Antileishmanial Activity of Lignans, Neolignans …
165
171. Zhou Y, Zheng J, Li Y, Xu D-P, Li S, Chen Y-M, Li H-B (2016) Natural polyphenols for
prevention and treatment of cancer. Nutrients 8:515
172. Hisanaga A, Mukai R, Sakao K, Terao J, Hou D-X (2016) Antiinflammatory effects and
molecular mechanisms of 8-prenyl quercetin. Mol Nutr Food Res 60:1020
173. Gormaz JG, Quintremil S, Rodrigo R (2015) Cardiovascular disease: a target for the
pharmacological effects of quercetin. Curr Top Med Chem 15:1735
174. Vaidya B, Cho SY, Oh KS, Kim SH, Kim YO, Jeong EH, Nguyen TT, Kim SH, Kim IS, Kwon
J, Kim D (2016) Effectiveness of periodic treatment of quercetin against influenza A virus
H1N1 through modulation of protein expression. J Agric Food Chem 64:4416
175. Al-Jabban SMR, Zhang X, Chen G, Mekuria Addo E, Rakotondraibe LH, Chen Q-H (2015)
Synthesis and antiproliferative effects of quercetin derivatives. Nat Prod Commun 10:2113
176. Kang TB, Liang NC (1997) Studies on the inhibitory effects of quercetin on the growth of
HL-60 leukemia cells. Biochem Pharmacol 54:1013
177. Uddin S, Choudhry MA (1995) Quercetin, a bioflavonoid, inhibits the DNA synthesis of
human leukemia cells. Biochem Mol Biol Int 36:545
178. Scambia G, Ranelletti FO, Panici PB, De Vincenzo R, Bonanno G, Ferrandina G, Piantelli
M, Bussa S, Rumi C, Cianfriglia M (1994) Quercetin potentiates the effect of adriamycin in a
multidrug-resistant MCF-7 human breast-cancer cell line: P-glycoprotein as a possible target.
Cancer Chemother Pharmacol 34:459
179. Chi CW, Chang YF, Ou YR, Hsieh CC, Lui WY, P’Eng RK, Liu TY (1997) Effect of quercetin
on the in vitro and in vivo growth of mouse hepatoma cells. Oncol Rep 4:1021
180. Lü HQ, Niggemann B, Zänker KS (1996) Suppression of the proliferation and migration
of oncogenic ras-dependent cell lines, cultured in a three-dimensional collagen matrix, by
flavonoid-structured molecules. J Cancer Res Clin Oncol 122:335
181. Caltagirone S, Ranelletti FO, Rinelli A, Maggiano N, Colasante A, Musiani P, Aiello FB,
Piantelli M (1997) Interaction with type II estrogen binding sites and antiproliferative activity
of tamoxifen and quercetin in human non-small-cell lung cancer. Am J Respir Cell Mol Biol
17:51
182. Kuo SM (1996) Antiproliferative potency of structurally distinct dietary flavonoids on human
colon cancer cells. Cancer Lett 110:41
183. Hirano T, Gotoh M, Oka K (1994) Natural flavonoids and lignans are potent cytostatic agents
against human leukemic HL-60 cells. Life Sci 55:1061
184. Salucci M, Stivala LA, Maiani G, Bugianesi R, Vannini V (2002) Flavonoids uptake and their
effect on cell cycle of human colon adenocarcinoma cells (Caco2). Br J Cancer 86:1645
185. Little CH, Combert E, McMillan DC, Horgan PG, Roxburgh CSD (2015) The role of dietary
polyphenols in the moderation of the inflammatory response in early stage colorectal cancer.
Food Sci Nutr 57:2310
186. Hossain P, Kawar B, Nahas EM (2007) Obesity and diabetes in the developing world—a
growing challenge. N Engl J Med 356:213
187. Tang X, Liu J, Dong W, Li P, Li L, Hou J, Zheng Y, Lin C, Ren J (2015) Protective
effect of kaempferol on LPS plus ATP-induced inflammatory response in cardiac fibroblasts.
