| Literature DB >> 32104188 |
Lucas Amaral-Machado1,2, Wógenes N Oliveira1, Susiane S Moreira-Oliveira1, Daniel T Pereira1, Éverton N Alencar3, Nicolas Tsapis2, Eryvaldo Sócrates T Egito1,3.
Abstract
Asthma, a disease classified as a chronic inflammatory disorder induced by airway inflammation, is triggered by a genetic predisposition or antigen sensitization. Drugs currently used as therapies present disadvantages such as high cost and side effects, which compromise the treatment compliance. Alternatively, traditional medicine has reported the use of natural products as alternative or complementary treatment. The aim of this review was to summarize the knowledge reported in the literature about the use of natural products for asthma treatment. The search strategy included scientific studies published between January 2006 and December 2017, using the keywords "asthma," "treatment," and "natural products." The inclusion criteria were as follows: (i) studies that aimed at elucidating the antiasthmatic activity of natural-based compounds or extracts using laboratory experiments (in vitro and/or in vivo); and (ii) studies that suggested the use of natural products in asthma treatment by elucidation of its chemical composition. Studies that (i) did not report experimental data and (ii) manuscripts in languages other than English were excluded. Based on the findings from the literature search, aspects related to asthma physiopathology, epidemiology, and conventional treatment were discussed. Then, several studies reporting the effectiveness of natural products in the asthma treatment were presented, highlighting plants as the main source. Moreover, natural products from animals and microorganisms were also discussed and their high potential in the antiasthmatic therapy was emphasized. This review highlighted the importance of natural products as an alternative and/or complementary treatment source for asthma treatment, since they present reduced side effects and comparable effectiveness as the drugs currently used on treatment protocols.Entities:
Year: 2020 PMID: 32104188 PMCID: PMC7040422 DOI: 10.1155/2020/1021258
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Figure 1Scheme of the immune response induced by allergen or antigen stimulation or the early stages of asthma. GM-CSF: granulocyte-macrophages colony-stimulating factor; IL: interleukin; C3b: opsonin; LOX-5: lipoxygenase type 5; ROS: reactive oxygen species; COX-2: cyclooxygenase type 2; LTB4: leukotriene type B; PGD2: prostaglandin type D (adapted from Bradding et al. [6].
List of natural compounds described in the literature reviewed.
| Product | Product form | Product source | Active compound | Compound class/type | Mechanism of action | Reference |
|---|---|---|---|---|---|---|
| 1,8-Cineol | Isolated compound | Essential oil of | 1,8-Cineol | Monoterpene | Reduces the expression of NF- | Greiner et al. [ |
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| 3-Methoxy-catalposide | Isolated compound |
| 3-Methoxy-catalposide | Iridoid glycoside | Inhibits the expression of cyclooxygenase (COX)-2, nitric oxide synthase (iNOS), and proinflammatory genes (IL-6, IL-1 | Ryu et al. [ |
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| Ethanolic extract | Roots | Not reported | Not reported | Bronchoprotective activity | Dey [ |
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| Aqueous extract | Barks | Not reported | Not reported | Bronchodilator and mast cell stabilizing activities | Kumar [ |
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| Extract and isolated compound | Methanolic extract and vegetable | Quercetin [2-(3, 4-dihydroxyphenyl)-3, 5, 7-trihydroxy-4H-1-benzopyran-4-one, 3, 3′, 4′, 5, 6-entahydroxyflavone] | Flavonoid | Reduce the production of proinflammatory cytokines (IL-4, IL-5, IL-13) and promote the relaxation of tracheal rings | Oliveira et al. [ |
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| Extract | Leaves of | Scholaricine, 19-epi-scholaricine, vallesamine, picrinine | Alkaloid | Reduce the eosinophilia, the production of proinflammatory cytokine (IL-4) and the expression of serum IgE and eotaxin | Zhao et al. [ |
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| Gel extract | Not reported | Not reported | Plant | Not elucidated | Chua et al. [ |
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| Crude extract | Aerial parts | Vetivenes. vetivenol, vetivenic acid, and vetivenyl acetate | Sesquiterpenic compounds | Inhibit the Ca2+ channels and phosphodiesterase activity | Shah and Gilani [ |
