Palmarosa (Cymbopogon martini), comunemente conosciuto come geranio indiano, è un'erba perenne originaria dell'India e del Sud-Est asiatico. È rinomato per le sue foglie aromatiche e l'olio essenziale, ampiamente utilizzato in profumeria e aromaterapia. La pianta è apprezzata per il suo profumo fresco e simile alla rosa e per le sue varie proprietà terapeutiche.
Classificazione Botanica
- Regno: Plantae
- Ordine: Poales
- Famiglia: Poaceae
- Genere: Cymbopogon
- Specie: Cymbopogon martini
Caratteristiche della Pianta
Cymbopogon martini cresce fino a 1,5 metri di altezza e presenta foglie strette ed allungate che emettono un profumo gradevole e simile alla rosa. La pianta produce fiori piccoli e poco appariscenti, che non sono di particolare interesse ornamentale. Cresce bene in climi tropicali e subtropicali ed è comunemente coltivata per il suo olio essenziale.
Composizione Chimica e Struttura
L'olio essenziale di Cymbopogon martini contiene diversi composti chiave, tra cui:
- Geraniolo: Il principale componente, responsabile del profumo simile alla rosa e noto per le sue proprietà antimicrobiche e anti-infiammatorie.
- Citral: Contribuisce alle note agrumate della pianta e possiede proprietà antisettiche e antifungine.
- Linalolo: Aggiunge un aroma floreale e speziato e ha effetti calmanti e ansiolitici.
Coltivazione
Cymbopogon martini preferisce suoli ben drenati, sabbiosi o limosi e una piena esposizione al sole. È coltivato in regioni tropicali e subtropicali e richiede temperature calde per prosperare. La pianta si propaga tramite divisione dei cespi o semina. È consigliata una regolare irrigazione e una fertilizzazione occasionale per sostenere una crescita sana.
Usi e Benefici
Aromatico: L'olio essenziale è ampiamente utilizzato in profumeria, aromaterapia e come componente naturale nei vari prodotti.
Medico: Conosciuto per le sue proprietà antimicrobiche, antifungine e anti-infiammatorie. L'olio viene utilizzato nella medicina tradizionale per la cura della pelle e come rimedio per disturbi digestivi.
Cosmetico: Utilizzato nei prodotti per la cura della pelle per le sue proprietà idratanti e cicatrizzanti. È incluso in lozioni, creme e saponi per il suo profumo gradevole e i benefici terapeutici.
Applicazioni
Aromatico: Ingrediente in profumi e deodoranti per il suo profumo distintivo simile alla rosa.
Medico: Olio essenziale utilizzato nella medicina tradizionale e alternativa per le sue proprietà terapeutiche, tra cui benefici antimicrobici e anti-infiammatori.
Cosmetico: Aggiunto alle formulazioni per la cura della pelle per il suo profumo e gli effetti benefici sulla pelle.
Considerazioni Ambientali e di Sicurezza
E' ritenuto generalmente sicuro per l'uso nelle sue varie applicazioni. Tuttavia, a causa dell'alta concentrazione di oli essenziali, deve essere utilizzato con cautela nei prodotti per la cura della pelle per evitare possibili irritazioni o reazioni allergiche. Sono necessarie pratiche di coltivazione adeguate per garantire una produzione sostenibile e rispettosa dell'ambiente.
Bibliografia__________________________________________________________________________
Prasad CS, Shukla R, Kumar A, Dubey NK. In vitro and in vivo antifungal activity of essential oils of Cymbopogon martini and Chenopodium ambrosioides and their synergism against dermatophytes. Mycoses. 2010 Mar 1;53(2):123-9. doi: 10.1111/j.1439-0507.2008.01676.x. Epub 2009 Feb 26. PMID: 19298359.
Abstract. The present study was carried out to evaluate the antifungal efficacy of essential oils (EO) of Cymbopogon martini, Chenopodium ambrosioides and of their combination against dermatophytes and some filamentous fungi in vitro as well as in vivo using a guinea pig model. The minimum inhibitory concentrations of EOs and of their combination were found between 150 and 500 ppm, while those of known antifungal drugs ranged from 1000 to 5500 ppm. EO ointments were prepared and applied against induced ringworm in guinea pig model and disease removal was observed in 7-21 days, and the hair samples showed negative results for fungal culture in a time-dependent manner after the application of EO ointments. Chemical constituents of EOs were determined by GC-MS. Both the EOs and their combination displayed strong antifungal effects. The results provide a scientific validation for the use of these EOs in the treatment of dermatophyte infections and may be recommended as an alternative to synthetic drug for topical application.
Dangol S, Poudel DK, Ojha PK, Maharjan S, Poudel A, Satyal R, Rokaya A, Timsina S, Dosoky NS, Satyal P, Setzer WN. Essential Oil Composition Analysis of Cymbopogon Species from Eastern Nepal by GC-MS and Chiral GC-MS, and Antimicrobial Activity of Some Major Compounds. Molecules. 2023 Jan 5;28(2):543. doi: 10.3390/molecules28020543. PMID: 36677603; PMCID: PMC9863348.
