中醫藥瀏覽 TCM Profile
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藥材 Compound  
(-)-quinic,acid
2-hydroxy-1-[(7-hydroxy-2-oxo-2h-chromen-6-yl)methyl]-2-methylpropyl-(2z)-3-methyl-but-e-enoateprunate
2-O-acetyl-3-O-methylrutin
2-O-acetylrutin
3-caffeoylquinic,acid
3-o-caffeoylquinic,acid
4-o-caffeoylquinic,acid
benzyl alcohol xylosyl
benzyl,alcohol,xylosyl(1-6)glucoside
benzyl,glucoside
benzyl-beta-primeveroside
benzyl-o-beta-d-glucopyranoside
caffeic,acid,(ca)
chavicol beta-d-glucoside
chavicol,beta-d-glucoside
chlorogenetic,acid
Chlorogenic acid
chlorogenic,acid
eugenyl glucoside
eugenyl,glucoside
isorhamnetin 3-rhamnoside
isorhamnetin,3-rhamnoside
mumefural
neo-chlorogenic,acid
prunose,i
prunose,ii
prunose,iii
quercetin 3-O-(2',6'-alpha-L-dirhamnopyranosyl)-beta-D-galactopyranoside
quercetin 3-O-(2,6-alpha -L-dirhamnopyranosyl)-beta -Dgalactopyranoside
quercetin 3-O-rhamnopyranosyl
quercetin,3-o-neohesperidoside
quercetin,3-o-rhamnopyranosyl(1-6)galactopyranoside
quercetin,3-o-rutinoside
quercetin3-O-neohesperidoside
quinic acid
quinic,acid
rosmarinic,acid
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參考文獻
[1] Chuda, Y., Ono, H., Ohnishi-Kameyama, M., Matsumoto, K., et al., Mumefural, citric acid derivative improving blood fluidity from fruit-juice concentrate of Japanese apricot (Prunus mume Sieb. et Zucc). J Agric Food Chem 1999, 47, 828-831.
[2] Jeong, J. T., Moon, J. H., Park, K. H., Shin, C. S., Isolation and characterization of a new compound from Prunus mume fruit that inhibits cancer cells. J Agric Food Chem 2006, 54, 2123-2128.
[3] Matsuda, H., Morikawa, T., Ishiwada, T., Managi, H., et al., Medicinal flowers. VIII. Radical scavenging constituents from the flowers of Prunus mume: structure of prunose III. Chem Pharm Bull (Tokyo) 2003, 51, 440-443.
[4] Shi, J. Y., Gong, J. Y., Liu, J., Wu, X. Q., Zhang, Y., Antioxidant capacity of extract from edible flowers of Prunus mume in China and its active components. Lwt-Food Science and Technology 2009, 42, 477-482.