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| Aqueous extract | Whole plant | Kinsenoside | Plant | Reduce the IL-4 production by Tregs and enhance the production of IL-12 and IFN- | Hsieh et al. [ |
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| Essential oil | Leaves | 1,8-Cineol, camphor, camphene, and | Terpenoid | Inhibit the Ca2+ channels and phosphodiesterase activity | Shah et al. [ |
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| Extract | Rhizomes | Kaempferol, aurantiamide, and astin C | Flavonoid | Inhibit the expression of NF- | Chen and Zheng [ |
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| Ethanolic extract | Leaves | Phenolic compounds not specified | Phenolic compounds | Attenuate the production of NO and IL-1 | Kang et al. [ |
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| Baicalin | Isolated compound | Leaves and branch | 7-Glucuronic acid-5,6-dihydroxyflavone | Flavonoid | Suppress the lipopolysaccharide-induced TNF- | Park et al. [ |
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| Chloroformic and ethanolic extracts | Leaves | Alkaloids, triterpenoids, diterpenoids, and glycosides | Alkaloids, triterpenoids, diterpenoids, and glycosides | Stabilize the mast cell degranulation and decrease the histamine release | Venkatesh et al. [ |
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| Berry fruit | Polyphenolic extract | Not reported | Phenolic compounds not specified | Phenolic compounds not specified | Not reported | Power et al. [ |
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| Essential oil | Resinous part | Fl-boswellic acid, acetyl-fl-boswellic acid, 11-keto-fl-boswellic acid, and acetyl-11-keto-fl-boswellic acid | Boswellic acids | Inhibition of leukotriene biosynthesis | Hamidpour et al. [ |
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| Essential oil extract and extract | Resinous part, licorice root and turmeric root, respectively | Curcumin and fl-boswellic acid | Polyphenol | Reduce the plasma level of the leukotriene C4, nitric oxide and malondialdehyde | Houssen et al. [ |
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| Buffalo spleen lipid and a bacterial polypeptide | Extract | Animal-derived and microorganism-derived, respectively | Not reported | Not reported | Reduce the tracheal responsiveness and the amount of white blood cells | Neamati et al. [ |
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| Bullfrog oil | Oil | Bullfrog adipose tissue | Oleic, linolenic, stearic, palmitic, and myristic acids. Eicosapentaenoic acids and decosahexaenoic acid | Fatty acids | Not elucidated | Amaral-Machado et al. [ |
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| Aqueous extract | Root of Astragalus mongholicus Bunge, Panax ginseng C.A.Mey, Angelica dah-rica Fisch. Ex Hoffm and Bupleurum chinense DC. Rhizome of Z | Not reported | Not reported | Reduce the level of eotaxin, Th2-related cytokines (IL-4, IL-5, IL-13), IgE, and eosinophilia | Yang et al. [ |
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| Crude extract | Microorganism | Not reported | Not reported | Modulate the immunologic Th1/Th2 response | Huang et al. [ |
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| Aqueous extract | Not reported | Polyphenois and flavonoids | Polyphenois and flavonoids | Not elucidated | Sharangi [ |
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| Extract | Leaves | Tanins, alkaloids, steroids, and quinones | Tanins, alkaloids, steroids, and quinones | Reduce the expression of IL-4, IL-5, eotaxin, TNF- | Elgadir et al. [ |
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| Crude extract | Seeds | Hydrocarbons, wax esters, sterol esters, triacylglycerols, free fatty acids, diacylglycerols, lysophosphatidylethanolamines, and phosphatidylinositols | Hydrocarbons, wax esters, sterol esters, triacylglycerols, free fatty acids, diacylglycerols, lysophosphatidylethanolamines, and phosphatidylinositols | Bronchodilator activity | Khan et al. [ |
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| Chitin | Isolated compound | Shrimp | Chitin | Polysaccharide | Not elucidated | Ozdemir et al. [ |
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| Chrysin | Isolated compound | Marketable synthetic compound | 5,7-Dihydroxy-2-phenyl-1-4H-chromen-4-one | Flavonoid | Reduces the histamine release and decreases the gene expression of proinflammatory cytokines (IL-1 | Yao et al. [ |
