| Literature DB >> 32899130 |
Douglas Kemboi1, Xolani Peter2, Moses Langat3, Jacqueline Tembu1.
Abstract
The genus Euphorbia is one of the largest genera in the spurge family, with diversity in range, distribution, and morphology. The plant species in this genus are widely used in traditional medicine for the treatment of diseases, ranging from respirational infections, body and skin irritations, digestion complaints, inflammatory infections, body pain, microbial illness, snake or scorpion bites, pregnancy, as well as sensory disorders. Their successes have been attributed to the presence of diverse phytochemicals like polycyclic and macrocyclic diterpenes with various pharmacological properties. As a result, Euphorbia diterpenes are of interest to chemists and biochemists with regard to drug discovery from natural products due to their diverse therapeutic applications as well as their great structural diversity. Other chemical constituents such as triterpenoids have also been reported to possess various pharmacological properties, thus supporting the traditional uses of the Euphorbia species. These triterpenoids can provide potential leads that can be developed into pharmaceutical compounds for a wide range of medicinal applications. However, there are scattered scientific reports about the anticancer activities of these constituents. Harnessing such information could provide a database of bioactive pharmacopeia or targeted scaffolds for drug discovery. Therefore, this review presents an updated and comprehensive summary of the ethnomedicinal uses, phytochemistry, and the anticancer activities of the triterpenoids of Euphorbia species. Most of the reported triterpenoids in this review belong to tirucallane, cycloartanes, lupane, oleanane, ursane, and taraxane subclass. Their anticancer activities varied distinctly with the majority of them exhibiting significant cytotoxic and anticancer activities in vitro. It is, therefore, envisaged that the report on Euphorbia triterpenoids with interesting anticancer activities will form a database of potential leads or scaffolds that could be advanced into the clinical trials with regard to drug discovery.Entities:
Keywords: Euphorbia; anticancer; ethnomedicinal; phytochemistry; triterpenoids
Mesh:
Substances:
Year: 2020 PMID: 32899130 PMCID: PMC7504773 DOI: 10.3390/molecules25174019
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Traditional uses and biological activities reported for Euphorbia species.
| Species | Part Used | Medicinal Uses | Biological Activities | References |
|---|---|---|---|---|
|
| Latex, stems, roots | Abnormalities, fuelwood, toothache, nervous system disorders, muscular-skeletal disorders | Antiviral, anti-inflammatory, cytotoxicity | [ |
|
| Roots, stems | Skin irritation | Laxative | [ |
|
| Whole plant | Social events, ornamental | Wound healing | [ |
|
| Latex | Vulnerary wounds | Anti-inflammation | [ |
|
| Latex | Healing wounds | Wound healing, constipation | [ |
|
| Latex, stems | Pain reliever, muscular-skeletal system disorder | Antifungal | [ |
|
| Stems, roots | Fuels, vertebrate poisoning | Unspecified | [ |
|
| Whole plant | Materials/fuel woods | Unspecified | [ |
|
| Whole plant | Mental disorders | Antidepressant | [ |
|
| Latex, aerial parts | Wounds, snake bites, enuresis, warts, scabies | Antifungal, antibacterial | [ |
|
| Stems, latex, roots | Fishing, skin irritant, nervous system syndrome | Antibacterial, antidepressant | [ |
|
| Latex | Hemorrhages | Antiangiogenic | [ |
|
| Latex, stems | Vertebrate poisoning | Antiviral, ant inflammation | [ |
|
| Stems, roots, flowers | Obesity, diabetes, | Antibacterial, antioxidant | [ |
|
| Latex | Laxative, diuretic | Analgesic | [ |
|
| Stems, latex, roots | Mental illness | Antidepressant | [ |
|
| Stems, roots | Cancer, warts, inflammation, swelling | Antiviral, ant inflammation, anticancer | [ |
|
