New Benzoyl Glucosides and Cytotoxic Pterosin Sesquiterpenes from Pteris ensiformis Burm.
Abstract
:Introduction
Results and Discussion
Structure Determinations of Isolated Compounds
Position | 1H-NMR | 13C-NMR | ||
---|---|---|---|---|
2 | 3 | 2 | 3 | |
1 | 131.0 | 131.0 | ||
2 | 8.09 (1H, dd, 8.3, 1.4) | 8.11 (1H, dd, 8.3, 1.4) | 131.0 | 131.0 |
3 | 7.50 (1H, td, 8.3, 1.4) | 7.50 (1H, td, 8.3, 1.4) | 129.6 | 129.5 |
4 | 7.63 (1H, tt, 8.3, 1.4) | 7.62 (1H, tt, 8.3, 1.4) | 134.6 | 134.4 |
5 | 7.50 (1H, td, 8.3, 1.4) | 7.50 (1H, td, 8.3, 1.4) | 129.6 | 129.5 |
6 | 8.09 (1H, dd, 8.3, 1.4) | 8.11 (1H, dd, 8.3, 1.4) | 131.0 | 131.0 |
7 | 166.3 | 166.4 | ||
7-O-β-glucoside | ||||
1′ | 5.84 (1H, d, 8.0) | 5.86 (1H, d, 8.0) | 94.8 | 94.7 |
2′ | 3.69 (1H, m) | 3.73 (1H, m) | 83.7 | 83.4 |
3′ | 3.68 (1H, m) | 3.72 (1H, m) | 77.5 | 77.6 |
4′ | 3.46 (1H, m) | 3.49 (1H, m) | 70.6 | 70.7 |
5′ | 3.45 (1H, m) | 3.48 (1H, m) | 78.8 | 78.9 |
6′a | 3.86 (1H, dd, 12.3, 2.1) | 3.87 (1H, dd, 12.3, 2.1) | 62.2 | 62.2 |
6′b | 3.71 (1H, dd, 12.3, 8.4) | 3.73 (1H, dd, 12.3, 8.4) | ||
2′-O-β-xylosyl | ||||
1″ | 4.47 (1H, d, 7.6) | 4.63 (1H, d, 7.6) | 106.8 | 106.5 |
2″ | 3.15 (1H, dd, 8.8, 7.6) | 3.31 (1H, m) | 75.7 | 75.8 |
3″ | 3.43 (1H, t, 8.8) | 3.70 (1H, m) | 77.5 | 74.8 |
4″ | 3.30 (1H, m) | 4.77 (1H, ddd,11.2, 9.6, 5.2) | 70.9 | 73.4 |
5″ax. | 2.29 (1H, dd, 11.2, 9.6) | 3.16 (1H, dd, 11.2, 9.6) | 67.1 | 63.7 |
5″equ. | 3.39 (1H, dd, 11.2, 4.8) | 3.68 (1H, dd, 11.2, 4.8) | ||
5″-O-β-benzoyl | ||||
1‴ | 130.9 | |||
2‴ | 8.00 (1H, dd, 8.3, 1.4) | 130.6 | ||
3‴ | 7.46 (1H, td, 8.3, 1.4) | 129.6 | ||
4‴ | 7.60 (1H, tt, 8.3, 1.4) | 134.7 | ||
5‴ | 7.46 (1H, td, 8.3, 1.4) | 129.6 | ||
6‴ | 8.00 (1H, dd, 8.3,1.4) | 130.6 | ||
7‴ | 167.3 | |||
Key HMBC | H-1′/C-7, H-1″/C-2′ | H-1′/C-7, H-1″/C-2′, H-4″/C-7‴ |
Cytotoxic activity of Isolated Compounds
Experimental
General
Plant Material
Extraction and Isolation
Cytotoxicity Assays
Acid hydrolysis of compound 1
Acknowledgements
References
- Wu, M.J.; Wang, L.; Weng, C.Y.; Lian, T.W. Immunomodulatory mechanism of the aqueous extract of sword brake fern (Pteris ensiformis Burm.). J. Ethnopharmacol. 2005, 98, 73–81. [Google Scholar] [CrossRef]
- Gong, X.L.; Chen, Z.H.; Liang, N.C. Advances in study on chemical constituents and pharmacological activities of plants of genus Pteris. Zhongguo Zhong Yao Za Zhi 2007, 32, 1382–1387. [Google Scholar]
- Castillo, U.F.; Ojika, M.; Alonso-Amelot, M.; Sakagamia, Y.; Ptaquiloside, Z. a new toxic unstable sesquiterpene glucoside from the neotropical bracken fern Pteridium Aquilinum Var. Caudatum. Bioorg. Med. Chem. 1998, 6, 2229–2233. [Google Scholar] [CrossRef]
- Jesudass, L.L.; Manickam, V.S.; Gopalakrishnan, S. Polyphenolic glycosides of Pteris confusa T.G. walker of kothayar hills of the western ghats of south India. Res. J. Chem. Environ. 2000, 4, 77–78. [Google Scholar]
