PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

Simultaneous analysis of six bioactive lignans in Phyllanthus species by reversed phase hyphenated high performance liquid chromatographic technique

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An online-hyphenated high-performance liquid chromatography-photodiode array-mass spectrometry (HPLC-PDA-MS) analytical method was developed for the simultaneous determination of six lignans of therapeutic importance in four Phyllanthus spp. (P. amarus, P. maderaspatensis, P. urinaria, and P. virgatus). HPLC with monolithic reverse phase silica column (4.6 × 100 mm) and simple isocratic elution of methanol-water mixed with dioxane facilitated the separation of lignans of diverse nature such as diarylbutyrolactone, tetrahydrofuran, isomeric aryltetralin, and diarylbutane type for quantitative analysis. Targeted lignans viz. heliobuphthalmin lactone (1), virgatusin (2), hypophyllanthin (3), phyllanthin (4), nirtetralin (5), and niranthin (6) were confirmed unambiguously in four Phyllanthus species by their abundant molecular adduct ions, retention time, UV, and mass spectra as compared with those of reference compounds. Advantages and limitations of both detection techniques for qualitative (fingerprinting) and quantitative analysis of the above mentioned lignans in four Phyllanthus spp. are discussed. The method was validated following international guidelines. The described method can be utilized for assays and stability tests of P. amarus extracts as well as traditional Indian medicine based on Phyllanthus herb.
Słowa kluczowe
Rocznik
Strony
321--337
Opis fizyczny
Bibliogr. 45 poz., rys., tab.
Twórcy
autor
  • Council of Scientific and Industrial Research (CSIR) Analytical Chemistry Division, Central Institute of Medicinal and Aromatic Plants Lucknow 226015 India
autor
  • Council of Scientific and Industrial Research (CSIR) Analytical Chemistry Division, Central Institute of Medicinal and Aromatic Plants Lucknow 226015 India
  • Council of Scientific and Industrial Research (CSIR) Analytical Chemistry Division, Central Institute of Medicinal and Aromatic Plants Lucknow 226015 India
autor
  • Council of Scientific and Industrial Research (CSIR) Analytical Chemistry Division, Central Institute of Medicinal and Aromatic Plants Lucknow 226015 India
autor
  • Council of Scientific and Industrial Research (CSIR) Genetic Resource and Biotechnology Division, Central Institute of Medicinal and Aromatic Plants Lucknow 226015 India
autor
  • Council of Scientific and Industrial Research (CSIR) Analytical Chemistry Division, Central Institute of Medicinal and Aromatic Plants Lucknow 226015 India
Bibliografia
  • [1] L.M. Perry and J. Metzger, Medicinal Plants of the East Southeast Asia: Attributed Properties and Uses, MIT Press, Cambridge, MA, 1980, pp. 150
  • [2] D.W. Unander, G.L. Webster, and B.S. Blumberg. J. Ethnopharmacol., 45, 1–18 (1995)
  • [3] K.M. Nadkarni, Indian Materica Medica, Dhootapapeshwar Prakashan Ltd. Panvel, Bombay, India, 1976, vol. 1, pp. 946–948
  • [4] J.B. Calixto, A.R.S. Santos, V.C. Filho, and R.A. Yunes. Med. Res. Rev., 18, 225–258 (1998)
  • [5] A.D. Naik and A.R. Juvekar. Ind. J. Med. Sci., 57, 387–393 (2003)
  • [6] R.L. Huang, Y.L. Huang, J.C. Ou, C.C. Chen, F.L. Hsu, and C. Chang. Phytother. Res., 17, 449–453 (2003)
  • [7] K. Ishimaru, K. Yoshimatsu, T. Yamakawa, H. Kamada, and K. Shimomura. Phytochemistry, 31, 2015–2018 (1992)
  • [8] D. Hau, R. Gambari, R. Wong, M. Yuen, G. Cheng, C. Tong, G. Zhu, A. Leung, P. Lai, and F. Lau. Phytomedicine, 16, 751–760 (2009)
  • [9] K.K. Wanniarachchi, L.D.C. Peiris, and W.D. Ratnasooriya. Pharm. Biol., 47, 260–265 (2009)
  • [10] D.C. Ayres and J.D. Loike, Lignans: Chemical, Biological, and Clinical Properties, Cambridge University Press, Cambridge, 1990
