Publication Cover
Natural Product Research
Formerly Natural Product Letters
Volume 36, 2022 - Issue 8
191
Views
5
CrossRef citations to date
0
Altmetric
Research Articles

Two new triterpenoid fatty acid esters from Schefflera barteri Harms (Araliaceae)§

, , , , , , , , & show all
Pages 2085-2096 | Received 15 Jun 2020, Accepted 01 Nov 2020, Published online: 18 Nov 2020

References

  • Atsafack SS, Kuiate J-R, Mouokeu RS, Mogtomo MLK, Tchinda AT, Tamokou JDD, Magnifouet NH, Ebelle ERM, Biyiti L, Ngono NRA. 2015. Toxicological studies of stem bark extract from Schefflera barteri Harms (Araliaceae). BMC Complement Altern Med. 15(1):44.
  • Awouafack MD, Ito T, Tane P, Kodama T, Tanaka M, Asakawa Y, Morita H. 2016. A new cycloartane-type triterpene and a new eicosanoic acid ester from fruits of Paullinia pinnata L. Phytochem Lett. 15:220–224.
  • Barreto ADS, Carvalho MDG, Nery IDA, Gonzaga L, Kaplan MAC. 1998. Chemical constituents from Himatanthus articulata. J Braz Chem Soc. 9(5):430–434.
  • Chumkaew P, Kato S, Chantrapromma K. 2005. A new triterpenoid ester from the fruits of Bruguiera parviflora. Chem Pharm Bull (Tokyo)). 53(1):95–96.
  • CLSI. 2017. Performance standards for antimicrobial susceptibility testing. 27th ed. CLSI supplement M100. Wayne, PA: Clinical and Laboratory Standards Institute.
  • Cunningham AB. 1996. Peuples, parc et plantes. Recommandations pour les zones à usages multiples et les alternatives de développement autour du parc national de Bwindi Impénétrable, Ouganda. UNESCO Paris: Document de travail Peuples et Plantes. 4:68.
  • Mafodong DFL, Tsopmo A, Awouafack MD, Roland TT, Dzoyem JP, Tane P. 2015. A novel ellagic acid derivative from Desbordesia glaucescens. Nat Prod Commun. 10(10):1934578X1501001019.
  • Faure R, Gaydou EM, Wollenweber E. 1991. Application of inverse-detected two-dimensional heteronuclear-correlated NMR spectroscopy to the complete carbon- 13 assignment of isomultiflorenyl acetate. J Nat Prod. 54(6):1564–1569.
  • Fenghua L, Jian Z, Mingbao L, Xianming S, Changkang L, Hongqing W, Baoming L, Ruoyun C, Jie K. 2019. Anti-inflammatory terpenes from Schefflera rubriflora C. J. Tseng & G. Hoo with their TNF-α and IL-6 inhibitory activities. Phytochemistry. 163:23–32.
  • Goldin A, Venditti JM, Macdonald JS, Muggia FM, Henney JE, Devita VT. Jr 1981. Current results of the screening program at the Division of cancer treatment, National Cancer Institute. Eur J Cancer. 17(2):129–142.
  • Kikuchi T, Takebayashi M, Shinto M, Yamada T, Tanaka R. 2013. Three new multiflorane-type triterpenes from pumpkin (Cucurbita maxima) seeds. Molecules. 18(5):5568–5579.
  • Lin Y, Peng X, Chen J, Zhou J, Ruan H. 2019. Triterpenoids from the fresh pericarps of Juglans hopeiensis. Nat Prod Res. 1–8. doi: https://doi.org/10.1080/14786419.2019.1622111
  • Liu QY, Wang F, Zhang L, Xie JM, Li P, Zhang YH. 2015. A hydroxylated lupeol-based triterpenoid ester isolated from the Scurrula parasitica parasitic on Nerium indicum. HCA. 98(5):627–632.
  • Mkounga P, Maza HLD, Ouahouo BMW, Tyon LN, Ishikawa H, Nishino H, Nkengfack AE. 2016. New lupan-type triterpenoids. Z Naturforsch C J Biosci. 71(11-12):381–386.
  • Mpetga SJD, Tene M, Wabo HK, Li S-F, Kong L-M, He H-P, Hao X-J, Tane P. 2012. Cytotoxic cycloartanes from the fruits of Caloncoba glauca. Phytochem Lett. 5(1):183–187.