| Roots, latex | Skin irritation & eczema | Antifungal activities | [ |
|
| Roots | Neoplasms | Anti-bacterial, | [ |
|
| Whole plant | Metabolic system disorders | Diaphoretic properties | [ |
|
| Latex, stems | Non vertebrate poisoning, food | Antihistaminic properties | [ |
|
| Stems, latex | Constipation | Constipation | [ |
|
| Flowers, latex | Bees plant | Antifungal | [ |
|
| Latex, stems, roots | Dysentery, bronchitis, pain, infestations (scabies, lies), poisoning, endocrine disorders | Anti-inflammation, antimalarial, anticancer, | [ |
|
| Whole plant | Animal food | Anti-diarrhea | [ |
|
| Whole plant, latex | Cancer, influenza | Anticancer, anti-influenza | [ |
|
| Latex, stems | Circulatory system disorders, food | Antioxidant | [ |
|
| Bark, latex | Cancerous lesion, eye tumor, snake bites, mental disorders | Anticancer, neoplasms | [ |
|
| Latex, roots, stems | Digestive disorders (purgative, emetic, diarrhea, constipation), blood purifier | Anticancer, antiviral, ant-inflammation | [ |
|
| Whole plant, latex | Rheumatism, bladder stones. | Anti-proliferative; antibacterial | [ |
|
| Latex | Warts, wound, snake-scorpion bites, tumors, toothache, eczema, | Antipyretic in malaria, antihaemorrhoidal, antifungal | [ |
|
| Latex, stems, roots | Injuries, skin/subcutaneous cellular tissue disorders | Anti-inflammation, antifungal | [ |
|
| Whole plant | Materials/fuel woods | Unspecified | [ |
|
| Whole plant, stem, roots | Ornamental, diarrhea in cattle, detoxicant, cancer, hepatitis, tumors | Anticancer, antiviral | [ |
|
| Stems, roots | Stomachache, constipation | Antidepressant | [ |
|
| Aerial, latex | Stomach worms | Anti-intestinal, Anthelmintic | [ |
|
| Latex, whole plant | Abdominal pains, bronchitis, tumors, leukoderma, piles, anemia, fever, respiratory | Anti-inflammatory, anticancer, Anti-bacterial | [ |
|
| Latex, aerial parts | Eczema, healing wounds | Anthelmintic, antifungal | [ |
|
| Whole plant, latex, stems | Enteritis, malaria, wounds, scabies, lies, mange, dysentery, poisonous snake bites, mental disorders | Anti-influenza, antifungal, antibacterial | [ |
|
| Latex, stems, roots | Respiratory disorders, asthma, coryza, anticatarrhal, snake bites | Antimalarial, anti-influenza, antibacterial, anti-inflammatory, anti-asthmatic | [ |
|
| Whole plant, latex, stems | Abnormalities, non-vertebrate poisoning | Anti-inflammatory, cytotoxicity | [ |
|
| Latex/sap | Cancer, purgative, warts, corns, asthma, bronchitis | Anticancer, anti-inflammation | [ |
|
| Latex, roots | Genitourinary disorders, endocrine system disorders, diabetes | Inflammatory, cytotoxicity | [ |
|
| Whole plant | Environmental | Anti-Alzheimer | [ |
|
| Stems, roots | Diabetes, mental illness | Antidepressant | [ |
|
| Latex | Healing wounds | Antibacterial | [ |
|
| Latex | Asthma | Anthelmintic, antihemorrhoidal | [ |
|
| Whole plant | Asthma, jaundice, cough | Anti-HIV, antibacterial | [ |
|
| Latex, aerial | Inflamed wounds, malaria, constipation | Antipyretic in malaria, anti-inflammatory | [ |
|
| Latex | Curdle milk, food additive | Antihistaminic | [ |
|
| Stems, roots | Diarrheal, edema, ascites, cancer, gonorrhea | Antiviral, anticancer | [ |
|
| Roots, stems | Swellings, tumor, malaria, bacillary, jaundice, dysentery, rheumatism | Antimalarial, anticancer | [ |
|
| Roots, latex | Hemostasis, analgesia | Antiangiogenic | [ |
|
| Latex stems, roots | Cleaning water, toothache, laxative, diuretic | Analgesic in toothache, callus | [ |
|
| Leaves, seeds, roots | Treating worms in children, stimulant, laxative, hematuria, virginal bleeding, wounds, carbuncles, epistaxis | Antiviral, antimalarial, anticancer | [ |
|
| Whole plant, latex | Vertebrate poison, fuel wood, snake bite, jaundice, | Anticancer, antimodulatory | [ |
|
| Stems, flowers | Eczema | Antifungal | [ |
| Latex, Stem, roots | Constipation | Constipation | [ |
Triterpenoids isolated from the genus Euphorbia.