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| Extract | Leaves | Warifteine | Alkaloid | Reduce the expression of IL-3 and IL-5, increase the IL-10 level, and decrease the density of inflammatory cells | Cerqueira-lima et al. [ |
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| Ethanolic extract | Leaves | Coumarins, carotenoids, and flavonoids | Coumarins, carotenoids, and flavonoids | Modulate the Th1/Th2 imbalance by inhibition of NF- | Bui et al. [ |
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| Conjugated linoleic acid | Conjugated compound | Fatty tissue from ruminants | Cis, cis-9,12-octadecadienoic acid | Polyunsaturated fatty acid | Modulate the PPARγ-dependent and PPARγ-independent inflammation signaling, the eicosanoid production, and humoral immune response | Macredmond and Dorscheid [ |
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| Coumarins | Isolated compound | Synthetic compounds | 6,7-Dihydroxycoumarin, 7-hydroxycoumarin and 4-methyl-7-hydroxycoumarin | Coumarin | Not elucidated | Sanchez-Recillas et al. [ |
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| Crocetin | Isolated compound | Marketable synthetic compound | Crocetin | Carotenoid | Activates the FOXP3 signaling through TIPE2 | Ding et al. [ |
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| Curcumin | Isolated compound | Curcuma longa | (1E, 6E)-1,7-Bis (4-hydroxy- 3-methoxyphenyl)-1,6- heptadiene-3,5-dione | Polyphenol | Inhibits the Notch1-GATA3 signaling pathway | Zheng et al. [ |
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| Cyclotheonamides | Isolated compound | Marine | Not reported | Cyclic pentapeptides | Inhibit the human | Schaschke and Sommerhoff [ |
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| Diallyl-disulfide | Isolated compound | Garlic oil | Diallyl-disulfide | Organosulfur | Activates the NrF-2/HO-1 pathway and suppresses the NF- | Shin et al. [ |
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| Dietary plant stanol esters | Not reported | Fatty acid | Not reported | Stanol ester | Reduce the total plasma IgE, IL-1 | Brull et al. [ |
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| Isolated compound | Not reported | Diosgenin | Steroidal saponin | Suppress the secretion of TNF- | Junchao et al. [ |
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| D- | Isolated compound | Natural source | D- | Vitamin | Inhibits the oxidative stress. Modulates the allergic inflammation and the airway hyperresponsiveness | Hoskins et al. [ |
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| Hydroethanolic extract | Leaves | Vitexin, rutin, and gallic acid | Phenolic compounds | Decrease the migration of inflammatory cells and reduce the Th2 cytokines and IgE levels | Rosa et al. [ |
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| Methanolic extract | Whole plant | Wedelolactone and demethylwedelolactone | Coumestan | Reduce the bronchial hyperresponsiveness and the production of Th2 cytokines | De Freitas Morel et al. [ |
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| Marine alga | Brown macroalgae | Fucodiphloroethol and phlorofucofuroeckol A | Phlorotannins | Downregulate the Fc | Vo et al. [ |
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| Crude extract | Aerial parts | Ephedrine and pseudoephedrine | Alkaloids | Not elucidated | Gul et al. [ |
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| Ellagic acid | Isolated compound | Marketable synthetic compound | Ellagic acid | Polyphenol | Inhibits the activation of the NF- | Zhou et al. [ |
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| Emodin | Isolated compound | Roots and barks of | 1,3,8-Trihydroxy-6-methylanthraquinone | Anthraquinone | Suppresses the characteristics of airway inflammation, mucin components, and chitinase protein expression. Inhibits the NF- | Shrimali et al. [ |
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| Aqueous extract | Not reported | Galloylquinic acid, phorbol acid, leucocyanidol, quercitol, camphol, quercetin, chlorophenolic acid, shikimic acid | Tanins, leucoanthocyanidins, flavonoids, and phenolic compounds | Not elucidated | Kunwar et al. [ |
