References
- Amusan, O.O.G., Musonthi, J.D., and Makhubu, L.P., Molluscicidal Activity of Spathodea campanulata, Andrachne ovalis, Phytolacca dodecandera, and Hypoxis rooperi. Fitoterapia LXVI 2, 113-116 (1995)
- Balde, A.M., Claeys, M., Pieters, L.A., Wray, V., and Vlietinck, A.J., Ferulic acid esters from stem bark of Pavetta owariensis, Phytochem. 30(3), 1024-26 (1991) https://doi.org/10.1016/0031-9422(91)85302-G
- Bircher, W.H., Gardens of Hesperides. The Anglo Egyptian Bookshop, Cairo, 1960
- Chang, R.S. and Yeung, H.W., Inhibition of growth of human immunodeficiency Virus in vitro by crude extracts of Chinese medicinal herbs, Antiviral Res., 9, 163-176 (1988) https://doi.org/10.1016/0166-3542(88)90001-0
- Chen, J.H. and Ho, C.T., Antioxidant activity of Caffiec acid and its related hydroxycinnamic acid compounds, J. Agric. Food Chem. 45, 2374-2378 (1997) https://doi.org/10.1021/jf970055t
- Drewes, S. E., Chroman and related compounds, Vol. 2, Verlag Chemie, Printed in Germany 1974
- El-Said, M.E. and Amr, M.M., Oils, Fats, Waxes, and surfactants, Anglo Egyptian Book Shop; Cairo, Egypt 1965, p. 55
- Harborne, J.B., Phytochemical Methods, (2nd) Ed. Chapmann and Hall, London, New York 1984, p. 156-157
- Irvine, F.R., Woody Plants of Ghana. Oxford University Press, London 1961, p. 739-740
- Lasure, A., Van Poel, B., Declerk, L.S., Bridts, C.H., Stevens, W.J., Rwangabo, P.C., Pieters, and Vlietinch, A.J. Screening of Rwandese plant extracts for their influence on lymphocytes proliferation, Phytomed., 4, 303-307 (1995)
- Locker, C.P., Witvrouw, M., De Bethune, M.P., Burch, M.T. Mower, H.F., Davis, H., Lasure, A., Pauwels, R., DeClercq, E., and Vieltinch, A.J. Antiviral activity of Hawaiian plants against human immunodeficiency virus type-1-(HIV-1), Phytomed., 2(3), 259-264 (1996) https://doi.org/10.1016/S0944-7113(96)80052-3
- Mabry, T.J., Markham, K.R., and Thomas, M.B., The systematic identification of flavonoids, Springer-Verlag, Berlin-Heidelberg New York. 1970
- Makinde, J.M., Adesogan, E.K., and Amusan, O.O.G., Antimalarial active principles of spathodea campanulata stem bark, Phytother. Res., 10, 692-693 (1996) https://doi.org/10.1002/(SICI)1099-1573(199612)10:8<692::AID-PTR928>3.0.CO;2-O
- Makinde, J.M., Adesogan, E.K., and Amusan, O.O.G., The Antimalarial activity of chromatographic fractions of Spathodea campanulata stem bark extract against plasmodium berghei berghei in mice, Phytother. Res. 4(2), 53-56 (1990) https://doi.org/10.1002/ptr.2650040204
- Makinde, J.M., Adesogan, E.K., and Amusan, O.O.G., The Antimalarial activity of Spathodea campanulata stem bark extract on Plasmodium berghei in mice, Planta med. 54, 122-125 (1988) https://doi.org/10.1055/s-2006-962367
- Makinde, J.M., Adesogan, E.K., and Amusan, O.O.G., The Schizontocidal activity of Spathodea campanulata leaf extract on Plasmodium berghei in mice, Phytother. Res. 1(2), 65-68 (1987) https://doi.org/10.1002/ptr.2650010205
- Markham, K.R., Techniques of flavonoid identification. Academic press, A subsidiary of Harcourt Brace, Jouvanovich publishers 1982
- Ngouela, S.B., Nyasse, E., Tsamo, B.L., and Sondengam Connolly, J.D., Spathodic acid: a triterpene acid from the stem bark of Spathodea campanulata, Phytochem. 29(12), 3959-3961 (1990) https://doi.org/10.1016/0031-9422(90)85376-Q
- Ngouela, S., Tsamo, E., and Sondengam, B.L., Spathodol, a new polyhydroxysterol from the leaves of Spathodea campanulata; J. Nat. Prod. 54(3), 873-876 (1991) https://doi.org/10.1021/np50075a023
- Ngouela, S., Tsamo, E., and Sondengam, B.L., Extractives from bignoniaceae: constituents of stem bark of Spathodea campanulata, Planta med., 54, 476-477 (1988) https://doi.org/10.1055/s-2006-962516
- Niyonizima, G., Laekman, G.M., Scharpe, S., Mets, T., and Vlietinck. A.J., Hypoglycemic activity of Spathodea campanulata stem bark decoction on streptozotocin-diabetic mice, Planta med., 56, 682 (1990)
- Niyonizima, G., Laekman, G.M., Scharpe, S., Mets, T., and Vlietinck. A.J., Hypoglycemic activity of Spathodea campanulata stem bark decoction on streptozotocin-diabetic mice, Phytother. Res. 7, 64-67 (1993) https://doi.org/10.1002/ptr.2650070115
- Niyonizima, G., Laekman, G.M., Witvrouw, M., Van Poel, B., Pieters, L., Paper, D., DeClercq, E., Franz, G., and Vlietinck, A.J., Hypoglycemic, Anticomplement, and Anti-HIV activities of Spathodea capanulata stem bark, Phytomed., 6(1), 45-49 (2000)
- Niyonzima, G., Pieters, L., Balde, A.M., Claeys, M., Laekeman, G.M., and Vlietinck, A.J., Isolation of 6-O-caffeolcatalpol and some other compounds from Spathodea campanulata. Planta medica, 57, suppl. 2, A85-A86 (1991) https://doi.org/10.1055/s-2006-960029
- Scogin, R., Anthocyanins of the Bignoniaceae, Biochem. Syst. Ecol. 8, 273-276 (1980) https://doi.org/10.1016/0305-1978(80)90058-7
- Subramanian, S.S., Nagarian, S., and Sulochanc, N., Caffiec acid from the leaves of Spathodea campanulata, Curr. Sc., 42(11), 403 (1973)
- Vlietinch, A.J., De Bruyne, T., and Vanden Berghe, D., Plant substances as antiviral agents, Current Organic Chem. 1, 307-344 (1997)
- Vlietinch, A.J., De Bruyne, T., Apers, S., and Pieters, L., Plant derived compounds for chemotherapy of human immunodefieciency virus (HIV) infection, Planta Med. 64, 97-107 (1998) https://doi.org/10.1055/s-2006-957384
- Voirin, B., UV Spectral Differentiation Of 5-hydroxy-and 5-hydroxy-3-methoxyflavones with mono-(4';), DI-(3',4') or Tri-(3',4',5')-substituted Brings, Phytochem, 22(10), 2107-45 (1983) https://doi.org/10.1016/S0031-9422(00)80133-8