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Natural Product Research
Formerly Natural Product Letters
Volume 34, 2020 - Issue 24
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Research Articles

Bisabolane sesquiterpenes from Clausena sanki with their potential anti-inflammatory activities

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Pages 3499-3505 | Received 18 Aug 2018, Accepted 29 Jan 2019, Published online: 31 Mar 2019

References

  • Abecassis K, Gibson SE. 2010. Synthesis of (+)- and (–)-gossonorol and cyclisation to boivinianin B. Eur J Org Chem. 2010(15):2938–2944.
  • Arbab IA, Abdul AB, Aspollah M, Abdelwahab SI, Ibrahim MY, Ali Z. 2012. A review of traditional uses, phytochemical and pharmacological aspects of selected members of Clausena genus (Rutaceae). J Med Plants Res. 6:5107–5118.
  • Fujiwara M, Yagi N, Miyazawa M. 2010. Acetylcholinesterase inhibitory activity of volatile oil from Peltophorum dasyrachis Kurz ex Bakar (yellow batai) and bisabolane-type sesquiterpenoids. J Agric Food Chem. 58(5):2824–2829.
  • He HP, Shen YM, Hong X, Zhao YB, Zhou J, Hao XJ. 2002. Two new ring A-rearranged clerodane diterpenes, dunniana acids A and B, from Clausena dunniana. J Nat Prod. 65(3):392–394.
  • Jiang ZH, Chai L, Liu YP, Qiu HC, Wang TT, Feng XY, Wang YT, Huang ZH, Liu BM, Fu YH. 2017. Bioactive lignans from the stems of Mappianthus iodoides. Phytochem Lett. 22:194–198.
  • Kumar R, Saha A, Saha D. 2012. A new antifungal coumarin from Clausena excavata. Fitoterapia. 83(1):230–233.
  • Lakshmi V, Kumar R, Agarwal SK. 2005. Novel cyclic amide heterodimer lansamide-2 from Clausena lansium. Nat Prod Res. 19(4):355–358.
  • Li D, Xu Y, Shao CL, Yang RY, Zheng CJ, Chen YY, Fu XM, Qian PY, She ZG, Voogd NJ, Wang CY. 2012. Antibacterial bisabolane-type sesquiterpenoids from the sponge-derived fungus Aspergillus sp. Mar Drugs. 10(12):234–241.
  • Liu H, Li CJ, Yang JZ, Ning N, Si YK, Li L, Chen NH, Zhao Q, Zhang DM. 2012. Carbazole alkaloids from the stems of Clausena lansium. J Nat Prod. 75(4):677–682.
  • Liu QL, Chen AH, Tang JY, Ma YL, Jiang ZH, Liu YP, Chen GY, Fu YH, Xu W. 2017. A new indole alkaloid with anti-inflammatory activity from Nauclea officinalis. Nat Prod Res. 31(18):2107–2112.
  • Liu YP, Hu S, Wen Q, Ma YL, Jiang ZH, Tang JY, Fu YH. 2018. Novel γ-lactone derivatives from Trigonostemon heterophyllus with their potential antiproliferative activities. Bioorg Chem. 79:107–110.
  • Liu YP, Tang JY, Hua Y, Lai L, Luo XL, Zhang ZJ, Yin WQ, Chen GY, Fu YH. 2018. Bioactive polyoxygenated seco-cyclohexenes from Artabotrys hongkongensis. Bioorg Chem. 76:386–391.
  • Liu YP, Zhao WH, Feng XY, Zhang ZJ, Zong K, Sun ZG, Zheng YT, Fu YH. 2018. Novel tetrahydrofuran derivatives from Trigonostemon howii with their potential anti-HIV-1 activities. Bioorg Chem. 79:111–114.
  • Lu J, Wang HY, Huang J, Li GY, Wang QH, Xu W, Xu W, Chen Y, Zhang K, Wang JH. 2014. Sesquiterpene acids from Shellac and their bioactivities evaluation. Fitoterapia. 97:64–70.
  • Ma YL, Liu YP, Zhang C, Zhao WH, Shi S, He DN, Zhang P, Liu XH, Han TT, Fu YH. 2018. Carbazole alkaloids from Clausena hainanensis with their potential antiproliferative activities. Bioorg Chem. 76:359–364.
  • Menelaou MA, Macias FA, Weidenhamer JD, Williamson GB, Fischer NH. 1995. Sesquiterpenes from Chrysoma pauciflosculosa. Spectrosc Lett. 28(7):1061–1074.
  • Mülhaupt T, Kaspar H, Otto S, Reichert M, Bringmann G, Lindel T. 2005. Isolation, structural elucidation, and synthesis of curcutetraol. Eur J Org Chem. 2005(2):334–341.
  • Ochi T, Shibata H, Higuti T, Kodama KH, Kusumi T, Takaishi Y. 2005. Anti-Helicobacter pylori compounds from Santalum album. J Nat Prod. 68(6):819–824.
  • Raj K, Sharma M, Misra N. 2009. Clausmarin-C: a novel terpenoid coumarin from Clausena pentaphylla. Nat Prod Res. 23(18):1671–1676.
  • Seo C, Ahn EK, Kang JS, Lee JH, Oh JS, Hong SS. 2017. Excavasides A and B, two new flavonoid glycosides from Clausena excavata Burm. f. (Rutaceae). Phytochem Lett. 20:93–97.
  • Serra S, Cominetti AA. 2013. A divergent and stereoselective approach to phenolic 1, 7-dihydroxy-bisabolane sesquiterpenes: asymmetric total synthesis of (+)-curcutetraol, (+)-sydonol, (+)-sydonic acid, and (+)-7-O-methylsydonic acid. Tetrahedron: Asymmetry. 24(18):1110–1116.
  • Shen DY, Chan YY, Hwang TL, Juang SH, Huang SC, Kuo PC, Thang TD, Lee EJ, Damu AG, Wu TS. 2014. Constituents of the roots of Clausena lansium and their potential anti-inflammatory activity. J Nat Prod. 77(5):1215–1223.
  • Sun J, Shi DY, Ma M, Li S, Wang SJ, Han LJ, Yang YC, Fan X, Shi JG, He L. 2005. Sesquiterpenes from the red alga Laurencia tristicha. J Nat Prod. 68(6):915–919.
  • Takamatsu S, Hodges TW, Rajbhandari I, Gerwick WH, Hamann MT, Nagle DG. 2003. Marine natural products as novel antioxidant prototypes. J Nat Prod. 66(5):605–608.
  • Wang YS, Li BT, Liu SX, Wen ZQ, Yang JH, Zhang HB, Hao XJ. 2017. Anisucoumaramide, a bioactive coumarin from Clausena anisum-olens. J Nat Prod. 80(4):798–804.
  • Xia HM, Li CJ, Yang JZ, Ma J, Chen XG, Zhang D, Li L, Zhang DM. 2014. A, D-seco-limonoids from the stems of Clausena emarginata. J Nat Prod. 77(4):784–791.
  • Yang SP, Zhang CR, Chen HD, Liao SG, Yue JM. 2007. Sesquiterpenoids from Chloranthus spicatus. Chin J Chem. 25(12):1892–1895.

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