Publication Cover
Natural Product Research
Formerly Natural Product Letters
Volume 38, 2024 - Issue 2
153
Views
3
CrossRef citations to date
0
Altmetric
Research Articles

New dammarane-type triterpenoids from Aglaia elliptica (C.DC.) blume

ORCID Icon, ORCID Icon, ORCID Icon, , ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, , & show all
Pages 227-235 | Received 29 Mar 2022, Accepted 15 Aug 2022, Published online: 22 Aug 2022

References

  • An FL, Wang XB, Wang H, Li ZR, Yang MH, Luo J, Kong LY. 2016. Cytotoxic rocaglate derivatives from leaves of Aglaia perviridis. Sci Rep. 28(6):20045.
  • Chaidir, Lin WH, Ebel R, Edrada RA, Wray V, Nimtz M, Sumaryono W, Proksch P. 2001. Rocaglamide, glycosides, and putrescine bisamides from Aglaia dasyclada. J Nat Prod. 64(9):1216–1220.
  • Cui B, Chai H, Santisuk T, Reutrakul V, Farnsworth NR, Cordell GA, Pezzuto JM, Douglas Kinghorn A. 1997. Novel cytotoxic 1H-cyclopenta[b]benzofuran lignans from Aglaia elliptica. Tetrahedron. 53(52):17625–17632.
  • Engelmeier D, Hadacek F, Pacher T, Vajrodaya S, Greger H. 2000. Cyclopenta[b] benzofurans from Aglaia species with pronounced antifungal activity against Rice Blast Fungus (Pyricularia grisea). J Agric Food Chem. 48(4):1400–1404.
  • Farabi K, Harneti D, Maharani R, Hidayat AT, Awang K, Supratman U, Shiono Y. 2017. New cytotoxic protolimonoids from the stem bark of Aglaia argentea (Meliaceae). Phytochem Lett. 21:211–215.
  • Farabi K, Harneti D, N, Maharani R, Hidayat AT, Awang K, Supratman U, Shiono Y. 2018. New cytotoxic pregnane-type steroid from the stem bark of Aglaia elliptica (Meliaceae). RecNatProd. 12(2):121–127.
  • Gu CZ, Lv JJ, Zhang XX, Yan H, Zhu HT, Luo HR, Wang D, Yang CR, Xu M, Zhang YJ. 2015. Minor dehydrogenated and cleavaged dammarane-type saponins from the steamed roots of Panax notoginseng. Fitoterapia. 103:97–105.
  • Harneti D, Supratman U. 2021. Phytochemistry and biological activities of Aglaia species. Phytochemistry. 181:112540.
  • Harneti D, Supriadin S, Ulfah M, Safari A, Supratman U, Awang K, Hayashi H. 2014. Cytotoxic constituents from the bark of Aglaia eximia (Meliaceae). Phytochem Lett. 8:28–31.
  • Heliawati L, Khatimah H, Hermawati E, Syah YM. 2020. Four dammarane triterpenes and their inhibitory properties against eight receptor tyrosine kinases. Nat Prod Sci. 26(4):345–350.
  • Hidayat AT, Farabi K, Harneti D, Maharani R, Mayanti T, Setiawan AS, Supratman U, Shiono Y. 2017. Cytotoxicity and structure activity relationship of dammarane-type triterpenoids from the bark of Aglaia elliptica against P-388 Murine Leukemia Cells. Nat Prod Sci. 23(4):291–298.
  • Hutagaol RP, Harneti D, Hidayat AT, Nurlelasari Maharani R, Katja DG, Supratman U, Awang K, Shiono Y. 2020. (22E,24S)-24-Propylcholest-5en-3α-acetate: a new steroid from the bark Aglaia angustifolia (Miq.) (Meliaceae). Molbank. 2020(1):M1112.
  • Izdihar G, Naini AA, Harneti D, Maharani R, Nurlelasari N, Mayanti T, Safari A, Farabi K, Supratman U, Azmi MN, et al. 2021. Sesquiterpenoids from the stem bark of Aglaia simplicifolia and their cytotoxic activity against B16-F10 melanoma skin cancer cell. Indones J Chem. 21(6):1560–1567. [CrossRef][10.22146/ijc.68383]
  • Joycharat N, Greger H, Hofer O, Saifah E. 2008. Flavaglines and triterpenoids from the leaves of Aglaia forbessi. Phytochemistry. 69(1):206–211.
  • Lee IS, Oh SR, Ahn KS, Lee HK. 2001. Semialactone, isofouquierone peroxide and fouquierone, three new dammarane triterpenes from Rhus javanica. Chem Pharm Bull. 49(8):1024–1026.
  • Milawati H, Harneti D, Maharani R, Nurlelasari N, Hidayat AT, Azmi MN, Shiono Y, Supratman U. 2019. Caryophyllen-type sesquiterpenoids from the stembark of Aglaia harmsiana and their cytotoxic activity against MCF-7 breast cancer cells. Molekul. 14(2):126–132.
  • Muellner AN, Samuel R, Chase MW, Pannell CM, Greger H. 2005. Aglaia (Meliaceae): an evaluation of taxonomic concepts based on DNA data and secondary metabolites. Am J Bot. 92(3):534–543.
  • Pannell CM. 1992. Taxonomic monograph of the genus Aglaia Lour. (Meliaceae). In: Kew Bulletin Additional Series XVI. Kew, Richmond, Surrey, UK: HMSO.
  • Retnowati R, Sulistyarti H, Wahidah NZ, Syarifah AL, Salam S, Nurlelasari Safari A, Harneti D, Tanjung M, Hidayat AT, Maharani R, et al. 2021. Cytotoxic constituents from the stem bark of Chisocheton pentandrus. Nat Prod Sci. 27(1):18–27.
  • Ruan J, Zheng C, Qu L, Liu Y, Han L, Yu H, Zhang Y, Wang T. 2016. Plant resources, 13C-NMR spectral characteristic and pharmacological activities of dammarane-type triterpenoids. Molecules. 21(8):1047.
  • Sianturi J, Harneti D, Mayanti T, Supratman U, Awang K. 2016. A new (-)-5’,6-dimethoxyisolariciresinol-(3'',4''-dimethoxy)-3α-O-β-D-glucopyranosides from the bark of Aglaia eximia (Meliaceae. )Nat Prod Res. 30(19):2204–2208.
  • Sianturi J, Purnamasari M, Harneti D, Mayanti T, Supratman U, Awang K, Hayashi H. 2015. New bisamide compounds from the bark of Aglaia eximia (Meliaceae). Phytochem Lett. 13:297–301.
  • Sun Y, Cui L, Sun Y, Li Q, Li Y, Wang Z, Xu W, Kong L, Luo J. 2022. A/D-rings-seco limonoids from the fruits of Aglaia edulis and their bioactivities. Phytochemistry. 195:113049.
  • Yodsaoue O, Sonprasit J, Karalai C, Ponglimanont C, Tewtrakul S, Chantrapromma S. 2012. Diterpenoids and triterpenoids with potential anti-inflammatory activity from the leaves of Aglaia odorata. Phytochemistry. 76:83–91.
  • Zhang F, Wang JS, Gu YC, Kong LY. 2010. Triterpenoids from Aglaia abbreviata and their cytotoxic activities. J Nat Prod. 73(12):2042–2046.
  • Zhang H, Xu H-H, Song Z-J, Chen L-Y, Wen H-J. 2012. Molluscidal activity of Aglaia duperreana and the constituents of its twigs and leaves. Fitoterapia. 83(6):1081–1086.

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.