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Analogues of daunorubicin possessing a fluorine atom at position C(8) of ring A have been synthesized with the aim of comparing their DNA-drug interaction and antitumour properties with those of the clinically useful anthracyclines doxorubicin and idarubicin. The synthesis of (8S)-8-fluoro-4-demethoxydaunorubicin, 1, is reported and molecular mechanics and NMR studies which guided towards the synthesis of the epimeric (8R)-8-fluoro-4-demethoxydaunorubicin, 2, are discussed. Both compounds were prepared by divergent routes starting from the common intermediate, 6, obtained via the Diels-Alder cyclisation between quinizarin diquinone, 3, and 2-(l-hydroxyethyl)-l,3-butadiene, 4. The synthesis of the (8S)-fluoroepimer proceeded via epoxidation of the C(8)-C(9) olefinic bond of 6, oxidation, oxirane cleavage by BF3 • Et20 to give the fluorohydroxyketone, 9, followed by the introduction of the hydroxyl moiety at C(7) and glycosylation. Conversely, the synthesis of the (8R)-fluoroepimer involved the fluorobromination of the C(8)-C(9) olefinic bond of 6, formation of the C(9)-C(13) epoxide, 20 which, after regioselective hydrolysis and oxidation of the resulting fluorodiol to the epimeric fluorohydroxyketone, 21, similarly gave the desired fluoroaglycone, 25 and, hence, the corresponding glycoside, 2. The cytotoxic properties of the two 8-fluoroanthracycline analogues, 1 and 2, were markedly affected by the stereochemistry of the fluorine substituent.
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p.433-444,fig.
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- Menarini Ricerche Sud, Via Tito Speri, 10, 00040 Pomezia, Italy
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Bibliografia
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- 4. Arcamone, F. & Penco, S. (1987) Chemical derivatives of anticancer antibiotics with different DNA binding properties; in Molecular Mechanism of Carcinogenic and Antitumor Activity (Chagas, C. & Pullman, B., eds.) pp. 225-241, Pontificia Academia Scietiarum, Citta del Vati- cano.
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- 7. Giolitti, A., Guidi, A., Pasqui, F., Pestellini, V. & Arcamone, F. (1992) The synthesis of 8-(S)- -fluoro-N-trifluoroacetylidarubicin. Tetrahedron Lett. 33,1637-1640.
- 8. Del Nero, S. & Lombardi, P. (1984) A Diels-Alder synthetic approach to racemic 4-demethoxyda- unomycinone. Gazz. Chim. Ital. 114,517-520.
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- 10. Shimizu, M. & Yoshioka, H. (1988) Highly selective ring opening of epoxides with silicon tetrafluoride: preparation of fluorohydrins. Tetrahedron Lett. 29,4101-4104.
- 11. Olah, G.A., Welch,J.T., Vankar, Y.D., Nojima,M., Kerekes, I. & Olah, J.A. (1979) Synthetic methods and reactions. 63. Pyridinium poly(hydro- gen fluoride) (30% pyridine-70% hydrogen fluoride): a convenient reagent for organic fluorination reactions. }. Org. Chem. 44, 3872-3881.
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- 13. Arcamone, F., Bernardi, L., Patelli, B., Giardino, P., Di Marco, A., Casazza, A.M., Soranzo, C. & Pratesi, G. (1978) Synthesis and antitumor activity of new daunorubicin and adriamycin analogues. Experientia 34,1255-1256.
- 14. Sket, B. & Zupan, M. (1986) Polymers as reagents and catalysts. 12. Side chain bromination of aromatic molecules with a bromine complex of poIy(styrene-co-4-vinylpyridine). /. Org. Chem. 51,929-931.
- 15. Kimura, Y., Suzuki, M., Matsumoto, T., Abe, R. & Terashima, S. (1986) Novel glycosidation of 4-demethoxyanthracyclinones by the use of trimethylsilyl triflate. Synthesis of optically active 4-demethoxydaunorubicin and 4-deme- thoxyadriamycin. Bull. Chem. Soc. Jpn. 59, 423-431.
- 16. Jeffrey, P.D. & McCombie, S.W. (1982) Homogenous, palladium(0)-catalyzed exchange de- protection of allylic esters, carbonates, and carbamates. }. Org. Chem. 47,587-590.
- 17. Penco, S., Vigevani, A., Tosi, C., Fusco, R., Borghi, D. & Arcamone, F. (1986) Conformational flexibility of ring A in a series of substituted anthracyclines: ^-n.m.r. and quantum mechanical studies. Anti Cancer Drug Design 1,161-165.
- 18. Arcamone, F., Cassinelli, G., Franceschi, G., Mondelli, R., Orezzi, P. & Penco, S. (1970) Struttura e stereochimica della daunomicina. Gazz. Chim. Ital 100,949-989.
- 19. Ragg, E., Ulbright, C., Mondelli, R., Fronza, G. & Penco, S. (1990) Conformational analysis of doxorubicin and analogues in aqueos solution. Determination of the glycosidic linkage geometry by XH 2D-inversion recovery difference NOE spectroscopy. Gazz. Chim. Ital. 120, 501-509.
- 20. Penco, S., Angelucci, F., Ballabio, M., Barchielli, G., Suarato, A., Vanotti, E., Vigevani, A. & Arcamone, F. (1984) Synthesis and ring A con- formation of new anthracyclines. Heterocycles 21,21-27.
- 21. Haasnoot, C.A.G. (1992) The conformation of six-membered rings described by puckering coordinates derived from endocyclic torsion angles. /. Am. Chem. Soc. 114,882-887.
- 22. Haasnoot, C.A.G., de Leeuw, F.A.A.M., de Leeuw, H.P.M. & Altona, C. (1981) The relationship between proton-proton NMR coupling constants and substituent electronegativities. Part II. Conformational analysis of the sugar ring in nucleosides in solution using a generalized Karplus equation. Org. Magn. Reson. 15, 43-52.
- 23. de Leeuw, F.A.A.M., Altona, C., Kessler, H., Bernel, W., Friedrich, A., Krack, G. & Hull, W.E. (1983) Conformational analysis of proline ring from proton spin-spin coupling constants and force-field calculations: application to three cyclic tripeptides. J. Am. Chem. Soc. 105, 2237-2246.
- 24. Haasnoot, C.A.G., de Leeuw, F.A.A.M. & Altona, C. (1980) The relation between proton-proton NMR coupling constants and substituent electronegativities. I. An empirical generalization of the Karplus equation. Tetrahedron 36, 2783-2792.
- 25. Castellano, S. & Bothner-By, A.A. (1964) Analysis of NMR spectra by last squares. ]. Chem. Phys. 41,3863-3869.
- 26. Del Nero, S., Gandolfi, C., Lombardi, P. & Arca- mone, F. (1981) Preparation of (-)-l,4-dimetho- xy-6-acetyl-6-hydroxytetralin: intermediate for anthracyclinones synthesis. Chem. Ind. (London), 810-811.
- 27. Albanese, D., Landini, D., Penso, M. & Pratelli, M. (1991) Tetrabutylammonium dihydrogen- trifluoride: an effective source of fluoride ion for halofluorination of alkenes. Gazz. Chim. Ital. 121, 537-541.
- 28. Harper, D.B. & O'Hagan, D. (1994) The fluo- rinated natural products. Nat. Prod. Rep. 11,123- -133.
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