-
1
-
-
77649207183
-
Biological activities of polyphe-nols from grapes
-
Xia EQ, Deng GF, Guo YJ, Li HB. Biological activities of polyphe-nols from grapes. Int. J. Mol. Sci., 11, 622-646 (2010).
-
(2010)
Int. J. Mol. Sci.
, vol.11
, pp. 622-646
-
-
Xia, E.Q.1
Deng, G.F.2
Guo, Y.J.3
Li, H.B.4
-
2
-
-
33751072349
-
Resveratrol improves health and survival of mice on a high-calorie diet
-
Baur JA, Pearson KJ, Price NL, Jamieson HA, Lerin C, Kalra A, Prabhu VV, Allard JS, Lopez-Lluch G, Lewis K, Pistell PJ, Poosala S, Becker KG, Boss O, Gwinn D, Wang M, Ramaswamy S, Fish-bein KW, Spencer RG, Lakatta EG, Le Couteur D, Shaw RJ, Navas P, Puigserver P, Ingram DK, de Cabo R, Sinclair DA. Resveratrol improves health and survival of mice on a high-calorie diet. Nature, 444, 337-342 (2006).
-
(2006)
Nature
, vol.444
, pp. 337-342
-
-
Baur, J.A.1
Pearson, K.J.2
Price, N.L.3
Jamieson, H.A.4
Lerin, C.5
Kalra, A.6
Prabhu, V.V.7
Allard, J.S.8
Lopez-Lluch, G.9
Lewis, K.10
Pistell, P.J.11
Poosala, S.12
Becker, K.G.13
Boss, O.14
Gwinn, D.15
Wang, M.16
Ramaswamy, S.17
Fish-Bein, K.W.18
Spencer, R.G.19
Lakatta, E.G.20
Le Couteur, D.21
Shaw, R.J.22
Navas, P.23
Puigserver, P.24
Ingram, D.K.25
De Cabo, R.26
Sinclair, D.A.27
more..
-
3
-
-
34548857700
-
SIRT1 improves insulin sensitivity under insulin-resistant conditions by repressing PTP1B
-
Sun C, Zhang F, Ge X, Yan T, Chen X, Shi X, Zhai Q. SIRT1 improves insulin sensitivity under insulin-resistant conditions by repressing PTP1B. Cell Metab., 6, 307-319 (2007).
-
(2007)
Cell Metab.
, vol.6
, pp. 307-319
-
-
Sun, C.1
Zhang, F.2
Ge, X.3
Yan, T.4
Chen, X.5
Shi, X.6
Zhai, Q.7
-
4
-
-
47749148061
-
Stimulation of muscle cell glucose uptake by resveratrol through sirtuins and AMPK
-
Breen DM, Sanli T, Giacca A, Tsiani E. Stimulation of muscle cell glucose uptake by resveratrol through sirtuins and AMPK. Bio-chem. Biophys. Res. Commun., 374, 117-122 (2008).
-
(2008)
Bio-chem. Biophys. Res. Commun.
, vol.374
, pp. 117-122
-
-
Breen, D.M.1
Sanli, T.2
Giacca, A.3
Tsiani, E.4
-
5
-
-
84865130936
-
Resveratrol ameliorates diabetes-related metabolic changes via activation of AMP-activated protein kinase and its downstream targets in db/db mice
-
Do GM, Jung UJ, Park HJ, Kwon EY, Jeon SM, McGregor RA, Choi MS. Resveratrol ameliorates diabetes-related metabolic changes via activation of AMP-activated protein kinase and its downstream targets in db/db mice. Mol. Nutr. Food Res., 56, 1282-1291 (2012).
-
(2012)
Mol. Nutr. Food Res.
