Three steroidal glycosides were isolated from the bark of Dracaena fragrans (L.) Ker Gawl. « Yellow Coast », and a fourth from the roots and the leaves. Their structures were characterized on the basis of extensive 1D and 2D NMR experiments and mass spectrometry, and by comparison with NMR data of the literature. These saponins have the spirostane-type skeleton and are reported in this species for the first time.
ZhengQ-A, ZhangY-J, LiH-Z, YangC-R. (2004) Steroidal saponins from fresh stem of Dracaena cochinchinensis. Steroids, 69, 111–119
2.
XuM, ZhangY-J, LiX-C, JacobMR, YangC-R. (2010) Steroidal saponins from fresh stems of Dracaena angustifolia. Journal of Natural Products, 73, 1524–1528
3.
MimakiY, KurodaM, IdeA, KameyamaA, YokosukaA, SashidaY. (1999) Steroidal saponins from the aerial parts of Dracaena draco and their cytostatic activity on HL-60 cells. Phytochemistry, 50, 805–813
4.
YokosukaA, MimakiY, SashidaY. (2000) Steroidal saponins from Dracaena surculosa. Journal of Natural Products, 63, 1239–1243
5.
KouganGB, MiyamotoT, TanakaC, PaululatT, MirjoletJ-F, DuchampO, SondengamBL, Lacaille-DuboisM-A. (2010) Steroidal saponins from two species of Dracaena. Journal of Natural Products, 73, 1266–1270
6.
HuangH-C, LinM-K, HwangS-Y, HwangT-L, KuoY-H, ChangC-I, OuC-Y, KuoY-H. (2013) Two anti-inflammatory steroidal saponins from Dracaena angustifolia Roxb. Molecules, 18, 8752–8763
7.
MoharramFA, El-ShenawySM. (2007) Antinociceptive and anti-inflammatory steroidal saponins from Dracaena ombet. Planta Medica, 73, 1101–1106.
8.
ChaseM, RevealJL, FayMF. (2009) A subfamilial classification for the expanded asparagalean families Amaryllidaceae, Asparagaceae and Xanthorrhoeaceae. Botanical Journal of the Linnean Society, 161, 132–136.
MimakiY, KurodaM, KameyamaA, YokosukaA, SashidaY. (1998) New steroidal constituents of the underground parts of Ruscus aculeatus and their cytostatic activity on HL-60 cells. Chemical and Pharmaceutical Bulletin, 46, 298–303.
12.
MimakiY, KurodaM, TakaashiY, SashidaY. (1998) Steroidal saponins from the stems of Dracaena concinna. Phytochemistry, 47, 1351–1356.
13.
LinT, HuangH-L, LiuR-H, ShuJ-C, RenG, ShaoF, LiuL-S. (2012) Steroidal saponins and pregnane glycosides from Smilax microphylla. Magnetic Resonance in Chemistry, 50, 813–817
14.
WeiJ-H, ManS-L, GaoW-Y, ChaiX, ZhaoW-S, WangY, JingS-S. (2012) Steroidal saponins from the rhizomes of Trillium tschonoskii Maxim. Biochemical Systematics and Ecology, 44, 112–116.
15.
MimakiY, KurodaM, KameyamaA, YokosukaA, SashidaY. (1998) Steroidal saponins from the underground parts of Ruscus aculeatus and their cytostatic activity on HL-60 cells. Phytochemistry, 48, 485–493
16.
MimakiY, TakaashiY, KurodaM, SashidaY, NikaidoT. (1996) Steroidal saponins from Nolina recurvata stems and their inhibitory activity on cyclic AMP phosphodiesterase. Phytochemistry, 42, 1609–1615.
17.
LanS, YiF, ShuangL, ChenJieW, ZhengX-W. (2013) Chemical constituents from the fibrous root of Ophiopogon japonicus, and their effect on tube formation in human myocardial microvascular endothelial cells. Fitoterapia, 85, 57–63
18.
Simmons-BoyceJL, TintoWF. (2007) Steroidal saponins and sapogenins from the Agavaceae family. Natural Product Communications, 2, 99–114
19.
WangKW, ZhangH, ShenL-Q, WangW. (2011) Novel steroidal saponins from Liriope graminifolia (Linn.) Baker with anti-tumor activities. Carbohydrate Research, 346, 253–258.
20.
KurodaM, MimakiY, OriK, SakagamiH, SashidaY. (2004) Steroidal glycosides from the bulbs of Ornithogalum thyrsoides. Journal of Natural Products, 67, 1690–1696.