| Type | No | Compound Name | Occurrence (Solvent, Part Used) | Biological Effect (Cell Type) | References |
|---|---|---|---|---|---|
| Tirucallane | 1 | (23 | Anti-inflammatory | [ | |
| 2 | (23 | Anti-inflammatory | [ | ||
| 3 | euphorol K | Cytotoxic (MCF-7, C6) | [ | ||
| 4 | kansuinone | Cytotoxic (MCF-7, C6) | [ | ||
| 5 | euphorol E | Cytotoxic (MCF-7, C6) | [ | ||
| 6 | euphorol F | Cytotoxic (MCF-7, C6) | [ | ||
| 7 | euphorol G | Cytotoxic (MCF-7, C6) | [ | ||
| 8 | (–)-(24 | Cytotoxic (A2780) | [ | ||
| 9 | (–)-(24 | Cytotoxic (A2780) | [ | ||
| 10 | (–)-(24 | Cytotoxic (A2780) | [ | ||
| 11 | (–)-(23 | Cytotoxic (A2780) | [ | ||
| 12 | euphorol L | Cytotoxic (K562, MCF-7) | [ | ||
| 13 | (–)-(23 | Cytotoxic (A2780) | [ | ||
| 14 | euphorol M | Cytotoxic (K562, MCF-7) | [ | ||
| 15 | (–)-(24 | Cytotoxic (A2780) | [ | ||
| 16 | tirucall-spiro [5,6]-24-methylene-3 | Cytotoxic (MCF-7, C6) | [ | ||
| 17 | euphorol N | Cytotoxic (K562, MCF-7) | [ | ||
| 18 | (+)-(23 | Cytotoxic (A2780) | [ | ||
| 19 | 24-methyltirucalla-8,24(24′)-dien-3 | Inhibitory (EBV-EA) | [ | ||
| Euphane | 20 | (24 | Cytotoxic (MCF-7, C6) | [ | |
| 21 | 4,4,14β,-trimethyl-5α-pregn-8-ene-3β,17α-diol-7-one | Anti-inflammatory | [ | ||
| 22 | eupha-8,24-diene-3β,11β-diol-7-one | Anti-inflammatory, cytotoxic (MCF-7, C6) | [ | ||
| 23 | eupha-8-ene-3β,11β-diol-7,24-dione | Cytotoxic (MCF-7, C6) | [ | ||
| 24 | (24 | Cytotoxic (MCF-7, C6) | [ | ||
| 25 | 24,24-dimethoxy-25,26,27-trinoreuphan-3β-ol | Anti-HIV(HIV-1) | [ | ||
| 26 | (24 | Anti-HIV(HIV-1) | [ | ||
| 27 | kansenone, (20 | Cytotoxic (MCF-7, C6) | [ | ||
| 28 | kansenonol,11-oxo-kansenonol, kansenol | Cytotoxic (MCF-7, C6) | [ | ||
| 29 | kansuinone | Cytotoxic (11β-HSD1), anti-inflammatory | [ | ||
| 30 | (24 | Cytotoxic (MCF-7, C6) | [ | ||
| 31 | (+)-(24 | Cytotoxic (A2780) | [ | ||
| 32 | (+)-(24 | Cytotoxic (A2780) | [ | ||
| 33 | eupha-7,9(11),24-trien-3 | Inhibitory (EBV-EA) | [ | ||
| 34 | 23( | Antiangiogenic | [ | ||
| 35 | 19(10, 9) | Inhibitory (EBV-EA) | [ | ||
| 36 | Euphol | Inhibitory (EBV-EA) | [ | ||
| 37 | 11 | Cytotoxic (MCF-7, C6) | [ | ||
| 38 | lemmaphylla-7, 21-dien-3 | Inhibitory (EBV-EA) | [ | ||
| 39 | 24-methyleupha-8,24(241)-dien-3 | Inhibitory (EBV-EA) | [ | ||