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| Sesame | Fixed oil | Seeds | 5,5′-(1S, 3aR, 4S, 6aR)-Tetrahydro-1H, 3H-furo [3,4-c]furan-1,4-diylbis-1,3-benzodioxole | Polyphenol | Decreases the levels of IL-4, Il-5, IL-13, and serum IgE. Reduces the amount of inflammatory cells and the eosinophil infiltration | Lin et al. [ |
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| Farnesol | Isolated compound | Fruits, leaves, flowers | 3,7,11-Trimethyl-2,6,10-dodecatrien-1-ol | Sesquiterpene | Increases the level of IgG2a/IgE and reduces the total IgE, IgA, IgM, IgG | Ku and Lin [ |
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| Feverfew | Extract | Leaves and parts above the ground | Parthenolide | Sesquiterpene | Inhibit the I | Pareek et al. [ |
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| Flavonoids | Isolated compound | Vegetables (capers, tomatoes, fennel, sweet potato leaves, etc.), fruits (apple, apricots, grapes, plums, and berries), cereals (green/yellow beans and buckwheat) | Not reported | Polyphenol | Prevent the IgE synthesis and the mast cell degranulation. Reduce the airway hyperresponsiveness and inhibit the human phospholipase A2 | Castell et al. [ |
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| Aqueous methanolic extract | Aerial parts | Fumarophycine, cryptopine, sanactine, stylopine, bicuculline, adlumine, perfumidine, and dihydrosanguirine | Alkaloids | Block the muscarinic receptors and the Ca2+ channels | Najeeb ur et al. [ |
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| Galangin | Synthetic compound |
| 3,5,7-Trihydroxy-2-phenylchromen-4-one | Flavonol | Inhibits the TGF- | Liu et al. [ |
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| Solid extract | Fruiting bodies of |
| Polysaccharide | Inhibit the NOS and COX | Guerra dore et al. [ |
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| Ginsenosides | Synthetic compound | Root of ginseng | Ginsenosides | Glycoside | Suppress the IL-4 level, increase the production of IFN- | Chen et al. [ |
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| Grape seed | Extract | Seeds | Not reported | Not reported | Not elucidated. | Mahmoud [ |
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| Extract | Leaves | Not reported | Tanins and saponins | Not elucidated. | Tiwari et al. [ |
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| Extract | Leaves | Icariin | Flavonoids, iridoid glycosides, and alkaloids | Inhibit the mRNA expression of TGF- | Tang et al. [ |
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| Higenamine | Isolated compound |
| 1-[(4-Hydroxyphenyl)methyl]-1,2,3,4-tetrahydroisoquinoline-6,7-diol | Alkaloid | Not elucidated | Zhang et al. [ |
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| Homoegonol | Isolated compound |
| 3-[2-(3,4-Dimethoxyphenyl)-7-methoxy-1-benzofuran-5-yl]propan-1-ol | Lignan | Reduces the inflammatory cells count and Th2 cytokines | Shin et al. [ |
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| Isolated compound | Aerial parts | Not reported | Polycyclic polyprenylated acylphloroglucinols | Not elucidated | Zhang et al. [ |
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| Extract | Aerial parts | 7-Hydroxycoumarin | Coumarin | Decrease the tracheal hyperresponsiveness and the IL-1 | Moura et al. [ |
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| Crude extract | Aerial parts | (+)-Cedrol, (+)-Sabinene, (+)-limonene, terpinolene, endo-fenchol, cis-pinene hydrate, | Anthraquinones, flavonoids, saponins, sterol, terpenoids, and tanins | Inhibit the Ca2+ influx and the phosphodiesterase activity | Khan et al. [ |
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| Kaempferol | Isolated compound | Biotransformation of synthetic kaempferol by genetically engineered | Kaempferol-3-O-rhamnoside | Flavonoid | Reduces the inflammatory cells number, suppresses the production of Th2 cytokines and TNF- | Chung et al. [ |
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| Kefir | Isolated compound | Kefir grains | Kefiran | Microorganism derived | Reduces the inflammatory cell number and decreases the level of IL-4, IL-13, IL-5, and IgE | Kwon et al. [ |
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| Isolated compound | Leaves of | Magnolialide | Sesquiterpene | Inhibit the mast cell degranulation and reduce the IL-4 and IL-5 production | Lee et al. [ |
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| Crude extract | Seeds | Ascorbic acid, linoleic acid, oleic acid, palmitic acid, stearic acid | Vitamin and fatty acids | Promote a anticholinergic effect, inhibit the Ca2+ influx, and inhibit the phosphodiesterase activity | Rehman et al. [ |
