[1] LI Y, CHEN X, XUE J, et al. Flavonoids furom Coreopsis tinctoria adjust lipid metabolism in hyperlipidemia animals by down-regulating adipose differentiation-related protein
[J]. Lipids Health Dis, 2014, 13: 193.
[2] YAO X, WANG X, GU C, et al. Chemical composition, N-nitrosamine inhibition and antioxidant and antimicrobial properties of essential oil from Coreopsis tinctoria flowering tops[J]. Nat Prod Res, 2016, 30(10): 1170-1173.
[3] DU H, LI S S, WU Q, et al. Analysis of active compounds and antioxidant activity assessment of six popular Chinese Juhua teas[J]. Nat Prod Commun, 2015, 10(3): 495-498.
[4] YAO X, GU C, TIAN L, et al. Comparative study on the antioxidant activities of extracts of Coreopsis tinctoria flowering tops from Kunlun Mountains, Xinjiang, north-western China[J]. Nat Prod Res, 2016, 30(4): 429-432.
[5] JIANG B, LE L, WAN W, et al. The fower tea Coreopsis tinctoria increases insulin sensitivity and regulates hepatic metabolism in rats fed a high-fat diet[J]. Endocrinology, 2015, 156(6): 2006-2018.
[6] LIU Y, DU D, LIANG Y, et al. Novel polyacetylenes from Coreopsis tinctoria Nutt[J]. J Asian Nat Prod Res, 2015, 17 (7): 744-749.
[7] WANG W, CHEN W, YANG Y, et al. New phenolic compounds from Coreopsis tinctoria Nutt. and their antioxidant and angiotensin i-converting enzyme inhibitory activities[J]. J Agric Food Chem, 2015, 63(1): 200-207.
[8] LAN S, LIN J, ZHENG N. Evaluation of the antioxidant activity of Coreopsis tinctoria Nuff. and optimisation of isolation by response surface methodology[J]. Acta Pharm,2014, 64(3): 369-378.
[9] SUN Y H, ZHAO J, JIN H T, et al. Vasorelaxant effects of the extracts and some flavonoids from the buds of Coreopsis tinctoria[J]. Pharm Biol, 2013, 51(9): 1158-1164.
[10] ZHANG Y, SHI S, ZHAO M, et al. Coreosides A-D, C14-polyacetylene glycosides from the capitula of Coreopsis tinctoria and its anti-inflammatory activity against COX-2 [J]. Fitoterapia, 2013, 87: 93-97.
[11] DIAS T, LIU B, JONES P, et al. A. Cytoprotective effect of Coreopsis tinctoria extracts and flavonoids on tBHP and cytokine-induced cell injury in pancreatic MIN6 cells[J]. J Ethnopharmacol, 2012, 139(2): 485-492.
[12] 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): 483-490.
[13] DIAS T, MOTA-FILIPE H, LIU B, et al. Recovery of oral glucose tolerance by Wistar rats after treatment with Coreopsis tinctoria infusion[J]. Phytother Res, 2010, 24(5): 699-705.
[14] 邢冲云, 周琳, 庄强, 等. 姜黄素通过上调SOCS表达抑制JAK2/STAT信号通路的机制[J]. 温州医科大学学报, 2015, 45(10): 718-722.
[15] 孟珊珊, 吕芳芳, 胡晓光, 等. 柚皮素对RSVA2株感染引起气道黏液高分泌的抑制作用[J]. 温州医科大学学报, 2015, 45(9): 631-635.
[16] 皮治兵, 申邦利, 蔡振, 等. 姜黄素通过下调p-NF-κB表达减轻大鼠带状疱疹神经痛[J]. 温州医科大学学报, 2015, 45(7): 512-515.
[17] 周子晔, 金辉, 王陈翔, 等. 绿茶水提物对大鼠CYP450酶活力和mRNA表达的调控作用[J]. 温州医科大学学报, 2015, 45(7): 502-511.
|