| Cycloartane | 40 | 24-methylenecycloartane | Cytotoxic (MCF-7, C6), antiangiogenic, cytotoxic (MCF-7, HepG2, HCT-116), inhibitory (α/β-hydrolase 12) | [ | |
| 41 | neriifolins A | Cytotoxic (MCF-7) | [ | ||
| 42 | neriifolins B | Cytotoxic (MCF-7) | [ | ||
| 43 | neriifolins C | Cytotoxic (MCF-7) | [ | ||
| 44 | 23( | Cytotoxic (SGC-7901) | [ | ||
| 45 | 24( | Cytotoxic (SGC-7901) | [ | ||
| 46 | 24( | Cytotoxic (SGC-7901) | [ | ||
| 47 | 23( | Cytotoxic (SGC-7901) | [ | ||
| 48 | 24( | Cytotoxic (SGC-7901) | [ | ||
| 49 | cycloschimperols A (cycloart-20,24-dien-3β-ol) | Cytotoxic (MCF-7, HepG2, HCT-116) | [ | ||
| 50 | cycloschimperols B (26,27-dinor-3β-hydroxy cycloartan-25-al) | Cytotoxic (MCF-7, HepG2, HCT-116) | [ | ||
| 51 | cycloart-(23 | Inhibitory (osteoclastogenesis) | [ | ||
| 52 | cycloart-5-ene-3β,25-diol | Antiangiogenic | [ | ||
| 53 | cycloart-25-en-3-one | Cytotoxic (MCF-7, HepG2, HCT-116) | [ | ||
| 54 | 24-methylene cycloartanol | Inhibitory (K562, HL60) | [ | ||
| 55 | 24-methylene cycloartan-3 | Inhibitory (K562, HL60) | [ | ||
| 56 | cycloeucalenol | Inhibitory (osteoclastogenesis), anti-inflammatory, inhibitory (α/β-hydrolase 12), inhibitory (K562, HL60) | [ | ||
| 57 | obtusifoliol | Anti-inflammatory, inhibitory (α/β-hydrolase 12), inhibitory (K562, HL60) | [ | ||
| 58 | cycloart-22 | Inhibitory (K562, HL60) | [ | ||
| 59 | (3 | Inhibitory (K562, HL60) | [ | ||
| 60 | cycloartenyl acetate | Inhibitory (α/β-hydrolase 12), inhibitory (K562, HL60) | [ | ||
| 61 | 7,11-dioxoobtusifoliol | Cytotoxic (Colo320) | [ | ||
| 62 | cycloart-23( | Cytotoxic (Colo320), cytotoxic (MCF-7) | [ | ||
| 63 | cycloart-25-ene-3β,24-diol | Cytotoxic (Colo320), cytotoxic (MCF-7) | [ | ||
| 64 | 3-hydroxycycloart-25-ene-24-hydroperoxide | Anti-inflammatory | [ | ||
| 65 | 3β-hydroxy-26-nor-9,19-cyclolanost-23-en-25-one | Anti-inflammatory | [ | ||
| 66 | cycloart-23-en-3β,25-diol, | Anti-inflammatory, cytotoxic (MCF-7) | [ | ||
| 67 | 25-hydroperoxycycloart-23-en-3β-ol | Cytotoxic (A549, HCT) | [ | ||
| 68 | cycloart-23( | Cytotoxic (MCF-7) | [ | ||
| 69 | cycloart-24-en-3β-ol | Cytotoxic (MCF-7) | [ | ||
| 70 | cycloartenyl-2′ | Inhibitory (α/β-hydrolase 12) | [ | ||
| 71 | cycloartenyl-2′ | Inhibitory (α/β-hydrolase 12) | [ | ||
| 72 | 24-methylenecycloartanyl-2′E,4′ | Inhibitory (α/β-hydrolase 12) | [ | ||