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| L-Theanine | Isolated compound | Green tea of | L-Theanine (N-ethyl-L-glutamine) | Amino acid | Reduces the ROS production and decreases the levels of NF- | Hwang et al. [ |
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| Luteolin | Isolated compound |
| (2-(3,4-Dihydroxyphenyl)-5,7-dihydroxy-4-chromenone) | Flavonoid | Inhibits the mucus overproduction and the GABAergic system | Shen et al. [ |
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| Lysate bacterial (OM-85 Broncho-Vaxom) | Extract |
| Not reported | Not reported | Increase the level of IL-4, IL-10, and IFN- | Lu et al. [ |
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| Extract | Stem bark | Mangiferin (1,3,6,7-tetrahydroxyxanthone-c2-b-D-glucoside) | Xanthone | Inhibit the IgE production, the histamine release, and mast cell degranulation. Decrease the MMP-9 activity | Rivera et al. [ |
| Aqueous extract | Barks | Mangiferin (1,3,6,7-tetrahydroxyxanthone-c2-b-D-glucoside) | Xanthone | Reduce the inflammatory cells recruitment and the airway hyperresponsiveness. Increase the Th2 cytokines and attenuated the increase of the PIK3 activity | Alvarez et al. [ | |
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| Mangosteen | Isolated compound |
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| Xanthone | Inhibits the histamine release and modulates the cytokine production | Jang et al. [ |
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| Marine bioactives | Isolated compound | Marine sponges | Contignasterol and xestobergsterol | Steroids | Upregulation of TNF- | D'Orazio et al. [ |
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| Marshallagia marshalli | Isolated compound | Marshallagia marshalli | Secretory/excretory antigen | Microorganism derived | Prevent the release of TNF- | Jabbari et al. [ |
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| Extract | Leaves | Dihydrocoumarin, coumarin, spathulenol, hexadecanoic acid, 9, 12-octadecadienoic acid, 9,12,15-octadecatrineoic acid, cupressenic acid, kaurenol, kaurenoic acid, isopropyloxigrandifloric acid, isobutyloxy-grandifloric acid | Coumarins, terpenoids, steroids, and flavonoids | Not elucidated | Napimoga and Yatsuda [ |
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| Milk and colostrum | Conjugated compound | Bovine milk | Conjugated linoleic acid | Fatty acid | Modulate the cytokine and antibodies (IgE, IgM) production, interferon NO synthesis and iNOS activity. Modulate the mast cell degranulation | Kanwar et al. [ |
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| Monoterpenes | Isolated compound | Essential oil of several medicinal plants ( | Hydroxydihydrocarvone, fenchone, | Terpenoids | Reduce the expression of NF- | Cassia et al. [ |
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| Hydroethanolic extract | Plant xylopodium | Ellagic acid, hesperidin, luteolin, naringin, naringenin, and rutin | Polyphenol and flavonoids | Decrease the eosinophils, neutrophils, and mononuclear cell migration in BALF and by histopathological analysis. Decrease the IL-4, IL-5, IL-13, IgE, and LTB4 levels | Almeida et al. [ |
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| Isolated compound | Root bark | Moracin M. (5-(6-hydroxy-1-benzofuran-2-yl)benzene-1,3-diol) | Not reported | Inhibit the PDE4 | Chen et al. [ |
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| Extract | Dried bulbs | Narciclasine | Alkaloid | Inhibit the edema formation, the leucocyte infiltration, and cytokine synthesis in vivo. Block the interaction between the leucocyte and endothelial cells, the activation of isolated leucocytes (cytokine synthesis and proliferation) and of primary endothelial cells (adhesion molecule expression) in vitro. Suppress the NF- | Fuchs et al. [ |
| Naringin | Isolated compound | Common grapefruit | Naringin | Flavone | Attenuates the bronchoconstriction by reduction of calcium influx | Wang et al. [ |
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| Extract | Leaves | Nuiciferine and aporphine | Alkaloids | Attenuate the bronchoconstriction by reduction of calcium influx | Yang et al. [ |
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| Nigella sativa | Oil | Seeds | Thymoquinone (2-isopropyl-5-methyl-1,4-benzoquinone) | Quinone | Decrease the NO and IgE levels. Increase the IFN- | Salem et al. [ |
