52
Views
12
CrossRef citations to date
0
Altmetric
Original Articles

Hydro-distilled Volatile Oil Constituents from the Aerial Parts of Satureja mutica and QSRR Simulation by Multiple Linear Regression

, , &
Pages 307-320 | Received 06 Apr 2015, Accepted 24 Dec 2015, Published online: 30 Mar 2016

References

  • Jamzad, Z. (2009). Thymus and Satureja species of Iran. Research Institute of Forests and Rangelands Press. Tehran, p. 121.
  • Mongelli, E., Martino, V., Coussio, J. (1996). Screening of Argentine medicinal plants using the brine shrimp microwell cytotoxicity assay. International Journal of Pharmacology. 34: 249–254.
  • Gohari, A.R., Hadjiakhoondi, A., Sadat-Ebrahimi, E., Saeidnia, S., Shafiee, A. (2005). Cytotoxic terpenoids from Satureja macrantha C.A. Mey. Daru Journal of Pharmaceutical Sciences. 13(4): 177–181.
  • Madsen, H.L., Sorensen, B., Skibsted, L.H., Bertelsen, G. (1998). The antioxidative activity of summer savory (Satureja hortensis L.) and rosmary (Rosmarinus officinalis L.) in dressing stored exposed to light or in darkness. Food Chemistry. 63: 173–180.
  • Hajhashemi, V., Sadraei, H., Ghannadi, A.R., Mohseni, M. (2000). Antispasmodic and anti-diarrhoeal effect of Satureja hortensis L. essential oil. Journal of Ethnopharmacology. 71: 187–192.
  • Saeidnia, S., Gohari, A.R., Kiuchi, F., Honda, G. (2005). In vitro anti-epimastigote activity of some Iranian medicinal plants. Iranian Journal of Pharmaceutical Research. 2: 101–103.
  • Meshkatalsadat, M.H. and Shabaninejad, Y. (2011). GC-MS analysis of volatile organic compounds of Satureja bachtiarica Bung using US-HS-SPME and nano scale injection techniques. Digest Journal Nanomaterials and Biostructures. 6(2): 359–363.
  • Evans, W.C. (1989). Trease and Evans’ Pharmacognocy. 13th edn, Bailliere Tindall. London. p. 205.
  • Jalali-Heravi, M., Fatemi, M.H. (2001). Artificial neural network modeling of Kovats retention indices for noncyclic and monocyclic terpenes. Journal of Chromatography A. 915: 177–183.
  • Garakani-Nejad, Z., Karlovits, M., Demuth, W., Stimpfl, T., Vycudilik, W., Jalali-Heravi, M., Varmuza, K. (2004). Prediction of gas chromatographic retention indices of a diverse set of toxicologically relevant compounds. Journal of Chromatography A. 1028: 287–295.
  • Acevedo-Martinez, J., Escalona-Arranz, J.C., Villar-Rojas, A., Tellez-Palmero, F., Perez-Roses, R., Gonzalez, L., Carrasco-Velar, R. (2006). Quantitative study of the structure-retention index relationship in the imine family. Journal of Chromatography A. 1102: 238–244.
  • Tulasamma, P., Reddy, K.S. (2006). Quantitative structure and retention relationships for gas chromatographic data: Application to alkyl pyridines on apolar and polar phases. Journal of Molecular Graphics and Modelling. 25: 507–513.
  • Heberger, K., Kowalska, T. (1999). Quantitative structure–retention relationships: VI. Thermo-dynamics of Kovats retention index–boiling point correlations for alkylbenzenes in gas chromatography. Chemometrics and Intelligent Laboratory Systems. 47: 205–217.
  • Ribeiro, F.A.L., Ferreira, M.M.C. (2003). QSPR models of boiling point, octanol-water partition coefficient and retention time index of polycyclic aromatic hydrocarbons. Journal of Molecular Structure Theochem. 663: 109–126.
  • Jain, A., Yalkowsky, S.H. (2007). Comparison of two methods for estimation of melting points of organic compounds. Industrial & Engineering Chemistry Research. 46: 2589–2592.
  • Katritzky, A.R., Mu, L., Karelson, M. (1996). A QSPR study of the solubility of gases and vapors in water. Journal of Chemical Information and Modeling. 36: 1162–1168.
  • Wang, J.M., Krudy, G., Hou, T.J., Zhang, W., Holland, G., Xu, X.J. (2007). Development of reliable aqueous solubility models and their application in druglike analysis. Journal of Chemical Information and Modeling. 47: 1395–1404.