  • Neba NE. 2011. Traditional health care system and challenges in developing ethnopharmacology in Africa: example of Oku, Cameroon. Stud EthnoMed. 5(2):133–139.
  • Ngouo L, Pinta J, Foko J, Nguemo DD, Tchoumboué J, Zango P. 2004. Inventaire et identification des plantes mellifères de la zone soudano-guinéenne d’altitude de l’Ouest Cameroun. Tropicultura. 22:139–145.
  • Nguyen TP, Tran TTV, Mai DT, Le TD, Phan NM, Bui TD. 2015. New C20-gibberellin diterpene from the leaves of Schefflera sessiliflora De P. V. Nat Prod Res. 29(15):1432–1436.
  • Nzogong RT, Nganou BK, Tedonkeu TA, Awouafack MD, Tene M, Ito T, Tane P, Morita H. 2018. Three new abietane-type diterpenoids from Plectranthus africanus and their antibacterial activities. Planta Med. 84(1):59–64.
  • Nzogong RT, Ndjateu FST, Ekom SE, Fosso JAM, Awouafack MD, Tene M, Tane P, Morita H, Choudhary MI, Tamokou JDD. 2018. Antimicrobial and antioxidant activities of triterpenoid and phenolic derivatives from two Cameroonian Melastomataceae plants: Dissotis senegambiensis and Amphiblemma monticola. BMC Complement Altern Med. 18(1):159
  • Ogechukwu OE, Ogoamaka OP, Sylvester NC, Hassan A, Debbab A, Okechukwu EC, Kawamura A, Peter P. 2011. Steroids and triterpenoids from Eastern Nigeria mistletoe, Loranthus micranthus Linn. (Loranthaceae) parasitic on Kola acuminata with immunomodulatory potentials. Phytochem Lett. 4:357–362.
  • Öksüz S, Topcu G. 1987. Triterpene fatty acid esters and flavonoids from Inula britannica. Phytochemistry. 26(11):3082–3084.
  • Ouyang J-K, Dong L-M, Xu Q-L, Wang J, Liu S-B, Qian T, Yuan Y-F, Tan J-W. 2018. Triterpenoids with α-glucosidase inhibitory activity and cytotoxic activity from the leaves of Akebia trifoliata. RSC Adv. 8(70):40483–40489.
  • Sammet B, Bogner T, Nahrwold M, Weiss C, Sewald N. 2010. Approaches for the synthesis of functionalized cryptophycins. J Org Chem. 75(20):6953–6960.
  • Schühly W, Heilmann J, Çalis I, Sticher O. 1999. New triterpenoids with antibacterial activity from Zizyphus joazeiro. Planta Med. 65(8):740–743.
  • Sonfack G, Tchinda CF, Simo IK, Bitchagno MGT, Nganou BK, Celik I, Tene M, Gorkem SF, Opatz T, Beng VP, et al. 2019. Saponin with antibacterial activity from the roots of Albizia adianthifolia. Nat Prod Res. 1–9. Doi: https://doi.org/https://doi.org/10.1080/14786419.2019.1672689.
  • Srisawat T, Chumkaew P, Heed-Chim W, Sukpondma Y, Kanokwiroon K. 2013. Phytochemical screening and cytotoxicity of crude extracts of Vatica diospyroides Symington type LS. Trop J Pharm Res. 12:71–76.
  • Susanti S, Iwasaki H, Itokazu Y, Nago M, Taira N, Saitoh S, Oku H. 2012. Tumor specific cytotoxicity of arctigenin isolated from herbal plant Arctium lappa L. J Nat Med. 66(4):614–621.
  • Tamfu AN, Tagatsing FM, Talla E, Jabeen A, Mbafor TJ, Shaheen F. 2019. Bioactive constituents from seeds of Annona Senegalensis Persoon (Annonaceae). Nat Prod Res. 1–6. Doi: https://doi.org/https://doi.org/10.1080/14786419.2019.1634713.
  • Tanaka T, Koyano T, Kowithayakorn T, Fujimoto H, Okuyama E, Hayashi M, Komiyama K, Ishibashi M. 2001. New multiflorane-type triterpenoid acids from Sandoricum indicum. J Nat Prod. 64(9):1243–1245.