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| NujiangexanthoneA | Isolated compound | Leaves of | 1,2,5,6-Tetrahydroxy-3-methoxy-4,7,8-tri(3-meth-ylbut-2-enyl)-xanthone | Xanthone | Suppresses the IgE/Ag activation and degranulation of mast cell. Suppresses the production of cytokines and eicosanoids, through inhibiting Src kinase activity and Syk-dependent pathways. Inhibits the release of histamine, PGD2 and leukotriene C4 generation. Inhibits the increase of IL-4, IL-5, IL-13, and IgE levels. Inhibits the cell infiltration and increases mucus production | Lu et al. [ |
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| Oleanolic acid | Synthetic compound |
| Oleanolic acid | Triterpenoid | Modulates the transcription factors T-bet, GATA-3, ROR | Kim et al. [ |
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| Omega 3 | Isolated compound | Fish oil |
| Fatty acid | Decreases the IL-17 and TNF- | Hansen et al. [ |
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| Organic acids | Isolated compound |
| Malic, citric, tartaric, oxalic, and fumaric acids | Organic acids | Inhibits the Th2 cytokines | Ardestani et al. [ |
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| Oroxylin A | Isolated compound |
| 5′7-Dihydroxy-6-methoxy-2phenyl-4H-1-benzopyran-4-one | Flavonoid | Reduces the airway hyperactivity. Decreases the levels of IL-4, IL-5, IL-13 and IgE in BALF | Lu et al. [ |
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| Oxymatrine | Isolated compound | Root of the S | Oxymatrine | Alkaloid | Inhibits the eosinophil migration, IL-4, IL-5, IgE, and IL-13 levels. Inhibits the expression of CD40 protein | Zhang et al. [ |
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| Methanolic and crude extract | Galls and whole plant | Not reported | Carotenoids, terpenoids, catechins, and flavonoids | Attenuate the TNF- | Rana et al. [ |
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| Extract | Rhizomes | 1 | Terpenoids and phenolic compounds | Inhibits the lipoxygenase activity | Zargar et al. [ |
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| Extract | Leaves | Petatewalide B | Not reported | Inhibit the degranulation of | Choi et al. [ |
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| Extract | Roots | Dihydropyranocoumarin, linear furocoumaris, and simple coumarin | Coumarins | Attenuate the airway hyperreactivity and Th2 responses | Xiong et al. [ |
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| Peucedani Radix | Extract | Roots | Nodakenin, nodakenetin, pteryxin, praeruptorin A, and praeruptorin B | Not reported | Inhibit the Th2 cell activation | Lee et al. [ |
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| Extract | Leaves, fruits, and roots | A1-barrigenol, R1-barrigenol, tiliroside, kaempferol 3-O- | Phenol, flavonoids, tannins, and saponins | Not elucidated | Erdem et al. [ |
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| Extract | Stems, leaves, roots, and fruits | Periglaucine A-D and mangiferonic acid | Alkaloids, terpenoids, isoflavones, and sterols | Inhibit the COX enzymes activity | Shipton et al. [ |
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| Ethanolic extract | Seeds | Aquimavitalin | Phorbol ester | Inhibit the mast cell degranulation | Korinek et al. [ |
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| Phytochemicals | Isolated compound | Several medicinal plants | Luteolin, kaempferol, quercetin, eudesmin, magnolin, woorenoside, zerumbone, aucubin, triptolide, nitocine, berberine, and piperine | Flavonoids, lignans, terpenoids, and alkaloids | Suppress the TNF- | Iqbal et al. [ |
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| Alcoholic extract | Not reported | 4-Methoxy-5- hydroxycanthin-6-one | Alkaloid | Decreases the inflammatory cell count in BALF. Reduces the IL-4, IL-5, IL-13, and IgE levels. Reduces the airway hyperresponsiveness. Attenuates the recruitment of inflammatory cells and the mucus production in the airways. Reduces the overexpression of inducible nitric oxide synthase (iNOS) | Shin et al. [ |
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| Extract | Barks | Procyanidin | Flavonoid | Decrease the NO production, the inflammatory cell count, and the levels of IL-4, IL-5, IL-13, and IgE in BALF or serum. Reduces the IL-1 | Shin et al. [ |
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| Ping chuan ke li | Not elucidated | Wang et al. [ | ||||