  • Nekoei, M., Mohammadhosseini, M., Alavi-Gharahbagh, A. (2009). Quantitative structure retention relationship study for prediction of retention indices of essential oils of Neolitsea fischeri Gamble by multiple linear regression. Journal of Applied Chemistry. 1: 159–168.
  • Topliss, J.G. (1983). Quantitative Structure Activity Relationships of Drugs; Academic Press: New York.
  • Heberger, K. (2007). Quantitative structure-(chromatographic) retention relationships. Journal of Chromatography A. 1158: 273–305.
  • Acevedo-Martinez, J., Escalona-Arranz, J.C., Villar-Rojas, A., Tellez-Palmero, F., Perez-Roses, R., Gonzalez, L., Carrasco-Velar, R. (2006). Quantitative study of the structure retention index relationship in the imine family. Journal of Chromatography A. 1102: 238–244.
  • Goudarzi, N., Goodarzi, M., Arab Chamjangali, M. (2010). Prediction of inhibition effect of some aliphatic and aromatic organic compounds using QSAR method. Journal of Environmental Chemistry and Ecotoxicology. 2: 47–51.
  • British Pharmacopoeia HMSO, London, (1998). 2: A137-A138.
  • Adams, R.P. (2007). Identification of Essential Oil Components by Gas Chromatography/ Mass Spectrometry. 4th ed., Allured Publishing Co. Carol Stream. IL, USA.
  • Todeschini, R., Consonni, V. (2000). Handbook of Molecular Descriptors; Wiley-VCH: Weinheim.
  • Kier, L.B., Hall, L.H. (1986). Molecular Connectivity in Structure-Activity Analysis. RSP-Wiley, Chichetster, UK.
  • Mohammadhosseini, M., Zamani, H. A., Akhlaghi, H., Nekoei, M. (2011). Hydrodistilled volatile oil constituents of the aerial parts of Prangos serpentinica (Rech.f., Aell. Esfand.) Hernnstadt and Heyn from Iran and quantitative structure-retention relationship simulation. Journal of Essential Oil Bearing Plants. 14(5): 559–573.
  • Mohammadhosseini, M., Deeb, O., Alavi-Gharabagh, A., Nekoei, M. (2012). Exploring novel QSRRs for simulation of gas chromatographic retention indices of diverse sets of terpenoids in Pistacia lentiscus L. essential oil using stepwise and genetic algorithm multiple linear regressions. Analytical Chemistry Letters. 2(2): 80–102.
  • Galvez, J., Garcia-Domenech, R., Salabert-Salvador, M.T., Solar, R. (1994). Charge indexes, new topological descriptors. Journal of Chemical Information and Modeling. 34: 520–525.
  • Broto, P., Moreau, G., Vandyke, C. (1984). Molecular structures: perception, autocorrelation descriptor and SAR studies. European Journal of Medicinal Chemistry. 19: 66–70.
  • Hassanpouraghdam, M.B., Shalamzari, M.S., Aazami, M.A., Mohajjel-Shoja, A. (2009). A terpinene and carvacrol rich volatile oil of Satureja sahendica Bornm. from Maragheh district in Northwest Iran. Chemija. 20(3): 186–189.
  • Dunkiae, V., Bezic, N., Vuko, E., Cukrov, D. (2010). Antiphytoviral activity of Satureja montana L. ssp. Variegate (Host) P. W. Ball essential oil and phenol compounds on CMV and TMV. Molecules. 15: 6713–6721.
  • Sefidkon, F., Jamzad, Z. (2006). Essential oil composition of Satureja boissieri. Journal of Essential Oil Bearing Plants. 9(3): 198–202.
  • Gohari, A.R., Hadjiakhoondi, A., Shafiee, A., Ebrahimi, E.S., Mozaffarian, V. (2005). Chemical composition of the essential oils of Satureja atropatana and Satureja mutica growing wild in Iran. Journal of Essential Oil Research. 17: 17–18.
  • Sefidkon, F., Jamzad, Z. (2005). Chemical composition of the essential oil of three Iranian Satureja species (S. mutica, S. macrantha and S. intermedia). Food Chemistry. 91: 1–4.
  • Hadian, J., NejadEbrahimi, S., Salehi, P. (2010). Variability of morphological and phytochemical characteristics among Satureja hortensis L. accessions of Iran. Industrial Crops and Products. 32: 62–69.
  • Hadian, J., Mirjalili, M.H., Kanani, M.R., Salehnia, A., Ganjipoor, P. (2011). Phytochemical and morphological characterization of Satureja khuzistanica Jamzad populations from Iran. Chemistry & Biology. 8(5): 902–915.
