[1](清)吴其濬著. 植物名实图考(下) [M]. 北京:中华书局出版, 1963:558.
[2]焦连魁,曾燕,赵润怀,等. 金荞麦资源研究进展[J]. 中国现代中药, 2016,18(4):519-525.
[3]张燕,祁云枝,周军辉,等. 秦巴山区资源植物野生金荞麦的引种繁殖和开发前景[J]. 陕西农业科学, 2017,63(2):62-64.
[4]吴征镒. 中国科学院昆明植物研究所. 云南植物志[M]. 北京:科学出版社, 2000,11:364-366.
[5]董雪妮,唐宇,丁梦琦,等. 中国荞麦种质资源及其饲用价值[J]. 草业科学, 2017, 34(2): 378-388.
[6]Wang KJ, Zhang YJ, Yang CR. Antioxidant phenolic constituents from Fagopyrum dibotrys[J]. J Ethnopharmacol. 2005, 99(2): 259-264.
[7]王昌华,刘翔,赵纪峰,等.金荞麦种质资源及其生态调查研究[J]. 资源开发与市场, 2010,26(6):544-546.
[8]汤琼. 金荞麦的生药学研究[D]. 武汉:华中科技大学, 2016.
[9]严晶,袁嘉嘉,刘丽娜,等.金荞麦药理作用及临床应用研究进展[J]. 山东中医杂志, 2017, 36(07): 621-624.
[10]中国药典[S]. 一部.2015.
[11]林建斌,赵立春,郭建忠,等. 金荞麦地上部分化学成分的研究[J]. 中草药, 2016, 47(11):1841-1844.
[12]张京,况燚, 刘力,等.金荞麦块根化学成分的研究[J]. 中草药, 2016, 47(5):722-725.
[13]闫继平. 金荞麦化学成分及HPLC指纹图谱研究[D]. 沈阳药科大学, 2006.
[14]吴和珍,周洁云,潘宏林. 金荞麦化学成分的研究[J]. 中国医院药学杂志, 2008, 28(21): 1829-1831.
[15]王文彤,张娜,郑夺,等. 正交试验优选金荞麦的提取工艺研究[J]. 中草药, 2012, 43(2): 303-304.
[16]王航,汤承,岳华. 高效液相色谱法测定金荞麦超微粉原花青素B-2含量[J]. 中国畜牧兽医, 2013,40(9):222-224.
[17]唐宇,贾洪锋,孙俊秀,等. 金荞麦果实中有效成分的分析[J]. 中国野生植物资源, 2013, 32(1):52-55.
[18]Jing R, Li HQ, Hu CL, et al. Phytochemical and pharmacological profiles of three Fagopyrum buck wheats [J]. Int J Mol Sci, 2016, 17(4): 589-609.
[19]Ding M, Zhao J, Bowman L, et al. Inhibition of AP-1 and MAPK signaling and activation of Nrf2/ARE pathway by quercitrin[J]. Int J Oncol, 2010,36(1):59-67.
[20]Takasaki M, Konoshima T, Kuroki S, et al. Cancer chemopreventive activity of phenylpropanoid esters of sucrose, vanicoside B and lapathoside A, from Polygonum lapathifolium[J]. Cancer Lett, 2001, 173(2):133-138.
[21]El-Alfy TS, Ezzat SM, Hegazy AK, et al. Isolation of biologically active constituents from Moringa peregrina (Forssk.) Fiori. (family: Moringaceae) growing in Egypt[J]. Pharmacogn Mag, 2011,7(26): 109-115.
[22]Sabino APL, Eustáquio LMS, Miranda ACF, et al. Stryphnodendron adstringens ("Barbatimo") leaf Fraction: chemical characterization, antioxidant activity, and cytotoxicity towards human breast cancer cell lines[J]. Appl Biochem Biotechnol. 2018, 184(4): 1375-1389.
[23]Zhu XY, Ma PJ, Peng D, et al. Quercetin suppresses lung cancer growth by targeting Aurora B kinase[J]. Cancer Med, 2016,5(11):3156-3165.
[24]Zhou J, Li L, Fang L, et al. Quercetin reduces cyclin D1 activity and induces G1 phase arrest in HepG2 cells[J]. Oncol Lett, 2016,12,(1):516-522.
[25]Srivastava S, Somasagara RR, Hegde M, et al. Quercetin, a natural flavonoid interacts with DNA, arrests cell cycle and causes tumor regression by activating mitochondrial pathway of apoptosis[J]. Sci Rep, 2016,6:24049-24062.
[26]Liu H, Zhou M. Antitumor effect of Quercetin on Y79 retinoblastoma cells via activation of JNK and p38 MAPK pathways[J]. BMC Complement Altern Med, 2017,17(1):531-538.