| 73 | 24-oxo-29-norcycloartanyl-2′ | Inhibitory (α/β-hydrolase 12) | [ | ||
| 74 | cycloartenol | Inhibitory (α/β-hydrolase 12) | [ | ||
| 75 | cycloartenone | Inhibitory (α/β-hydrolase 12) | [ | ||
| 76 | 24-hydroperoxycycloart-25-en-3β-ol | Cytotoxic (A549, HCT) | [ | ||
| 77 | (24 | Inhibitory (osteoclastogenesis) | [ | ||
| 78 | (24 | Inhibitory (osteoclastogenesis) | [ | ||
| 79 | 3 | Inhibitory (osteoclastogenesis) | [ | ||
| 80 | 24-methylenecycloartanol | Cytotoxic (HT-3) | [ | ||
| 81 | 3 | Cytotoxic (HT-3) | [ | ||
| 82 | 3 | Cytotoxic (HT-3) | [ | ||
| 83 | 3β-hydroxy-4α,14α-dimethyl-5α-ergosta-7,9(11), 24(28)-trien. | Cytotoxic (SGC-7901) | [ | ||
| 84 | 3β-hydroxy-4α,14α-dimethyl-5α-ergosta-8,24(28)-dien-7,11-one | Cytotoxic (SGC-7901) | [ | ||
| Lanostane | 85 | (3β)-3-hydroxy-24-methylenelanost-8-ene-7,11-dione | Not evaluated | [ | |
| 86 | (3β)-3-hydroxylanosta-8,24-diene-7,11-dione | Not evaluated | [ | ||
| 87 | (3β,7α)-3,7-dihydroxylanosta-8,24-dien-11-one, | Not evaluated | [ | ||
| 88 | (3β,11β)-3,11-dihydroxylanosta-8,24-dien-7-one | Not evaluated | [ | ||
| 89 | 3β, 24, 25-trihydroxylanost-8-en-11-one | Not evaluated | [ | ||
| 90 | 3 | Not evaluated | [ | ||
| 91 | 3 | Not evaluated | [ | ||
| 92 | (3 | Anti-inflammatory | [ | ||
| 93 | 24-hydroperoxylanost-7,25-dien-3β-ol, | Anti-inflammatory | [ | ||
| 94 | 9,19-cyclolanost-22(22′),24-diene-3β-ol (nerifoliene) | Not evaluated | [ | ||
| Lupane | 95 | lupeol | Anti-inflammatory, cytotoxic (A549, HCT) | [ | |
| 96 | euphorimaoid A. | Inhibitory (osteoclastogenesis) | [ | ||
| 97 | 3β-acetoxy-30-nor-20-oxolupane | Inhibitory (osteoclastogenesis) | [ | ||
| 98 | lupenyl acetate, lupeol palmitate, | Inhibitory (osteoclastogenesis), cytotoxic (HeLa) | [ | ||
| 99 | 3β-acetoxyolean-12-en-11-one | Inhibitory (osteoclastogenesis) | [ | ||
| 100 | lupenone | Inhibitory (osteoclastogenesis), cytotoxic (HeLa) | [ | ||
| 101 | euphorimaoid A. | Inhibitory (osteoclastogenesis) | [ | ||
| Oleanane | 102 | β-amyrin | Cytotoxic (A549, HCT) | [ | |
| 103 | β | Cytotoxic (Colo320) | [ | ||
| 104 | β-amyrin palmitate | Cytotoxic (Colo320) | [ | ||
| 105 | β-amyrin benzoate | Cytotoxic (Colo320) | [ | ||
| 106 | oleanolic acid | Cytotoxic (Colo320) | [ | ||
