Maldonado E, Teresa R A, Perez-Castorena A L. Anti-inflammatory activity of phenyl propanoids from Coreopsis mutica var. mutica [J]. Planta Med, 1998, 64:660.
[2]
Liu J H, Zschocke S, Reininger E, et al. Inhibitory effects of Angelica pubescens biserrata on 5-lipoxygenase and cyclooxygenase [J]. Planta Med, 1998, 64 (6):525.
Liu Y, Zhang Y, Liu X M, et al. Interactions between thrombin and natural products of Coreopsis tinctoria Nutt and Cistanche deserticola Ma in capillary zone electrophoresis [J]. J Chin Pharm Sci, 2006, 15(1): 38.
[6]
晏小欣, 木尼热·阿不都克里木,敬思群. 金鸡菊黄色素的提取及抗氧化性的研究[J]. China Brewing, 2012, 31(5):144.
Geissman T A, Harborne J B,Seikel M K, er al. Anthochlor pigmentS.Ⅺ. The constituents of Coreopsis maritima. Reinvestigation of Coreopsis gigiantea [J]. J Am Chem Soc, 1956, 78: 825.
[12]
Nicholls K W, Bohm B A. Flavonoids and affinities of Coreopsis bigelovii [J]. Phytochemistry, 1979, 18:1076.
[13]
Shimokoriyama M. Anthochlor pigments of Coreopsis tinctoria [J]. J Am Chem Soc, 1956,79:214.
[14]
Shimokoriyama M. Hattori S.Anthochlor pigments of Cosmos sulphureus, Coreopsis lanceolata and C. saxicola [J]. J Am Chem Soc, 1952, 75:1900.
[15]
Crawford D J. Okanin 4\'-O-diglucoside from Coreopsis petrophiloides and comments on anthochlors and evolution in Coreopsis [J]. Phytochemistry, 1978, 17:1680.
[16]
Seikel M K, Haines A L, Thompson H D. Flower pigments.Ⅰ. Further studies on the structure of stillopsin[J].J Am Chem Soc, 1954, 77:1196.
[17]
Harborne J B. Geissman T A. Anthochlor pigmentS.Ⅻ. Maritimein and marein [J]. J Am Chem Soc, 1956, 78:829.
[18]
Bohlmann F,Ahmed M,et al. Bisabolene derivatives and othere constituents from Coreopsis species [J]. Phytochemistry, 1983,17:2858.
[19]
Bohlmann F,Banerjee S,et al. Bisabolene derivatives and acetylenic compounds from Peruvian coreopsis species [J]. Phytochemistry, 1985, 24:1295.
[20]
Mohamed A M, Robert M K, Harold R. An acetylenic epoxide and a ferulate from Coreopsis longula [J]. Phytochemistry, 1985, 24:182.
[21]
Halbwirth H, Wimmer G, Wurst F, et al. Enzymatic glucosylation of 4-deoxyaurones and 6\'-deoxychalcones with enzyme extracts of Coreopsis grandiflora Nutt. Ⅰ.[J]. Plant Sci, 1997, 122: 125.
[22]
Julian E A, Crawford D J. Sulphretin glycosides of Coreopsis mutice [J]. Phytochemistry, 1972, 11: 1841.
[23]
Zhang Y, Shi S P, Zhao M B, et al. A novel chalcone from Coreopsis tinctoria Nutt [J]. Biochem Syst Ecol, 2006, 34: 766.
[24]
Crawford D J, Smith E B. Flavonoid chemistry of Coreopsis grandiflora (compositae) [J]. Brittonia, 1980, 32 (2): 154.
[25]
Crawford D J, Smith E B. Leaf flavonoid chemistry and taxonomy of Coreopsis sect. Coreopsis [J]. Biochem Syst Ecol, 1985, 13 (2): 115.
[26]
Bohlmann F, Zdero C. Uber die Inhaltsstoffe von Coreopsis nuecensis A. Heller [J]. Chem Ber, 1968, 101: 3243.
[27]
Bohlmann F, Zdero C. Uber die Inhaltsstoffe von Coreopsis gigantea [J]. Chem Ber, 1969, 102: 1691.
[28]
Bohlmann F, Zdero C. Uber die Inhaltsstoffe von Coreopsis verticillata L. [J]. Chem Ber, 1970, 103: 2095.
[29]
Bohlmann F, Zdero C. Uber die Inhaltsstoffe von Coreopsis parvifolia Blake [J]. Chem Ber, 1977, 110: 468.
[30]
Carpita A, Lezzi A, Rossi R. Regio-and stereocontrolled chloroformylation of 2-(1-propynyl)thiophene and 2-phenyl-5-(1-propynyl)thiophene[J]. Tetrahedron, 1985, 41 (3): 621.
Dias T, Bronze M R, Houghton P J, et al. The flavonoid-rich fraction of Coreopsis tinctoria promotes glucose tolerance regain through pancreatic function recovery in streptozotocin-induced glucose-intolerant rats [J].J Ethnopharmacol, 2010, 132 (2):483.