[27]Elsayed HE, Ebrahim HY, Mohyeldin MM, et al. Rutin as a novel c-met inhibitory lead for the control of triple negative breast malignancies[J]. Nutr Cancer, 2017,69(8):1256-1271.
[28]Selvi RB, Swaminathan A, Chatterjee S, et al. Inhibition of p300 lysine acetyltransferase activity by luteolin reduces tumor growth in head and neck squamous cell carcinoma (HNSCC) xenograft mouse model[J]. Oncotarget, 2015,6(41):43806-43818.
[29]Wang F, Gao F, Pan S, et al. Luteolin induces apoptosis, G0/G1 cell cycle growth arrest and mitochondrial membrane potential loss in neuroblastoma brain tumor cells[J]. Drug Res (Stuttg), 2015,65(2):91-95.
[30]Abdulkhaleq LA, Assi MA, Noor MHM, et al. Therapeutic uses of epicatechin in diabetes and cancer[J]. Vet World, 2017,10(8):869-872.
[31]di Leo N, Battaglini M, Berger L, et al. A catechin nanoformulation inhibits WM266 melanoma cell proliferation, migration and associated neo-angiogenesis[J].Eur J Pharm Biopharm, 2017, 114:1-10.
[32]Khamis AAA, Ali EMM, El-Moneim MAA, et al. Hesperidin, piperine and bee venom synergistically potentiate the anticancer effect of tamoxifen against breast cancer cells[J]. Biomed Pharmacother, 2018,105:1335-1343.
[33]Zhang HW, Hu JJ, Fu RQ, et al. Flavonoids inhibit cell proliferation and induce apoptosis and autophagy through downregulation of PI3Kγ mediated PI3K/AKT/mTOR/p70S6K/ULK signaling pathway in human breast cancer cells[J].Sci Rep, 2018, 8(1):11255.
[34]Dziedzic A, Kubina R, Kabala-Dzik A, et al. Induction of cell cycle arrest and apoptotic response of head and neck squamous carcinoma cells (Detroit 562) by caffeic acid and caffeic acid Phenethyl Ester derivative[J].Evid Based Complement Alternat Med, 2017, 2017:6793456,1-10.
[35]Yang G, Fu Y, Malakhova M, et al. Caffeic acid directly targets ERK1/2 to attenuate solar UV-induced skin carcinogenesis[J].Cancer Prev Res (Phila), 2014,7(10):1056-1066.
[36]Ning DS, Yan XX, Huang SS, et al. Studies on chemical constituents of Zhuang medicine Excoecaria venenata and their cytotoxic activity[J]. Zhongguo Zhong Yao Za Zhi, 2015, 40 (04): 686-690.
[37]Park WH. Gallic acid induces HeLa cell death via increasing GSH depletion rather than ROS levels[J]. Oncol Rep, 2017, 37(2):1277-1283.
[38]Tyagi A, Raina K, Shrestha SP, et al. Procyanidin B2 3,3(″)-di-O-gallate, a biologically active constituent of grape seed extract, induces apoptosis in human prostate cancer cells via targeting NF-κB, Stat3, and AP1 transcription factors[J]. Nutr Cancer, 2014,66(4):736-746.
[39]Wang CG, Zhong L, Liu YL , et al. Emodin exerts an antiapoptotic effect on human chronic myelocytic leukemia K562 cell lines by targeting the PTEN/PI3K-AKT signaling pathway and deleting BCR-ABL[J]. Integr Cancer Ther, 2017, 16(4):526-539.
[40]Zhang H, Li X, Zhang Y, et al. Luteolin induces apoptosis by activating Fas signaling pathway at the receptor level in laryngeal squamous cell line Hep-2 cells[J]. Eur Arch Otorhinolaryngol, 2014,271(6):1653-1659.
[41]Liu Y, Tang ZG, Lin Y, et al. Effects of quercetin on proliferation and migration of human glioblastoma U251 cells[J]. Biomed Pharmacother, 2017, 92:33-38.
[42]Liu Y, Gong W, Yang ZY, et al. Quercetin induces protective autophagy and apoptosis through ER stress via the p-STAT3/Bcl-2 axis in ovarian cancer[J]. Apoptosis, 2017,22 (4): 544-557.
[43]Banjerdpongchai R, Wudtiwai B, Khaw-On P, et al. Hesperidin from Citrus seed induces human hepatocellular carcinoma HepG2 cell apoptosis via both mitochondrial and death receptor pathways[J]. Tumour Biol, 2016,37(1):227-237.