Abstract. Cymbopogon species essential oil (EO) carries significant importance in pharmaceuticals, aromatherapy, food, etc. The chemical compositions of Cymbopogon spp. Viz. Cymbopogon winterianus (citronella) Cymbopogon citratus (lemongrass), and Cymbopogon martini (palmarosa) were analyzed by gas chromatography−mass spectrometry (GC-MS), enantiomeric distribution by chiral GC-MS, and antimicrobial activities of some selected pure major compound and root and leaves EOs of citronella. The EO of leaves of Cymbopogon spp. showed comparatively higher yield than roots or other parts. Contrary to citral (neral and geranial) being a predominant compound of Cymbopogon spp., α-elemol (53.1%), α-elemol (29.5%), geraniol (37.1%), and citral (90.4%) were detected as major compounds of the root, root hair with stalk, leaf, and root stalk with shoot of citronella EO, respectively. Palmarosa leaves’ EO contains neral (36.1%) and geranial (53.1) as the major compounds. In the roots of palmarosa EO, the prime components were α-elemol (31.5%), geranial (25.0%), and neral (16.6%). Similarly, lemongrass leaves’ EO contains geraniol (76.6%) and geranyl acetate (15.2%) as major compounds, while the root EO contains a higher amount of geraniol (87.9%) and lower amount of geranyl acetate (4.4%). This study reports for the first time chiral terpenoids from Cymbopogon spp. EOs. Chiral GC-MS gave specific enantiomeric distributions of nine, six, and five chiral terpenoids in the root, root stalk with a shoot, and leaves of citronella EOs, respectively. Likewise, four and three chiral terpenoids in the root and leaves of lemongrass oil followed by two chiral terpenoids in the leaves and root of palmarosa EOs each. Additionally, the root and leaves’ EOs of citronella exhibit noticeable activity on bacteria such as Staphylococcus aureus, Staphylococcus epidermidis, and Streptococcus pyogenes and fungus such as Candida albicans, Microsporum canis, and Trichophyton mentagrophytes. So, geranial-, neral-, geraniol-, and citronellal-rich EOs can be used as an alternative antimicrobial agent.
Janbaz KH, Qayyum A, Saqib F, Imran I, Zia-Ul-Haq M, de Feo V. Bronchodilator, vasodilator and spasmolytic activities of Cymbopogon martinii. J Physiol Pharmacol. 2014 Dec;65(6):859-66.
Abstract. Cymbopogon martinii (Cm.Cr) is traditionally used in south Asian communities for the management of multiple ailments including gastrointestinal, respiratory and vascular disorders and the present study was undertaken to validate these folkloric uses. The application of a methanol extract of the plant (Cm.Cr) to isolated rabbit jejunum preparation exhibited relaxation through decrease in magnitude and frequency of spontaneous contractions. The Cm.Cr also exerted relaxant effect on high K(+) (80 mM) induced contractions in isolated rabbit jejunum preparations. The Cm.Cr and its dichloromethane (Cm.Dcm) and aqueous (Cm.Aq) fractions also caused concentration-dependent relaxation in spontaneous and K(+) (80 mM) induced contractions which are comparables to effects produced by verapamil. Cm.Cr caused shifting of the Ca(2+)-curves toward right, suggesting the presence of a Ca(2+) channel blocking activity. Subsequently, Cm.Cr, Cm.Dcm and Cm.Aq caused relaxation of CCh (1 μM) and K(+) (80 mM) induced contractions in isolated rabbit tracheal preparations, suggesting that the observed relaxant effect can be mediated through antimuscarinic and/or Ca(2+) channel blocking activities. Cm.Cr tested against phenylephrine (PE; 1 μM) and K(+) (80 mM) induced contractions exhibited partial relaxation of isolated rabbit aortic preparations. The above-mentioned studies provided a scientific basis for the folkloric use of Cymbopogon martini in the management of multiple ailments in traditional systems of medicines.
Gemeda N, Tadele A, Lemma H, Girma B, Addis G, Tesfaye B, Abebe A, Gemechu W, Yirsaw K, Teka F, Haile C, Amano A, Woldkidan S, Geleta B, Debella A. Development, Characterization, and Evaluation of Novel Broad-Spectrum Antimicrobial Topical Formulations from Cymbopogon martini (Roxb.) W. Watson Essential Oil. Evid Based Complement Alternat Med. 2018 Sep 10;2018:9812093. doi: 10.1155/2018/9812093.
Abstract. Background: Skin infections were the most frequently encountered of all infections and the 4th leading cause of nonfatal disease burden. Topical drugs have been used for the management of skin infections. The growing concern of drug resistance to the topical agents has warned the need for continuous development of novel drug. Essential oils are the best candidate for new drug with different mode of action and target as they are rich in chemical constituents. Objective: To evaluate and develop safe and effective topical antimicrobial formulations from essential oil of Cymbopogon martini. Method. Essential oil was extracted using hydrodistillation aerial part C. martini and topical formulations were prepared in five different semisolid bases. In vitro antimicrobial investigations were performed on essential oil and topical formulations. Skin sensitizations of the formulations were evaluated using guinea pig maximization....Conclusion: In conclusion, topical formulations of C. martini essential oil can be alternative topical agents with safe broad-spectrum activity for the treatment of skin disorder. Further studies should focus on shelf life study and clinical study of the product.
Nirmal SA, Girme AS, Bhalke RD. Major constituents and anthelmintic activity of volatile oils from leaves and flowers of Cymbopogon martini Roxb. Nat Prod Res. 2007 Nov;21(13):1217-20. doi: 10.1080/14786410701552152.
Abstract. The major volatile constituents of leaves and flowers of Cymbopogon martini from the volatile oil obtained by steam distillation were identified by GC/MS. Five constituents were identified from the volatile oil of leaves and flowers, which constituted about 82.49 and 75.63% of the total amount, respectively. A monoterpene, piperitone (6.00%), was identified in the flowers of C. martini; in addition, flowers were found to contain more olefinic terpenes, namely geraniol (69.63%), compared with leaves (53.41%). Leaves contain bicyclic monoterpene, nerol (24.76%) and alpha-pinene (4.32%). Anthelmintic activity of these oils was evaluated on adult Indian earthworms Pheretima posthuma and results showed that the volatile oil of C. martini flower required less time to cause paralysis and death of the earthworms.