Biology Reference
In-Depth Information
Okuda, T., Hatano, T., Nitta, H. and Fujii, R. (1980b). Hydrolyzable tannins having
enantiomeric dehydrohexahydroxydiphenoyl group: revised structure of terchebin
and structure of granatin B, Tetrahedron Lett ., 21, pp; 4361-4364.
Okuda, T., Yoshida, T. and Hatano, T. (1982). Constituents of Geranium thunbergii Sieb.
et Zucc. Part 12. Hydrated stereostructure and the equilibration of geraniin, J.
Chem. Soc. Perkin Trans 1 , pp. 9-14.
Okuda, T., Yoshida, T. and Hatano, T. (2000). Correlation of oxidative transformations
of hydrolyzable tannins and plant evolution, Phytochemistry , 55, pp. 513-529.
Okuda, T. (2005). Systematics and health effects of chemically distinct tannins in
medicinal plants, Phytochemistry , 66, pp. 2012-2031.
Robbins, C. T., Hanley, T. A., Hagerman, A. E., Hjeljord, O., Baker, D. L., Schwartz, C.
C. and Mautz, W. W. (1987). Role of tannins in defending plants against
ruminants: reduction in protein availability, Ecology , 68, pp. 98-107.
Saijo, R., Nonaka, G. and Nishioka, I. (1989a). Tannins and related compounds.
LXXXVII. Isolation and characterization of four new hydrolysable tannins from
the leaves of Mallotus repandus , Chem. Pharm. Bull ., 37, pp. 2624-2630.
Saijo, R., Nonaka, G. and Nishioka, I. (1989b). Tannins and related compounds.
LXXXIV. Isolation and characterization of five new hydrolysable tannins from the
bark of Mallotus japonicus , Chem. Pharm. Bull ., 37, pp. 2063-2070.
Scalbert, A. (1991). Antimicrobial properties of tannins, Phyrochemistry , 30, pp. 3875-
3883.
Schmidt, O. T. and Mayer, W. (1951). Natural tannins. V. Constitution of the “fission
acid,” C 14 H 12 O 11 , obtained from chebulinic and chebulagic acid, Justus Liebigs
Ann. Chem ., 571, pp. 1-15.
Schmidt, O. T. and Nieswandt, W. (1950). Natural tannins. III. Chebulagic acid, a
crystalline ellagitannin from myrobalans, Justus Liebigs Ann. Chem ., 568, pp. 165-
173.
Schmidt, O. T., Schanz, R., Eckert, R. and Wurmb, R. (1967a). Natural tannins. XXXIV.
Brevilagin 1, Justus Liebigs Ann. Chem ., 706, pp. 131-153.
Schmidt, O. T. and Wieder, G. (1967b). Natural tannins. XXXIX. Synthesis of
dehydrohexahydroxydiphenic acid, Justus Liebigs Ann. Chem ., 706, pp. 198-203.
Tanaka, T., Nonaka, G. and Nishioka, I. (1985). Tannins and related compounds. Part 28.
Revision of the structures of sanguiins H-6, H-2, and H-3, and isolation and
characterization of sanguiin H-11, a novel tetrameric hydrolyzable tannin, and
seven related tannins, from Sanguisorba officinalis , J. Chem. Research , (S) pp.
176-177, (M) pp. 2001-2029.
Tanaka, T., Nonaka, G., Nishioka, I., Miyahara, K. and Kawasaki, T. (1986). Tannins and
related compounds. Part 37. Isolation and structure elucidation of elaeocarpusin, a
novel ellagitannin from Elaeocarpus sylvestris var. ellipticus , J. Chem. Soc. Perkin
Trans. 1 , pp. 369-376.
Tanaka, T., Nonaka, G. and Nishioka, I. (1990). Tannins and related compounds. C.
Reaction of dehydrohexahydroxydiphenic acid esters with bases, and its
application to the structure determination of pomegranate tannins, granatins A and
B, Chem. Pharm. Bull ., 38, pp. 2424-2428.
Search WWH ::




Custom Search