| 107 | 12-oleanene-3β-11-diol | Anti-inflammatory | [ | ||
| 108 | (3β,15α,16α)-15,16-epoxy-olean-12-en-3β-ol | Anti-inflammatory | [ | ||
| 109 | 3 | Cytotoxic (HeLa, MCF-7, A549) | [ | ||
| 110 | urs-12-ene-3β,11α-diol | Anti-inflammatory | [ | ||
| 111 | neoilexonol | Anti-inflammatory | [ | ||
| 112 | α-amyrin | Cytotoxic (A549, HCT116) | [ | ||
| 113 | 1α-hydroxy-3β-acetoxy-olean-9,12-diene,3β-acetyloxy-olean-13(18)-en-12-one | Inhibitory (osteoclastogenesis) | [ | ||
| 114 | 18,19-epoxyolean-3β-ol acetate | Inhibitory (osteoclastogenesis) | [ | ||
| 115 | 3β-acetoxyolean-12-en-11-one | Inhibitory (osteoclastogenesis) | [ | ||
| 116 | 3β-hydroxyhop-22(29)-ene | Inhibitory (osteoclastogenesis) | [ | ||
| 117 | 3,2-seco-taraxer-14-en-3,2-lactone | Cytotoxic (HeLa, MCF-7, A549) | [ | ||
| 118 | olean-12-ene-11α-methoxy-3β-acetate | Inhibitory (osteoclastogenesis) | [ | ||
| Taraxarane | 119 | taraxast-12-ene-3β,20,21(α)-triol | Cytotoxic (DU-145) | [ | |
| 120 | taraxerone | Cytotoxic (A549, HCT) | [ | ||
| 121 | 2,3- | Cytotoxic (HeLa, MCF-7, A549) | [ | ||
| 122 | 1β-acetoxy-3β-hydroxy-11α,12α-oxidotaraxer-14-ene | Not evaluated | [ | ||
| 123 | 1β,3β-diacetoxy-21α-hydroxy-11α,12α-oxidotaraxer-14-ene | Not evaluated | [ | ||
| 124 | 3β,9α,20α-trihydroxy-Ψ-taraxast-5-ene | Not evaluated | [ | ||
| Friedelane | 125 | friedelin | Not evaluated | [ | |
| 126 | friedelinol | Not evaluated | [ | ||
| Other oleanane | 127 | (1β,2α,3β,19β)-1,2,3,19-tetrahydroxyolean-12-en-28-oic acid | Cytotoxic (HeLa, Hep-G2) | [ | |
| 128 | (1β,3β,19β)-1,3,19-trihydroxyolean-12-en-28-oic acid | Cytotoxic (HeLa, Hep-G2) | [ | ||
| 129 | (1β,2α,3β,16β,19β)-1,2,3,16,19-pentahydroxyolean-12-en-28-oic acid | Cytotoxic (HeLa, Hep-G2) | [ | ||
| 130 | (1β,2α,3β,19β,23)-1,2,3,19,23-pentahydroxyolean-12-en-28-oic acid | Cytotoxic (HeLa, Hep-G2) | [ |
Figure 1Chemical structures of tirucallane triterpenoids isolated from genus Euphorbia.
Figure 2Structures of Euphane and some oleanane triterpenoids isolated from genus Euphorbia.
Figure 3Chemical structures of cycloartane triterpenoids isolated from genus Euphorbia.
Figure 4Structures of cycloartane and lanostane triterpenoids isolated from genus Euphorbia.
Figure 5Chemical structures of pentacyclic triterpenoids isolated from genus Euphorbia.