References
- Beutler, J. A., Hamel, E., Vlietinch, A. J., Haemers, A., Rajan, P., Roitman, J. N., Cardellina II, J. H., and Boyd, M. R., Structure-activity requirements for flavone cytotoxicity and binding to tubulin. J. Med. Chem., 41, 2333-2338 (1998) https://doi.org/10.1021/jm970842h
- Bouktaib, M., Lebrun, S., Atmani, A., and Rolando, C., Hemisynthesis of all the O-monomethylated analogues of quercetin including the major metabolites, through selective protection of phenolic functions. Tetrahedron, 58, 10001- 10009 (2002) https://doi.org/10.1016/S0040-4020(02)01306-6
- Braca, A., Sortino, C., Politi, M., Norelli, I., and Mendez,J., Antioxidant activity of flavonoids from Licania licaniaeflora. J. Ethnopharmacology, 79, 379-381 (2002) https://doi.org/10.1016/S0378-8741(01)00413-5
- Dong, H., Gou, Y-L., Cao, S-G., Chen, S-X., Chen, K-Y., Goh, SH., and Kini, R. M., Eicosenones and methylated flavonols from Amomum koenigii. Phytochemistry, 50, 899-902 (1999) https://doi.org/10.1016/S0031-9422(98)00622-0
- Hanai, K., Kuwae, A., Takai, T., Senca, H., and Kunimoto, K-K., A comparative vibrational and NMR study of cis-cinnamic acid polymorphs and trans-cinnamic acid. Spectrochim. Acta Part A, 57, 513-519 (2001) https://doi.org/10.1016/S1386-1425(00)00401-7
- Higa, M., Miyagi, Y., Togi, S., and Hokama, K., Flavonoid constituents of Melicope triphylla Merr. Yakugaku Zasshi, 107, 954-958 (1987) https://doi.org/10.1248/yakushi1947.107.12_954
- Itokawa, H., Suto, K., and Takeya, K., Studies on a novel pcoumaroyl glucoside of apigenin and on other flavonoids isolated from Patchouli (Labiatae). Chem. Pharm. Bull., 29, 254-256 (1981) https://doi.org/10.1248/cpb.29.254
- Likhitwitayawuid, K., Wirasathien, L., Jongboonprasert, V., Aimi, N., Takayama, H., and Kitajima, M., Antimalarial alkaloids from Goniothalamus tenuifolius. Pharm. Pharmacol. Lett., 7, 99-102 (1997)
- Markham, K. R., Techniques of flavonoids identification. London: Academic Press, pp. 38-39 (1982)
- Ohashi, H., Kyogaku, T., Isikawa, T., Kawase, S-I., and Kawai, S., Antioxidative activity of tree phenolic constituents I: Radical-capturing reaction of flavon-3-ols with radical initiator. J. Wood. Sci., 45, 53-63 (1999) https://doi.org/10.1007/BF00579524
- Parmar, V. S., Bisht, K. S., Jain, R., Singh, S., Sharma, S. K., Gupta, S., Synthesis, antimicrobial and antiviral activities of novel polyphenolic compounds. Indian J. Chem., 35B, 220- 232 (1996)
- Parmar, V. S., Jain, R., Sharma, S.K., Vardhan, A., Jha, A., Taneja, P., Singh, S., Vyncke, B. M., Bracke, M. E., and Mareel, M. M., Anti-invasive activity of 3,7-dimethoxyflavone in vitro. J. Pharm. Sci., 83, 1217-1221 (1994) https://doi.org/10.1002/jps.2600830906
- Takao, T., Kitatani, F., Watanabe, N., Yaki, A., and Sakata, K., A simple screening method for antioxidants and isolation of several antioxidants produced by marine bacteria from fish and shellfish. Biosci. Biotech. Biochem., 58, 1780-1783 (1994) https://doi.org/10.1271/bbb.58.1780
- Urbatsch, L. E., Bacon, J. D., and Mabry, T. J., Flavonols methyl ethers from Chrysothamnus viscidilorus. Phytochemistry, 14, 2279-2282 (1975) https://doi.org/10.1016/S0031-9422(00)91116-6
- Urbatsch, L. E., Mabry, T. J., Miyakado, M., Ohno, N., and Yoshioka, H., Flavonol methyl ethers from Ericameria diffusa. Phytochemistry, 15, 440-441 (1976) https://doi.org/10.1016/S0031-9422(00)86853-3
- Wang, Y., Hamburger, M., Gueho, J., and Hostettmann, K., Antimicrobial flavonoids from Psiadia trinervia and their methylated and acetylated derivatives. Phytochemistry, 28, 2323-2327 (1989) https://doi.org/10.1016/S0031-9422(00)97976-7