- Salatino, M.L.; Prado, F. Flavonoid glycosides of Pteridaceae from Brazil. J. Bio. System. Eco. 1998, 26, 761–769. [Google Scholar] [CrossRef]
- Tanaka, N.; Murakami, T.; Saiki, Y.; Chen, C.M.; Gomez, L.D. Chemical and chemotaxonomical studies of the Pteris family and related families (Pteridaceae). XXII. Chemical studies of Pteris grandifolia L. Chem. Pharm. Bull. 1978, 26, 3580–3582. [Google Scholar] [CrossRef]
- Woerdenbag, H.J.; Lutke, L.R.; Bos, R.; Stevens, J.F. Isolation of two cytotoxic diterpenes from the fern Pteris multifida. Zeitschrift Naturforsch C: Biosci. 1996, 51, 635–638. [Google Scholar]
- Saito, K.; Nagao, T.; Takatsuki, S.; Koyama, K.; Natori, S. The sesquiterpenoid carcinogen of bracken fern, and some analogs, from the Pteridaceae. Phytochemistry 1990, 29, 1475–1479. [Google Scholar] [CrossRef]
- Murakami, T.; Satake, T.; Ninomiya, K.; Iida, H.; Yamauchi, K.; Tanaka, N.; Saiki, Y.; Chen, C.M. Chemical and chemotaxonomic studies of ferns. Part 25. Pterosin derivatives from the family Pteridaceae. Phytochemistry 1980, 19, 1743–1746. [Google Scholar] [CrossRef]
- Qin, B.; Zhu, D.-y. Review on the sesquiterpenoids from the spices of Pteridaceae. (II) - Chemical synthesis, transformation and biological activities of 1H-inden-1-one sesquiterpenoids. Huaxue Yanjiu 2004, 15, 66–70. [Google Scholar]
- McMorris, T.C.; Kelner, M.J.; Wang, W.; Estes, L.A.; Montoya, M. A.; Taetlel, R. Structure-activity relationships of illudins: analogs with improved therapeutic index. J. Org. Chem. 1992, 57, 6876–6883. [Google Scholar] [CrossRef]
- Chen, Y.H.; Chang, F.R.; Lin, Y.J.; Wang, L.; Chen, J.F.; Wu, Y.C.; Wu, M.J. Identification of phenolic antioxidants from Sword Brake fern (Pteris ensiformis Burm.). Food Chem. 2007, 105, 48–56. [Google Scholar] [CrossRef]
- Kuraishi, T.; Murakami, T.; Taniguchi, T.; Kobuki, Y.; Maehashi, H.; Tanaka, N.; Saiki, Y.; Chen, C. M. Chemical and chemotaxonomical studies of ferns. LIV. Pterosin derivatives of the genus Microlepia (Pteridaceae). Chem. Pharm. Bull. 1985, 33, 2305–2312. [Google Scholar] [CrossRef]
- Roen, A.; Padron, J.I.; Vazquez, J.T. Hydroxymethyl rotamer populations in disaccharides. J. Org. Chem. 2003, 68, 4615–4630. [Google Scholar] [CrossRef]
- Cabrita, L.; Andersen, Q.M. Anthocyanins in blue berries of vaccinium padifolium. Phytochemistry 1999, 52, 1693–1696. [Google Scholar] [CrossRef]
- Tanaka, N.; Yuhara, H.; Wada, H.; Murakami, T.; Cambie, R. C.; Braggins, J. E. Chemical and chemotaxonomical studies of ferns. Part 82. Phenolic constituents of Pteridium esculentum. Phytochemistry 1993, 32, 1037–1039. [Google Scholar] [CrossRef]
- Siegel, K.; Bruckner, R. First total synthesis of dihydroxerulin, a potent inhibitor of the biosynthesis of cholesterol. Chem. Eur. J. 1988, 11, 16–22. [Google Scholar]