[44]Roohbakhsh A, Parhiz H, Soltani F, et al. Molecular mechanisms behind the biological effects of hesperidin and hesperetin for the prevention of cancer and cardiovascular diseases[J]. Life Sci, 2015,124:64-74.
[45]Ma Q, Ding Y, Wu Z, et al. Antitumor effects of emodin in CACO-2 human colon carcinoma cells are mediated via apoptosis, cell cycle arrest and downregulation of PI3K/AKT signalling pathway[J]. J BUON, 2018, 23(3):587-591.
[46]Lin W, Zhong M, Liang S, et al. Emodin inhibits migration and invasion of MHCC-97H human hepatocellular carcinoma cells[J]. Exp Ther Med, 2016,12(5):3369-3374.
[47]Wang Q, Wang H, Jia Y, et al. Luteolin induces apoptosis by ROS/ER stress and mitochndrial dysfunction in gliomablastoma[J]. Cancer Chemother Pharmacol, 2017,79(5):1031-1041.
[48]Su J, Yan Y, Qu J, et al. Emodin induces apoptosis of lung cancer cells through ER stress and the TRIB3/NF-κB pathway[J]. Oncol Rep, 2017,37(3):1565-1572.
[49]Iplik ES, Catmakas T, Cakmakoglu B. A new target for the treatment of endometrium cancer by succinic acid[J]. Cell Mol Biol (Noisy-le-grand), 2018,64(1):60-63.
[50]Kim MJ, Woo JS, Kwon CH, et al. Luteolin induces apoptotic cell death through AIF nuclear translocation mediated by activation of ERK and p38 in human breast cancer cell lines[J]. Cell Biol Int, 2012,36(4):339-344.
[51]Trybus W, Król T, Trybus E, et al. Changes in the Lysosomal System of Cervical Cancer Cells Induced by Emodin Action[J]. Anticancer Res, 2017, 37(11):6087-6096.
[52]Chang JH, Lai SL, Chen WS, et al. Quercetin suppresses the metastatic ability of lung cancer through inhibiting Snail-dependent Akt activation and Snail-independent ADAM9 expressi- on pathways[J]. Biochim Biophys Acta, 2017, 1864(10):1746-1758.
[53]Baruah MM, Khandwekar AP, Sharma N. Quercetin modulates Wnt signaling components in prostate cancer cell line by inhibiting cell viability, migration, and metastases[J]. Tumour Biol, 2016, 37(10):14025-14034.
[54]Zhao X, Wang Q, Yang S, et al. Quercetin inhibits angiogenesis by targeting calcineurin in the xenograft model of human breast cancer[J]. Eur J Pharmacol, 2016,781:60-68.
[55]Xia R, Xu G, Huang Y, et al. Hesperidin suppresses the migration and invasion of non-small cell lung cancer cells by inhibiting the SDF-1/CXCR-4 pathway[J]. Life Sci, 2018,201: 111-120.
[56]Chung DJ, Wang CJ, Yeh CW, et al. Inhibition of the proliferation and invasion of C6 glioma cells by tricin via the ppregulation of Focal-Adhesion-Kinase-Targeting MicroRNA-7 [J].J Agric Food Chem, 2018, 66(26):6708-6716.
[57]张宏旭,曲杰,王助新,等. 金荞麦红车轴草黄酮对胃癌SGC7901细胞迁移的抑制作用及其机制[J]. 吉林大学学报(医学版), 2013, 39(1):78-81.
[58]Kabala-Dzik A, Rzepecka-Stojko A, Kubina R, et al. Migration rate inhibition of breast cancer cells treated by caffeic acid and caffeic acid Phenethyl Ester: An in vitro comparison study[J]. Nutrients, 2017,9(10):1-19.
[59]孔祥军. 原花青素B2对肝癌细胞HepG2生物学行为和PI-3K/PTEN/Akt/mTOR通路的影响[D]. 重庆大学, 2013.
[60]Song X, Zhou X, Qin Y, et al. Emodin inhibits epithelial-mesenchymal transition and metastasis of triple negative breast cancer via antagonism of CC-chemokine ligand 5 secreted from adipocytes[J]. Int J Mol Med, 2018,42(1):579-588.
[61]Lu J, Xu Y, Wei X, et al. Emodin inhibits the epithelial to mesenchymal transition of epithelial ovarian cancer cells via ILK/GSK-3β/Slug signaling pathway[J]. Biomed Res Int, 2016, 6253280.
[62]Syed Hussein SS, Kamarudin MN, Kadir HA. (+)-Catechin attenuates NF-κB activation through regulation of Akt, MAPK, and AMPK signaling pathways in LPS-Induced BV-2 microglial cells[J]. Am J Chin Med, 2015,43(5):927-952. |