]

Traditional guidance suggests roughly 2-4 g dried herb per cup as an infusion, up to three times daily, for short-term use; avoid prolonged or high-dose internal use given the borage family's potential pyrrolizidine-alkaloid content. Educational reference only, not a prescription.

References & Sources

  1. Alhage, J. and Rahman, A.A. and Al-Bayssari, C. and Raad, M.T (2025) 'Bioactive Compounds Isolated from the Campanula Genus: A Review', Molecules, 30(23), pp. 4495. doi:10.3390/molecules30234495 Meta-analysis / review
    https://doi.org/10.3390/molecules30234495
  2. Dumlu, M.U. and Gurkan, E. and Tuzlaci, E (2008) 'Chemical composition and antioxidant activity of Campanula alliariifolia', Natural Product Research, 22(6), pp. 477-482. doi:10.1080/14786410701640429 Preclinical
    https://doi.org/10.1080/14786410701640429
  3. Sarikurkcu, C. and Kargin Solmaz, F.O. and Isitez, N. and Erdogmus, S.F (2026) 'Ultrasound-assisted aqueous extract of Campanula macrostachya enhances fibroblast repair via antioxidant and cytokine-modulatory mechanisms', Protoplasma, 263(4), pp. 1361-1372. doi:10.1007/s00709-026-02192-z Preclinical
    https://doi.org/10.1007/s00709-026-02192-z
  4. Sarabandi, K. and Dashipour, A. and Izadi, Z. and Akbarbaglu, Z. and Katouzian, I. and Jafari, S.M (2023) 'Nutritional, biological, and structural properties of bioactive peptides from bellflower (Campanula latifolia), Persian-willow, and bitter-orange pollens', Journal of Food Science, 88(7), pp. 3119-3133. doi:10.1111/1750-3841.16658 Preclinical
    https://doi.org/10.1111/1750-3841.16658
  5. Guarrera, P.M. and Savo, V (2016) 'Wild food plants used in traditional vegetable mixtures in Italy', Journal of Ethnopharmacology, 185, pp. 202-234. doi:10.1016/j.jep.2016.02.050 Traditional / reference
    https://doi.org/10.1016/j.jep.2016.02.050
  1. Ignjatijevic, A., Andjic, T., Ljesevic, M., Nikolic, B. and others (2025) 'Assessment of Antioxidant Activity and Dose-Dependent Effect on Genotoxicity/Antigenotoxicity of Pulmonaria officinalis Ethanolic Extract', Pharmaceutics, 17(9), pp. 1134. doi:10.3390/pharmaceutics17091134 Preclinical
    https://doi.org/10.3390/pharmaceutics17091134
  2. Krzaczek, T. and others (1995) 'Flavonoid glycosides from aerial parts of Pulmonaria officinalis', Planta Medica, 61(5), pp. 488. doi:10.1055/s-2006-959385 Preclinical
    https://doi.org/10.1055/s-2006-959385
  3. Krzyzanowska-Kowalczyk, J. and others (2019) 'Pulmonaria officinalis L. Extract in Cystic Fibrosis: In Vitro Evidence on Staphylococcus aureus Clinical Isolates', Molecules, 24(6), pp. 1151. doi:10.3390/molecules24061151 Preclinical
    https://doi.org/10.3390/molecules24061151
  4. Neagu, E., Radu, G.L., Albu, C. and Paun, G (2016) 'Antioxidant activity, acetylcholinesterase and tyrosinase inhibitory potential of Pulmonaria officinalis and Centaurium umbellatum extracts', Saudi Journal of Biological Sciences, 25(3), pp. 578-585. doi:10.1016/j.sjbs.2016.02.016 Preclinical
    https://doi.org/10.1016/j.sjbs.2016.02.016
  5. Akram, M. and Rashid, A (2017) 'Anti-coagulant activity of plants: mini review', Journal of Thrombosis and Thrombolysis, 44(3), pp. 406-411. doi:10.1007/s11239-017-1546-5 Meta-analysis / review
    https://doi.org/10.1007/s11239-017-1546-5
  6. Byshevskii, A.Sh., Gerbert, I.Ia., Dement'eva, I.A., Leven, P.I. and Chiriat'ev, E.A (1990) 'Nature, properties and the mechanism of the effect on blood coagulation of the preparation obtained from Pulmonaria officinalis', Gematologiia i Transfuziologiia, 35(10), pp. 6-9. Preclinical
    https://scholar.google.com/scholar?q=Nature%2C%20properties%20and%20the%20mechanism%20of%20the%20effect%20on%20blood%20coagulation%20of%20the%20preparation%20obtained%20from%20Pulmonaria%20officinalis
  7. Ivanova, D., Gerova, D., Chervenkov, T. and Yankova, T (2005) 'Polyphenols and antioxidant capacity of Bulgarian medicinal plants', Journal of Ethnopharmacology, 96(1-2), pp. 145-150. doi:10.1016/j.jep.2004.08.033 Preclinical
    https://doi.org/10.1016/j.jep.2004.08.033
  8. Neuhauser, C., Schwarzinger, B., Schwarzinger, C., Feichtinger, M. and others (2024) 'Insulin-Mimetic Activity of Herbal Extracts Identified with Large-Scale Total Internal Reflection Fluorescence Microscopy', Nutrients, 16(14), pp. 2182. doi:10.3390/nu16142182 Preclinical
    https://doi.org/10.3390/nu16142182
  9. Luthy, J., Brauchli, J., Zweifel, U., Schmid, P. and Schlatter, C (1984) 'Pyrrolizidine alkaloids in medicinal plants of Boraginaceae: Borago officinalis L. and Pulmonaria officinalis L', Pharmaceutica Acta Helvetiae, 59(9-10), pp. 242-246. Preclinical
    https://scholar.google.com/scholar?q=Pyrrolizidine%20alkaloids%20in%20medicinal%20plants%20of%20Boraginaceae%3A%20Borago%20officinalis%20L.%20and%20Pulmonaria%20officinalis%20L.
  10. Krzyzanowska-Kowalczyk, J., Kowalczyk, M., Ponczek, M.B., Pecio, L., Nowak, P. and Kolodziejczyk-Czepas, J (2021) 'Pulmonaria officinalis and Pulmonaria obscura Extracts as Mitigators of Peroxynitrite-Induced Oxidative Stress and Cyclooxygenase-2 Inhibitors - In Vitro and In Silico Studies', Molecules. doi:10.3390/molecules26030631 Traditional / reference
    https://doi.org/10.3390/molecules26030631
  11. Krzyzanowska-Kowalczyk, J. and Pecio, L. and Moldoch, J. and Ludwiczuk, A. and Kowalczyk, M (2018) 'Novel Phenolic Constituents of Pulmonaria officinalis L. LC-MS/MS Comparison of Spring and Autumn Metabolite Profiles', Molecules, 23(9). doi:10.3390/molecules23092277 Traditional / reference
    https://doi.org/10.3390/molecules23092277
  12. Krzyzanowska-Kowalczyk, J., Kolodziejczyk-Czepas, J., Kowalczyk, M., Pecio, L., Nowak, P. and Stochmal, A (2017) 'Yunnaneic Acid B, a Component of Pulmonaria officinalis Extract, Prevents Peroxynitrite-Induced Oxidative Stress in Vitro', Journal of Agricultural and Food Chemistry, 65(19), pp. 3827--3834. doi:10.1021/acs.jafc.7b00718 Preclinical
    https://doi.org/10.1021/acs.jafc.7b00718

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.