Secondary metabolites of Bagassa guianensis Aubl. wood: a study of the chemotaxonomy of the Moraceae family.
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[1] D. Wei,et al. Phytochemical profiles of different mulberry (Morus sp.) species from China. , 2009, Journal of agricultural and food chemistry.
[2] Sungun Kim,et al. Antioxidant activities of new flavonoids from Cudrania tricuspidata root bark , 2009, Archives of pharmacal research.
[3] Luca Sebastiani,et al. Catechin, epicatechin, quercetin, rutin and resveratrol in red grape: Content, in vitro antioxidant activity and interactions , 2008 .
[4] D. Ferreira,et al. Sorocenols G and H, anti-MRSA oxygen heterocyclic Diels-Alder-type adducts from Sorocea muriculata roots. , 2008, Journal of natural products.
[5] D. Bonatto,et al. Antioxidant protection of resveratrol and catechin in Saccharomyces cerevisiae. , 2008, Journal of agricultural and food chemistry.
[6] Julia K. Hasty,et al. Developing environmentally benign and effective organic wood preservatives by understanding the biocidal and non-biocidal properties of extractives in naturally durable heartwood , 2008 .
[7] H. Takayama,et al. Phenolic Constituents from the Wood of Morus australis with Cytotoxic Activity , 2008, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[8] A. Preston,et al. A brief review of the past, present and future of wood preservation. , 2007, Pest management science.
[9] K. Maruoka,et al. Asymmetric conjugate additions of α-substituted-α-cyanoacetates to acetylenic ketones by chiral phase transfer catalysis , 2007 .
[10] Zhendan He,et al. Oxyresveratrol as an antibrowning agent for cloudy apple juices and fresh-cut apples. , 2007, Journal of agricultural and food chemistry.
[11] Shang-Tzen Chang,et al. Evaluation of antifungal properties of octyl gallate and its synergy with cinnamaldehyde. , 2007, Bioresource technology.
[12] Ah-Reum Han,et al. Prenylated flavonoids from the heartwood of Artocarpus communis with inhibitory activity on lipopolysaccharide-induced nitric oxide production. , 2006, Journal of natural products.
[13] G. Weiblen,et al. Biogeography and divergence times in the mulberry family (Moraceae). , 2005, Molecular phylogenetics and evolution.
[14] I. Chen,et al. Cytotoxic flavonoids and new chromenes from Ficus formosana f. formosana. , 2005, Planta medica.
[15] P. Dang,et al. Microarray-based screening of differentially expressed genes in peanut in response to Aspergillus parasiticus infection and drought stress , 2005 .
[16] Shang-Tzen Chang,et al. Antifungal activities of essential oils and their constituents from indigenous cinnamon (Cinnamomum osmophloeum) leaves against wood decay fungi. , 2005, Bioresource technology.
[17] B. Ngameni,et al. Prenylated chalcones, flavone and other constituents of the twigs of Dorstenia angusticornis and Dorstenia barteri var. subtriangularis. , 2005, Phytochemistry.
[18] U. Jayasinghe,et al. Stilbene derivatives with antifungal and radical scavenging properties from the Stem Bark of artocarpus nobilis , 2004, Natural product research.
[19] G. Weiblen,et al. On the origin of the fig: phylogenetic relationships of Moraceae from ndhF sequences. , 2004, American journal of botany.
[20] L. Verotta,et al. Resveratrol derivatives and their role as potassium channels modulators. , 2004, Journal of natural products.
[21] T. Cabras,et al. Sorocein L and sorocein M: two Diels-Alder type adducts from Sorocea ilicifolia. , 2003, Journal of natural products.
[22] John M Pezzuto,et al. Constituents of the bark and twigs of Artocarpus dadah with cyclooxygenase inhibitory activity. , 2002, Journal of natural products.
[23] B. Sritularak,et al. A new dimeric stilbene with tyrosinase inhibitiory activity from Artocarpus gomezianus. , 2001, Journal of natural products.
[24] T. Schultz,et al. Naturally durable heartwood: evidence for a proposed dual defensive function of the extractives. , 2000, Phytochemistry.
[25] K. Takabe,et al. The Role of Extractives Involved in the Natural Durability of Domestic Softwood , 1999 .
[26] S. Ross,et al. Flavonoids from Maclura tinctoria. , 1999, Phytochemistry.
[27] R. Tan,et al. Steroidal Alkaloids and Stilbenoids from Veratrum taliense. , 1999, Planta medica.
[28] R. Kondo,et al. The inhibitory components from Artocarpus incisus on melanin biosynthesis. , 1998, Planta medica.
[29] R. Bates,et al. Revised structure of alboctalol , 1997 .
[30] S. Kadota,et al. Two new 2-arylbenzofuran derivatives from hypoglycemic activity-bearing fractions of Morus insignis. , 1993, Chemical & pharmaceutical bulletin.
[31] David J. Mabberley,et al. The Plant Book , 1988 .
[32] T. Fukai,et al. Two phenolic glycosides from the root bark of the cultivated mulberry tree (Morus lhou) , 1986 .
[33] T. R. Seshadri,et al. Cudraniaxanthone and butyrospermol acetate from the roots of Cudrania javanensis , 1972 .
[34] Young-Soo Hong,et al. Hypoxia-inducible factor-1 inhibitory benzofurans and chalcone-derived diels-alder adducts from Morus species. , 2009, Journal of natural products.
[35] U. Jayasinghe,et al. Four new prenylated flavonoids and xanthones from the root bark of Artocarpus nobilis. , 2008, Fitoterapia.
[36] Andreas Richter,et al. Biodeterioration of brazilwood Caesalpinia echinata Lam. (Leguminosae—Caesalpinioideae) by rot fungi and termites , 2007 .
[37] Jeffrey J. Morrell,et al. Natural Durability of WooD: a WorlDWiDe CheCklist of speCies , 1998 .
[38] W. Harms,et al. Durability of Angiosperm Heartwood: The Importance of Extractives , 1995 .
[39] R. Blanchette. WOOD-DECAY FUNGI , 1991 .
[40] T. Schultz,et al. Role of stilbenes in the natural durability of wood: Fungicidal structure-activity relationships , 1990 .
[41] Raymond O. Miller,et al. Extracts from black locust heartwood as wood preservatives: a comparison of the methanol extract with pentachlorophenol and chromated copper arsenate , 1989 .
[42] C. Campbell,et al. Extracts from Black Locust as Wood Preservatives: Extraction of Decay Resistance from Black Locust Heartwood , 1989 .
[43] J. Hart. Role of Stilbenes in Resistance of Wood to Decay , 1979 .
[44] T. Masamune,et al. Structures of moracins E, F, G, and H, new phytoalexins from diseased mulberry , 1979 .