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| Piperine | Isolated compound |
| Piperine | Alkaloid | Inhibits eosinophil infiltration and airway hyperresponsiveness by suppressing T cell activity and Th2 cytokine production | Chinta et al. [ |
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| Piperlongumine | Isolated compound |
| Piperlongumine (5,6-dihydro-1-[(2E)-1-oxo-3-(3,4,5-trimethoxyphenyl)-2-propenyl]-2(1H)-pyridinone) | Alkaloid | Inhibits the activity of inflammatory transcription factors, NF- | Prasad and Tyagi [ |
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| Ethanolic extract | Not reported | Piperine | Alkaloid | Inhibit the Th2/Th17 responses and mast cell activation | Bui et al. [ |
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| Ethanol, methanol, and hexane extracts | Aerial parts | Rosmarinic acid, shimobashiric acid, salvianolic acid L, rutin, thymoquinone, and quercetin | Flavonoids | Not elucidated | Arumugam et al. [ |
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| Podocarpus sensu latissimo | Extract | Barks | 3-Methoxyflavones and 3-O-glycosides | Flavonoids | Provinol and flavin-7 | Abdillahi et al. [ |
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| Polyphenols and their compounds | Isolated compound | Provinol and flavin-7 | Quercetin and resveratrol | Polyphenol | Decrease IL-4 and IL-5 levels, the airway hyperresponsiveness, and mucus overproduction | Joskova et al. [ |
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| Propolis | Isolated compound | Honey bees from several plants | Pinocembrin and caffeic acid phenethyl ester | Polyphenol and terpenoids | Inhibits TGF- | Kao et al. [ |
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| Extract | Fruits | 7-O-Methylcorylifol A, 7-O-isoprenylcorylifol A, and 7-O-isoprenylneobavaisoflavone | Flavonoids | Inhibit the N-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMLP)-induced O2– generation and/or elastase release | Chen et al. [ |
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| Quercetin | Isolated compound | Tea, fruits and vegetables | 2-(3,4-Dihydroxyphenyl)-3,5,7-trihydroxy-4H-chromen-4-one | Flavonoid | Inhibits LOX and PDE4. Reduce leukotrienes and histamine release with a decrease in the IL-4 level. Inhibit prostaglandins release and the human mast cell activation by Ca2+ influx | Townsend et al. [ |
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| Extract | Not reported | Catalpol | Glycoside | Inhibit IgE secretion. Decrease IL-4 and IL-5. Inhibit eosinophil infiltration and suppress eotaxin and its receptor CCR3. Reduce IL-5R | Chen et al. [ |
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| Resveratrol | Isolated compound | Skin and barks of red fruits | Resveratrol (3,4,5-trihydroxystilbene) | Polyphenol | Decreases eosinophilia. Reduce neutrophil migration and inhibit PGD-2 release. Decrease IL-4 and IL-5 and also the hyperresponsiveness and mucus production | Lee et al. [ |
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| Extract | Dried fuits |
| Not reported | Suppress bronchiolar structural changes. Inhibit the accumulation of lymphocytes, eosinophils, and macrophages in BALF. Suppress IL-4, IL-13, and TGF- | Lee et al. [ |
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| Sea cucumber ( | Tonic | Marine animal (Sea cucumber) | Holothurin A3, pervicoside A, and fuscocinerosides A | Toxins | Reduce COX enzymatic activity | Guo et al. [ |
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| Extract | Dried herbs | Amentoflavone, hinokiflavone, and isocryptomerin | Flavonoids | Attenuate hyperresponsiveness and goblet cell hyperplasia. Decrease IL-4, IL-5, IL-13, and IgE levels in serum. Upregulation of T2R10 gene expression and downregulation of IP3R1 and Orai1 gene expression. Suppression of eotaxin, NFAT1, and c-Myc protein expression | Yu et al. [ |
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| Isolated compound | Air-dried powder of the whole plant of S. pulvinata | Selaginpulvilin A, selaginpulvilin B, and selaginpulvilin C | Phenol | Inhibit the PDE4 | Liu et al. [ |
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| Extract | Leaves | Echinacoside, verbascoside, luteolin, apigenin, caffeic acid, vanillic acid | Glycosides, flavonoids, and phenolic acids | Not elucidated | Todorova and Trendafilova [ |
