Sugiyama M, Kikuchi M. Studies on the constituents of Osmanthus species. Ⅶ. Structures of lignan glycosides from the leaves of Osmanthus asiaticus Nakai [J]. Chem Pharm Bull, 1991, 39(2):483.
[6]
Deyama T, Ikawa T, Nishibe S. The constituents of Eucommia ulmoides Oliv.Ⅱ. Isolation and structures of three new lignan glycosides [J]. Chem Pharm Bull, 1985, 33(9):3651.
[7]
Kitagawa S, Nishibe S, Benecke R, et al. Phenolic compounds from Forsythia leaves II [J]. Chem Pharm Bull, 1988, 36(9):3667.
[8]
Shoeb M, Jaspars M, MacManus S M, et al. Epoxylignans from the seeds of Centaurea cyanus(Asteraceae) [J]. Biochem Syst Ecol, 2004, 32(12):1201.
[9]
Sugiyama M, Kikuchi M. Characterization of lariciresinol glucosides from Osmanthus asiaticus [J]. Heterocycles, 1993, 36(1):117.
[10]
Fan C Q, Zhu X Z, Yue J M, et al. Lignans from Saussurea conica and their NO production suppressing activity [J]. Planta Med, 2006, 72(7):590.
[11]
Saracoglu I, Varel M, Calis I, et al. Neolignan, flavonoid, phenylethanoid and iridoid glycosides from Phlomis integrifolia [J]. Turk J Chem, 2003, 27(6):739.
[12]
Yoshizawa F, Deyama T, Takizawa N, et al. The constituents of Cistanche tubulosa(Schrenk) hook. f. Ⅱ. Isolation and structures of a new phenylethanoid glycoside and a new neolignan glycoside [J]. Chem Pharm Bull, 1990, 38(7):1927.
Nan Z D, Zeng K W, Shi S P, et al. Phenylethanoid glycosides with anti-inflammatory activities from the stems of Cistanche deserticola cultured in Tarim desert [J]. Fitoterapia, 2013, 89:167.