Inflammation 38:94
188. Zang Y, Zhang L, Igarashi K, Yu C (2015) The antiobesity and antidiabetic effects of
kaempferol glycosides from unripe soybean leaves in high-fat-diet mice. Food Funct 6:834
189. Montero M, de la Fuente S, Fonteriz RI, Moreno A, Alvarez J (2014) Effects of long-term
feeding of the polyphenols resveratrol and kaempferol in obese mice. PLoS One 9:e112825
190. García-Mediavilla V, Crespo I, Collado PS, Esteller A, Sáncehz-Campos S, Tunón MJ,
Gonzáles-Gallego J (2007) The antiinflammatory flavones quercetin and kaempferol cause
inhibition of inducible nitric oxide synthase, cyclooxygenase-2 and reactive C-protein, and
down-regulation of the nuclear factor kappaB pathway in Chang liver cells. Eur J Pharmacol
557:221
191. Song Y, Lee S-J, Jang S-H, Ha JH, Song YM, Ko Y-G, Kim H-D, Min W, Kang SN, Cho J-H
(2014) Sasa borealis stem extract attenuates hepatic steatosis in high-fat diet-induced obese
rats. Nutrients 6:2179
165
171. Zhou Y, Zheng J, Li Y, Xu D-P, Li S, Chen Y-M, Li H-B (2016) Natural polyphenols for
prevention and treatment of cancer. Nutrients 8:515
172. Hisanaga A, Mukai R, Sakao K, Terao J, Hou D-X (2016) Antiinflammatory effects and
molecular mechanisms of 8-prenyl quercetin. Mol Nutr Food Res 60:1020
173. Gormaz JG, Quintremil S, Rodrigo R (2015) Cardiovascular disease: a target for the
pharmacological effects of quercetin. Curr Top Med Chem 15:1735
174. Vaidya B, Cho SY, Oh KS, Kim SH, Kim YO, Jeong EH, Nguyen TT, Kim SH, Kim IS, Kwon
J, Kim D (2016) Effectiveness of periodic treatment of quercetin against influenza A virus
H1N1 through modulation of protein expression. J Agric Food Chem 64:4416
175. Al-Jabban SMR, Zhang X, Chen G, Mekuria Addo E, Rakotondraibe LH, Chen Q-H (2015)
Synthesis and antiproliferative effects of quercetin derivatives. Nat Prod Commun 10:2113
176. Kang TB, Liang NC (1997) Studies on the inhibitory effects of quercetin on the growth of
HL-60 leukemia cells. Biochem Pharmacol 54:1013
177. Uddin S, Choudhry MA (1995) Quercetin, a bioflavonoid, inhibits the DNA synthesis of
human leukemia cells. Biochem Mol Biol Int 36:545
178. Scambia G, Ranelletti FO, Panici PB, De Vincenzo R, Bonanno G, Ferrandina G, Piantelli
M, Bussa S, Rumi C, Cianfriglia M (1994) Quercetin potentiates the effect of adriamycin in a
multidrug-resistant MCF-7 human breast-cancer cell line: P-glycoprotein as a possible target.
Cancer Chemother Pharmacol 34:459
179. Chi CW, Chang YF, Ou YR, Hsieh CC, Lui WY, P’Eng RK, Liu TY (1997) Effect of quercetin
on the in vitro and in vivo growth of mouse hepatoma cells. Oncol Rep 4:1021
180. Lü HQ, Niggemann B, Zänker KS (1996) Suppression of the proliferation and migration
of oncogenic ras-dependent cell lines, cultured in a three-dimensional collagen matrix, by
flavonoid-structured molecules. J Cancer Res Clin Oncol 122:335
181. Caltagirone S, Ranelletti FO, Rinelli A, Maggiano N, Colasante A, Musiani P, Aiello FB,
Piantelli M (1997) Interaction with type II estrogen binding sites and antiproliferative activity
of tamoxifen and quercetin in human non-small-cell lung cancer. Am J Respir Cell Mol Biol
17:51
182. Kuo SM (1996) Antiproliferative potency of structurally distinct dietary flavonoids on human
colon cancer cells. Cancer Lett 110:41
183. Hirano T, Gotoh M, Oka K (1994) Natural flavonoids and lignans are potent cytostatic agents
against human leukemic HL-60 cells. Life Sci 55:1061
184. Salucci M, Stivala LA, Maiani G, Bugianesi R, Vannini V (2002) Flavonoids uptake and their
effect on cell cycle of human colon adenocarcinoma cells (Caco2). Br J Cancer 86:1645
185. Little CH, Combert E, McMillan DC, Horgan PG, Roxburgh CSD (2015) The role of dietary
polyphenols in the moderation of the inflammatory response in early stage colorectal cancer.
Food Sci Nutr 57:2310
186. Hossain P, Kawar B, Nahas EM (2007) Obesity and diabetes in the developing world—a
growing challenge. N Engl J Med 356:213
187. Tang X, Liu J, Dong W, Li P, Li L, Hou J, Zheng Y, Lin C, Ren J (2015) Protective
effect of kaempferol on LPS plus ATP-induced inflammatory response in cardiac fibroblasts.
Inflammation 38:94
188. Zang Y, Zhang L, Igarashi K, Yu C (2015) The antiobesity and antidiabetic effects of
kaempferol glycosides from unripe soybean leaves in high-fat-diet mice. Food Funct 6:834
189. Montero M, de la Fuente S, Fonteriz RI, Moreno A, Alvarez J (2014) Effects of long-term
feeding of the polyphenols resveratrol and kaempferol in obese mice. PLoS One 9:e112825
190. García-Mediavilla V, Crespo I, Collado PS, Esteller A, Sáncehz-Campos S, Tunón MJ,
Gonzáles-Gallego J (2007) The antiinflammatory flavones quercetin and kaempferol cause
inhibition of inducible nitric oxide synthase, cyclooxygenase-2 and reactive C-protein, and
down-regulation of the nuclear factor kappaB pathway in Chang liver cells. Eur J Pharmacol
557:221
191. Song Y, Lee S-J, Jang S-H, Ha JH, Song YM, Ko Y-G, Kim H-D, Min W, Kang SN, Cho J-H
(2014) Sasa borealis stem extract attenuates hepatic steatosis in high-fat diet-induced obese
rats. Nutrients 6:2179