- Tanaka, N.; Satake, T.; Takahashi, A.; Mochizuki, M.; Murakami, T.; Saiki, Y.; Yang, J.Z.; Chen, C.M. Chemical and chemotaxonomical studies of Ferns XXXIX. Chemical studies on the constituents of Pteris bella Tagawa and Pteridium aquilinum subsp wightianum (wall) Shich. Chem. Pharm. Bull. 1982, 30, 3640–3646. [Google Scholar] [CrossRef]
- Nahrstedt, A.; Rockenbach, J.; Wray, V. Phenylpropanoid glycosides, a furanone glucoside and geniposidic acid from members of the rubiaceae. Phytochemistry 1995, 39, 375–378. [Google Scholar] [CrossRef]
- Bergman, M.; Varshavsky, L.; Gottlieb, H.; Grossman, S. The antioxidant activity of aqueous spinach extract: chemical identification of active fractions. Phytochemistry 2001, 58, 143–52. [Google Scholar] [CrossRef]
- Norbæk, R.; Nielsen, K.; Kondo, T. Anthocyanins from flowers of Cichorium intybus. Phytochemistry 2002, 60, 357–359. [Google Scholar] [CrossRef]
- Cantillo-Ciau, Z.; Brito-Loeza, W.; Quijano, L. Triterpenoids from Tillandsia fasciculate. J. Nat. Prod. 2001, 64, 953–955. [Google Scholar] [CrossRef]
- Chang, Y.C.; Chang, F.R.; Wu, Y.C. The constituents of Lindera glauca. J. Chin. Chem. Soc. 2000, 47, 913–920. [Google Scholar]
- Kelner, M.J.; McMorris, T.C.; Beck, W.T.; Zamora, J.M.; Taetle, R. Preclinical evaluation of illudins as anticancer agents. Cancer Res. 1987, 47, 3186–3190. [Google Scholar]
- Kobayashi, A.; Egawa, H.; Koshimizu, K.; Mitsui, T. Antimicrobial constituents in Pteris inaequalis. Agric. Biol. Chem. 1975, 39, 1851–1856. [Google Scholar] [CrossRef]
- Sladowski, D.; Steer, S.; Clothier, R.H.; Balls, M.; Chihiro, I. An improved MTT assay. J. Immunol. Meth. 1993, 157, 203–207. [Google Scholar] [CrossRef]
- Sample availability: Contact the authors.
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Chen, Y.-H.; Chang, F.-R.; Lu, M.-C.; Hsieh, P.-W.; Wu, M.-J.; Du, Y.-C.; Wu, Y.-C. New Benzoyl Glucosides and Cytotoxic Pterosin Sesquiterpenes from Pteris ensiformis Burm. Molecules 2008, 13, 255-266. https://doi.org/10.3390/molecules13020255
Chen Y-H, Chang F-R, Lu M-C, Hsieh P-W, Wu M-J, Du Y-C, Wu Y-C. New Benzoyl Glucosides and Cytotoxic Pterosin Sesquiterpenes from Pteris ensiformis Burm. Molecules. 2008; 13(2):255-266. https://doi.org/10.3390/molecules13020255
Chicago/Turabian StyleChen, Yung-Husan, Fang-Rong Chang, Mei-Chin Lu, Pei-Wen Hsieh, Ming-Jiuan Wu, Ying-Chi Du, and Yang-Chang Wu. 2008. "New Benzoyl Glucosides and Cytotoxic Pterosin Sesquiterpenes from Pteris ensiformis Burm." Molecules 13, no. 2: 255-266. https://doi.org/10.3390/molecules13020255
APA StyleChen, Y. -H., Chang, F. -R., Lu, M. -C., Hsieh, P. -W., Wu, M. -J., Du, Y. -C., & Wu, Y. -C. (2008). New Benzoyl Glucosides and Cytotoxic Pterosin Sesquiterpenes from Pteris ensiformis Burm. Molecules, 13(2), 255-266. https://doi.org/10.3390/molecules13020255