  • Tapondjou LA, Lontsi D, Sondengam BL, Shaheen F, Choudhary MI, Atta-Ur-Rahman van Heerden FR, Park H-J, Lee K-T. 2003. Saponins from Cussonia bancoensis and their inhibitory effects on nitric oxide production. J Nat Prod. 66:1266–1269.
  • Tapondjou LA, Mitaine-Offer AC, Tomofumi M, Holger L, Mirjolet JF, Guilbaud N, Lacaille-Dubois MA. 2006. Triterpene saponins from Schefflera abyssinica. Biochem Syst Ecol. 34(12):887–889.
  • Tene M, Tane P, Tamokou JDD, Kuiate J-R, Connolly JD. 2008. Degraded diterpenoids from the stem bark of Neoboutonia mannii. Phytochem Lett. 1(2):120–124.
  • Thu VK, Van Thang N, Nhiem NX, Anh HLT, Yen PH, Hang DTT, Van Minh C, Van Kiem P. 2016. Two new compounds from the leaves of Glochidion obliquum. Nat Prod Commun. 11(4):443–444.
  • Tsopgni WD, Blaise Azebaze AG, Mbosso Teinkela JE, Ndjakou BL, Bosyom FF, Tchaleu BN, Vardamides JC. 2019. New unsaturated fatty acid and other chemical constituents from the roots of Cola rostrata K. Schum. (Malvaceae). Biochem Syst Ecol. 86:103913. Doi: https://doi.org/https://doi.org/10.1016/j.bse.2019.103913.
  • Valencia-Chan LS, García-Cámara I, Torres-Tapia LW, Moo-Puc RE, Peraza-Sánchez SR. 2017. Lupane-type triterpenes of Phoradendron vernicosum. J Nat Prod. 80(11):3038–3042.
  • Wang K-W. 2007. A new fatty acid ester of triterpenoid from Celastrus rosthornianus with anti-tumor activitives. Nat Prod Res. 21(7):669–674.
  • Wang Y, Chen RY, Yu DQ. 2013. Advances of chemical constituents and pharmacological activities of Schefflera genus. Zhongguo Zhong Yao Za Zhi. 38(14):2254–2263.
  • Wang Y, Zhang CL, Liu YF, Liang D, Luo H, Hao ZY, Chen RY, Yu DQ. 2014. Hepatoprotective triterpenoids and saponins of Schefflera kwangsiensis. Planta Med. 80(2-3):215–222.
  • Wang Y, Zhang LL, Zhang CL, Liu YF, Liang D, Luo H, Hao ZY, Chen RY, Yu DQ. 2015a. Esters of new oleanane type triterpenoid saponins from Schefflera kwangsiensis. Phytochem Lett. 11:95–101.
  • Wang C-Q, Li M-M, Zhang W, Wang L, Fan C-L, Feng R-B, Zhang X-Q, Ye W-C. 2015b. Four new triterpenes and triterpene glycosides from the leaves of Ilex latifolia and their inhibitory activity on triglyceride accumulation. Fitoterapia. 106:141–146.
  • Wang Y, Chun-Lei Z, Yan-Fei L, Dong L, Guo-Ru S, Xin W, Ruo-Yun C, Feng-Zhong W, De-Quan Y. 2019. Sesquiterpenes and nor-sesquiterpenes from Schefflera leucantha R.Vig. (Araliaceae). Biochem Syst Ecol. 83:7–9.
  • Wang Y, Liang D, Khan FA, Zhang CL, Liu YF, Chen RY, Choudhary IM, Yu DQ. 2020. Chemical constituents from Schefflera leucantha R. Vig. (Araliaceae). Biochem Syst and Ecol. 91:104076.
  • Wright HE, McCullough J, Alonso LE, Diallo MS. 2006. Une évaluation biologique rapide de trois forêts Classées du Sud-Est de la Guinée. Washington D.C: Bulletin RAP d’Evaluation Rapide 40. Conservation International, p. 249.
  • Wu C, Ying-Hui D, Man-Mei L, Wei T, Xia W, Guo-Cai W, Wen-Cai Y, Guang-Xiong Z, Yao-Lan L. 2013. Triterpenoid saponins from the stem barks of Schefflera heptaphylla. Planta Med. 79(14):1348–1355.
  • Zhang Y-M, Zhong G-Y, Zhang P-Z. 2019. Chemical constituents isolated from Clematis akebioides (Maximowicz) Veitch. Biochem Syst Ecol. 83:13–16.
  • Zhang Y, Zhou W-Y, Song X-Y, Yao G-D, Song S-J. 2020. Neuroprotective terpenoids from the leaves of Viburnum odoratissimum. Nat Prod Res. 20:1352-1359.

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.