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| Extract | Aerial roots | 3,40-O-Dimethylquercetin, 3,7-O-dimethylquercetin, 3-O-methylquercetin, and 3,7,40-O-trimethylquercetin | Flavonoids | Reduce inflammatory cell infiltration in BALF. Decrease IL-4, IL-5, IL-13, eotaxin, and IgE. Reduce airway inflammation and mucus overproduction. Decrease iNOS and COX-2 expression and reduce NO levels | Jeon et al. [ |
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| Sitostanol | Isolated compound | Marketable synthetic compound | Sitostanol | Steroid | Suppresses IL-4 and IL-13 release | Brüll et al. [ |
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| Soft coral | Isolated compound | Sarcophyton ehrenbergi | Not reported | Prostaglandins | Inhibits PDE4 | Cheng et al. [ |
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| Solanum | Extract | Fruits | Stigmasterol and | Steroid | Reduce IL-4 and NO levels. Decrease IFN- | Rios et al. [ |
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| Squill ( | Crude extract | Not reported | Scillaren A, scillirubroside, scilliroside, scillarenin, and proscillaridin A | Glycosides | Not elucidated | Nejatbakhsh et al. [ |
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| Methanolic extract | Fruits | Neosakuranin | Glycosides | Not elucidated | Bhatt et al. [ |
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| Extract | Fruits | Cupressuflavone, amentoflavone, robustaflavone, afzelin, (+)-catechin, quercetin, hypolaetin 7-O- | Flavonoids | Reduce nitric oxide production and reduce the relative mRNA expression levels of inducible nitric oxide synthase (iNOS), IL6, cyclooxygenase-2, MMP-9, TNF- | Shin et al. [ |
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| Tonggyu-tang | Extract |
| Not reported | Plant | Inhibit inflammatory cytokines (IL-4, IL-6, IL-8, and TNF- | Kim et al. [ |
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| Extract | Seeds | Not reported | Flavonoids | Reduce IL-5, IL-6, IL-1 | Piao et al. [ |
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| Oil | Fat of tropidurus hispidus | Croton oil, arachidonic acid, phenol, and capsaicin | Fatty acids and its derivated | Affect the arachidonic acid and their metabolites and reduce proinflammatory mediators | Santos et al. [ |
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| Extract | Leaves | Caffeic acid, gallic acid, quercetin, scopoletin, carotenoids, secoisolariciresinol, and anthocyanidins | Polyphenols, flavonoids, cumarin, and lignan | Reduce leucocytes and lymphocytes levels in serum. Inhibit the eosinophilia increase in BALF. Suppress inflammatory cells recruitment and attenuation of lipid peroxidation of lung tissues | Zemmouri et al. [ |
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| Verproside | Isolated compound |
| Verproside | Glycoside | Suppress the NF- | Lee et al. [ |
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| Vitamin D | Isolated compound | Not reported | Calcitriol | Vitamin | Inhibit lymphocytes (Th1 and Th2) and reduces cytokines production | Szekely and Pataki [ |
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| Vitamin E | Isolated compound | Plant lipids |
| Vitamin | Reduce airway hyperresponsiveness, IL-4, IL-5, IL-13, OVA-specific IgE, eotaxin, TGF- | Cook-Mills and McCary [ |
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| Methanolic extract | Fruits | 1H, 8H-Pyrano [3, 4-c]pyran-1,8-dione | Not reported | Inhibit eotaxin, IL-8, IL-16, and VCAM-1 mRNA | Lee et al. [ |
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| Extract | Dried fruit | Pyranopyran-1,8-dione | Not reported | Inhibit eosinophils and lymphocytes cell infiltration into the BAL fluid. Reduce to normal levels of IL-4, IL-5, IL-13 and eotaxin. Suppress IgE levels | Park et al. [ |
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| Yu ping feng san | Extract | Radix Saposhnikoviae (Fangfeng), Radix Astragali (Huangqi), and Rhizoma Atractylodis macrocephalae (Baizhu) | Calycosin-7-O- | Flavonoids, terpenoids, saponins, and furocoumarins | Inhibit TNF- | Stefanie et al. [ |
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| Extract | Aerial parts | Isorhamnetin-3-O- | Phenol | Inhibit NF- | Abdallah and Esmat [ |
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| Ziziphus amole | Extract | Leaves, stems, barks, and roots | Alphitolic acid, sitosterol, ziziphus-lanostan-18-oico acid | Terpenoid and steroid | Inhibit myeloperoxidase activity | Romero-Castillo et al. [ |