  • [11] R. Verpoorte and M. Petersen, (eds). Phytochem. Rev., 2, 199–420 (2003)
  • [12] M.S. Shin, E.U. Kang, and Y.I. Lee. Antiviral Res., 67, 163–168 (2005)
  • [13] P. Pramyothin, C. Ngamtin, S. Poungshompoo, and C. Chaichantipyuth. J. Ethnopharmacol., 114, 169–173 (2007)
  • [14] A.R.S. Santos, R. Niero, V.C. Filho, R.A. Yunes, M.G. Pizzolatti, F.D. Monache, and J.B. Calixto. Planta Med., 61, 329–332 (1995)
  • [15] A. Somanabandhu, S. Nitayangkura, C. Mahidol, S. Ruchirawat, K. Likhitwitayawuid, H.L. Shieh, H. Chai, J.M. Pezzuto, and G.A. Cordell. J. Nat. Prod., 56, 233–239 (1993)
  • [16] S.K. Bandyopadhyay, S.C. Pakrashi, and A. Pakrashi. J. Ethnopharmacol., 70, 171–176 (2000)
  • [17] C.A. Kassuya, D.F.P. Leite, L.V. de Melo, V.L.G. Rehder, and J.B. Calixto. Planta Med., 71, 721–726 (2005)
  • [18] R.A. Hussain, J.K. Dickey, M.P. Rosser, J.A. Matson, M.R. Kozlowski, R.J. Brittain, M.L. Webb, P.M. Rose, and P. Fernandes. J. Nat. Prod., 58, 1515–1520 (1995)
  • [19] F. Notka, G.R. Meier, and R. Wagner. Antiviral Res., 64, 93–102 (2004)
  • [20] S.R.N. Ignacio, J.L.P. Ferreira, M.B. Almeida, and C.F. Kubelka, J. Ethnopharmacol., 74, 181–187 (2001)
  • [21] M.A. Dias, A.H. Campos, V. Cechinel-Filho, R.A. Yunes, and J.B. Calixto. J. Pharm. Pharmacol., 47, 846–851 (1995)
  • [22] N.N. Hạnh and T.L. Quan. TC. Du’ọ’c học., 8, 10–11 (2004)
  • [23] R.L. Huang, Y.L. Huang, J.C. Ou, C.C. Chen, F.L. Hsu, and C. Chang. Phytother. Res., 17, 449–453 (2003)
  • [24] D.F. Leite, C.A. Kassuya, T.L. Mazzuco, A. Silvestre, L.V. de-Melo, V.L. Rehder, V.M. Rumjanek, and J.B. Calixto. Planta Med., 72, 1353–1358 (2006)
  • [25] C. Ramalhete, M. Abrantes, T. Mil-Homens, N. Duarte, D. Lopes, P. Cravo, M.C. Madureira, J. Ascenso, and M.J.U. Ferreira. Planta Med., 73, 874 (2007)
  • [26] S. Deb and S.K. Mandal. Indian Drugs, 33, 415–416 (1996)
  • [27] R.T. Sane, J.L. Chawla, and V.V. Kuber. Indian Drugs, 34, 580–584 (1997)
  • [28] K. Dhalwal, Y.S. Biradar, and M. Rajani. J. AOAC Indian, 89, 619–623 (2006)
  • [29] A.K. Tripathi, R.K. Verma, A.K. Gupta, M.M. Gupta, and S.P.S. Khanuja. Phytochem. Anal., 17, 394–397 (2006)
  • [30] P.K. Mukherjee, A. Wahile, V. Kumar, S. Rai, K. Mukherjee, and B.P. Saha. Drug Inf. J., 40, 131 (2006)
  • [31] V. Srivastava, M. Singh, R. Malasoni, K. Shanker, R.K. Verma, M.M. Gupta, A.K. Gupta, and S.P.S. Khanuja. J. Sep. Sci., 31, 47–65 (2007)
  • [32] A. Sharma, R.T. Singh, and S.S. Handa. Phytochem. Anal., 4, 226–229 (1993)
  • [33] U.K. Kumud, D. Parag, and C. Vivek. Indian Drugs, 38, 303–306 (2001)
  • [34] C.H. Kuo, S.S. Lee, H.Y. Chang, and S.W. Sun. Electrophoresis, 24, 1047–1053 (2003)
  • [35] C.Y. Wang and S.S. Lee. Phytochem. Anal., 16, 120–126 (2005)
  • [36] V. Murugaiyah and K.L. Chan. J. Chromatogr. A, 1154, 198–204 (2007)
  • [37] C.C. Chang, Y.C. Lien, K.C.S. Liu, and S.S. Lee. Phytochemistry, 63, 825–833 (2003)
  • [38] M. Singh, N. Tiwari, K. Shanker, R.K. Verma, A.K. Gupta, and M.M. Gupta. J. Asian Nat. Prod. Res., 11, 562–568 (2009)
  • [39] G. Bagalkotkar, S.R. Sagineedu, M.S. Saad, and J. Stanslas. J. Pharm. Pharmacol. 58, 1559–1570 (2006)
  • [40] S.M. Willför, A.I. Smeds, and B.R. Holmbom. J. Chromatogr. A, 1112, 64–77 (2006)
  • [41] ICH Q2, Proceedings of the International Conference on Harmonization, Geneva, November, 2005, Step 4 Version
  • [42] IUPAC, Harmonized guidelines for single-laboratory validation of methods of analysis (IUPAC Technical Report). Pure Appl. Chem., 74, 835–855 (2002)
  • [43] A. Hazotte, D. Libong, M. Matoga, and P. Chaminade. J. Chromatogr. A, 1170, 52–61 (2007)
  • [44] J.M. Miller, Chromatography: Concepts, Contrasts, 2nd edn., Wiley Interscience, New York, 2005
  • [45] J. Slanina and Z. Glatz. J.Chromatogr. B, 812, 215–229 (2004)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2d75ff20-0a8f-49c7-bad4-7b15c35fa311
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.