Kalanchoe gastonis-bonnieri R. Hamet & H. Perrier (Crassulaceae) is a succulent species empirically used as a vaginal contraceptive as well as to heal genitourinary infections. A phytochemical study of leaf juice prepared from specimens collected in the flowering season resulted in the isolation of the new flavonoid quercetin 3-O-α-rhamnopyranoside-7-O-β-D-glucopyranosyl-(1→3)-α-L-rhamnopyranoside, as well as the already known 6-C-β-D-glucopyranosyl-8-C-β-D-glucopyranosylapigenin (vicenin-2). The NMR spectra of this flavonoid at room temperature exhibited broad and duplicated signals, suggesting the existence of rotameric conformers, which was confirmed by coalescence of the signals at 40°C. The structural elucidation was based on 1H and 13C NMR (HMQC and HMBC) analyses and MS data. This is the first report of a C-glycosyl flavonoid (vicenin-2) in the Crassulaceae family. Additionally, this is the first study in which atropoisomerism has been shown for vicenin-2.
CostaSSMuzitanoMFCamargoLMM. (2008) Therapeutic potential of Kalanchoe species: Flavonoids and other secondary metabolites. Natural Products Communications, 12, 2151–2164.
3.
El AbdellaouiS, DestandauE, ToribioA. (2010) Bioactive molecules in Kalanchoe pinnata leaves: extraction, purification, and identification. Analytical and Bioanalytical Chemistry, 398, 1329–1338.
4.
CoutinhoMAMuzitanoMFCruzEAElfakirC, LafosseM, RenimelI, AndréP, CancellieriP, LandemarreL. (2012) Flowers from Kalanchoe pinnata are a rich source of T cell-suppressive flavonoids. Natural Product Communications, 7, 175–178.
5.
MuzitanoMFBergonziMCDe MeloGOLageCLBiliaARVincieriFFRossi-BergmannB, CostaSS. (2011) Influence of cultivation conditions, season of collection and extraction method on the content of antileishmanial flavonoids from Kalanchoe pinnata. Journal of Ethnopharmacology, 133, 132–137.
FürerK, RaithM, BrenneisenR., MennetM, Simões-WüstAPvon MandachU, HamburgerM, PotteratO. (2013) Two new flavonol glycosides and a metabolite profile of Bryophyllum pinnatum, a phytotherapeutic used in obstetrics and gynaecology. Planta Medica, 79, 1565–1571.
8.
VandebroekI, BalickMJOsoskiA, KronenbergF, YukesJ, WadeC, JiménezF, PegueroB, Castillo. (2010) The importance of botellas and other plant mixtures in Dominican traditional medicine. Journal of Ethnopharmacology, 128, 20–41.
9.
Miranda-Beltrán M de laL, Puebla-PérezAMGuzmán-SánchezA, RuizLH. (2003) Male rat infertility induction/spermatozoa and epididymal plasma abnormalities after oral administration of Kalanchoe gastonis-bonnieri natural juice. Phytotherapy Research, 17, 315–319.
10.
GachetMSLecaroJSKaiserM, BrunR, NavarreteH, MuñozRABauerR, SchühlyW. (2010) Assessment of anti-protozoal activity of plants traditionally used in Ecuador in the treatment of leishmaniasis. Journal of Ethnopharmacology, 2, 184–197.
11.
DasguptaS, ParmarA, PatelH. (2013) Preliminary phytochemical studies of Kalanchoe gastonis-bonnieri. International Journal of Pharma and Bio Sciences, 4, 550–557.
12.
XieC, VeitchNCHoughtonPJSimmondsMS. (2003) Flavone C-glycosides from Viola yedoensis MAKINO. Chemical and Pharmadeutical Bulletin, 51, 1204–1207.
13.
RayyanS, FossenT, NatelandHSAndersenOM. (2005) Isolation and identification of flavonoids, including flavone rotamers, from the herbal drug ‘crataegi folium cum flore’ (Hawthorn). Phytochemical Analysis, 16, 334–341.
14.
LiuKCS, YangSLRobertsMFPhillipsonJD. (1989) Eupafolin rhamnosides from Kalanchoe gracilis. Journal of Natural Products, 52, 970–974.
15.
StevensJFHartH, ElemaETBolckA. (1996) Flavonoid variation in Eurasian Sedum and Sempervivum. Phytochemistry, 41, 503–512.
16.
SeikelMKChowJ, FeldmanL. (1966) The glycoflavonoid pigments of Vitex lucens wood. Phytochemistry, 5, 439–455.
17.
MarrassiniC, DavicinoR, AcevedoC, AnesiniC, GorzalczanyS, FerraroG. (2011) Vicenin-2, a potential anti-inflammatory constituent of Urtica circularis. Journal of Natural Products, 74, 1503–1507.
18.
VerspohlEJFujiiH, HommaK, Buchwald-WernerS. (2013) Testing of Perilla frutescens extract and vicenin-2 for their antispasmodic effect. Phytomedicine, 20, 427–341.
19.
MarkhamKRChariVM. (1982) Carbon-13 NMR spectroscopy of flavonoids, In The flavonoids: Advances in Research. HarborneJBMabryTJ. (Eds). Chapman and Hall, Florida, 19–134.
YoshikawaM, ShimadaH, ShimodaH, MurakamiN, YamaharaJ, MatsudaH. (1996) Bioactive constituents of Chinese natural medicines. II. Rhodiolae radix. (1). Chemical structures and antiallergic activity of rhodiocyanosides A and B from the underground part of Rhodiola quadrifida (Pall.) Fisch. et Mey. (Crassulaceae). Chemical and Pharmaceutical Bulletin, 44, 2086–2091.
22.
ZhangQ, ChenLJYeHYGaoL, HouW, TangM, YangG, ZhongZ, YuanY, PengA. (2007) Isolation and purification of ginkgo flavonol glycosides from Ginkgo biloba leaves by high-speed counter-current chromatography. Journal of Separation Science, 30, 2153–2159.
23.
LeistnerE, DrewkeC. (2010) Ginkgo biloba and ginkgotoxin. Journal of Natural Products, 73, 86–92.