  • Ibraliu, A., Dhillon, B.S., Faslia, N., Stich, B. (2010). Variability of essential oil composition in Albanian accessions of Satureja montana L. Journal of Medicinal Plants Research. 4(14): 1359–1364.
  • Markoviae, T., Chatzopoulou, P., Siljegovic, J., Nikolic, M., Glamoèlija, J., Aeiriae, A., Sokoviae, M. (2011). Chemical analysis and antimicrobial activities of the essential oils of Satureja thymbra L. and Thymbra spicata L. and their main components. Archives of Biological Science Belgrade. 63(2): 457–464.
  • Eminagaoglu, O., Tepe, B., Yumrutas, O., Askin Akpulat, H., Daferera, D., Polissiou, M., Sokmen, A. (2007). The in vitro antioxidative properties of the essential oils and methanol extracts of Satureja spicigera (K. Koch.) Boiss. and Satureja cuneifolia ten. Food Chemistry. 100: 339–343.
  • Mohammadhosseini, M., Beiranvand, M. (2013). Chemical composition of the essential oil from the aerial parts of Satureja hortensis as a potent medical plant using traditional hydrodistillation. Journal of Chemical Health Risks. 3(4): 49–60.
  • Mohammadhosseini, M. (2012). Chemical profile and antibacterial activity in hydrodistilled oil from aerial parts of Prangos ferulacea (L.) Lindl. and prediction of gas chromatographic retention indices by using genetic algorithm multiple linear regressions. Asian Journal of Chemistry. 24(9): 3814–3820.
  • Mohammadhosseini, M. (2012). Hydrodistilled volatile oils of the flowers of Salvia leriifolia Bench. and Salvia multicaulis Vahl. as two growing wild plants in Iran. Asian Journal of Chemistry. 24(4): 1432–1434.
  • Mohammadhosseini, M. (2013). Hydrodistilled volatile oil from stems of Eryngium creticum Lam. in the marginal brackish regions of Semnan province by using gas chromatography combined with mass spectrometry. Asian Journal of Chemistry. 25(1): 390–392.
  • Nekoei, M., Mohammadhosseini, M. (2016). Chemical compositions of the essential oils from the aerial parts of Achillea wilhelmsii using traditional hydrodistillation, microwave assisted hydrodistillation and solvent-free microwave extraction methods: Comparison with the volatile compounds obtained by headspace solid-phase microextraction. Journal of Essential Oil Bearing Plants. 19(1): 59–75.
  • Hashemi-Moghaddam, H., Mohammadhosseini, M., Basiri, M. (2015). Optimization of microwave assisted hydrodistillation on chemical compositions of the essential oils from the aerial parts of Thymus pubescens and comparison with conventional hydrodistllation. Journal of Essential Oil Bearing Plants. 18(4): 884–893.
  • Mohammadhosseini, M. (2015). Chemical composition of the volatile fractions from flowers, leaves and stems of Salvia mirzayanii by HS-SPME-GC-MS. Journal of Essential Oil Bearing Plants. 18(2): 464–476.
  • Mohammadhosseini, M. (2015). Chemical composition of the essential oils and volatile fractions from flowers, stems and roots of Salvia multicaulis Vahl. by using MAHD, SFME and HS-SPME methods. Journal of Essential Oil Bearing Plants. 18(6): 1360–1371.
  • Mohammadhosseini, M., Akbarzadeh, A., Hashemi-Moghaddam, H., Mohammadi Nafchi, A., Mashayekhi, H.A., Aryanpour, A. (2016). Chemical composition of the essential oils from the aerial parts of Artemisia sieberi by using conventional hydrodistillation and microwave assisted hydrodistillation: A comparative study. Journal of Essential Oil Bearing Plants. 19(1): 32–45.
  • Mohammadhosseini, M., Mahdavi, B., Shahnama, M. (2015). Chemical composition of essential oils from aerial parts of Ferula gummosa (Apiaceae) in Jajarm Region, Iran using traditional hydrodistillation and solvent-free microwave extraction methods: A comparative approach. Journal of Essential Oil Bearing Plants. 18(6): 1321–1328.
  • Shahnama, M., Azami, S., Mohammadhosseini, M. (2015). Characterization of the essential oil and evaluation of antibacterial activity of methanolic extract of Stachys lavandulifolia Vahl. International Journal of Current Microbiology and Applied Sciences. 4(3): 275–283.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.