, vol.56
, pp. 1282-1291
-
-
Do, G.M.1
Jung, U.J.2
Park, H.J.3
Kwon, E.Y.4
Jeon, S.M.5
McGregor, R.A.6
Choi, M.S.7
-
6
-
-
33845399894
-
Resveratrol improves mitochon-drial function and protects against metabolic disease by activating SIRT1 and PGC-1alpha
-
Lagouge M, Argmann C, Gerhart-Hines Z, Meziane H, Lerin C, Daussin F, Messadeq N, Milne J, Lambert P, Elliott P, Geny B, Laakso M, Puigserver P, Auwerx J. Resveratrol improves mitochon-drial function and protects against metabolic disease by activating SIRT1 and PGC-1alpha. Cell, 127, 1109-1122 (2006).
-
(2006)
Cell
, vol.127
, pp. 1109-1122
-
-
Lagouge, M.1
Argmann, C.2
Gerhart-Hines, Z.3
Meziane, H.4
Lerin, C.5
Daussin, F.6
Messadeq, N.7
Milne, J.8
Lambert, P.9
Elliott, P.10
Geny, B.11
Laakso, M.12
Puigserver, P.13
Auwerx, J.14
-
7
-
-
79955611314
-
Resveratrol exerts anti-obesity effects via mechanisms involving down-regulation of adipogenic and inflammatory processes in mice
-
Kim S, Jin Y, Choi Y, Park T. Resveratrol exerts anti-obesity effects via mechanisms involving down-regulation of adipogenic and inflammatory processes in mice. Biochem. Pharmacol., 81, 1343-1351 (2011).
-
(2011)
Biochem. Pharmacol.
, vol.81
, pp. 1343-1351
-
-
Kim, S.1
Jin, Y.2
Choi, Y.3
Park, T.4
-
8
-
-
84865150391
-
Differential effects of low-dose resve-ratrol on adiposity and hepatic steatosis in diet-induced obese mice
-
Cho SJ, Jung UJ, Choi MS. Differential effects of low-dose resve-ratrol on adiposity and hepatic steatosis in diet-induced obese mice. Br. J. Nutr., 108, 2166-2175 (2012).
-
(2012)
Br. J. Nutr.
, vol.108
, pp. 2166-2175
-
-
Cho, S.J.1
Jung, U.J.2
Choi, M.S.3
-
9
-
-
80052910300
-
Resveratrol improves insulin sensitivity, reduces oxidative stress and activates the Akt pathway in type 2 diabetic patients
-
Brasnyó P, Molnár GA, Mohás M, Markó L, Laczy B, Cseh J, Mikolás E, Szijártó IA, Mérei A, Halmai R, Mészáros LG, Sümegi B, Wittmann I. Resveratrol improves insulin sensitivity, reduces oxidative stress and activates the Akt pathway in type 2 diabetic patients. Br. J. Nutr., 106, 383-389 (2011).
-
(2011)
Br. J. Nutr.
, vol.106
, pp. 383-389
-
-
Brasnyó, P.1
Molnár, G.A.2
Mohás, M.3
Markó, L.4
Laczy, B.5
Cseh, J.6
Mikolás, E.7
Szijártó, I.A.8
Mérei, A.9
Halmai, R.10
Mészáros, L.G.11
Sümegi, B.12
Wittmann, I.13
-
10
-
-
84865181393
-
Resveratrol supplementation improves glycemic control in type 2 diabetes mellitus
-
Bhatt JK, Thomas S, Nanjan MJ. Resveratrol supplementation improves glycemic control in type 2 diabetes mellitus. Nutr. Res., 32, 537-541 (2012).
-
(2012)
Nutr. Res.
, vol.32
, pp. 537-541
-
-
Bhatt, J.K.1
Thomas, S.2
Nanjan, M.J.3
-
11
-
-
84886015444
-
Review of recent data on the metabolism, biological effects, and toxicity of resveratrol in humans
-
Cottart CH, Nivet-Antoine V, Beaudeux JL. Review of recent data on the metabolism, biological effects, and toxicity of resveratrol in humans. Mol. Nutr. Food Res., 58, 7-21 (2014).
-
(2014)
Mol. Nutr. Food Res.
, vol.58
, pp. 7-21
-
-
Cottart, C.H.1
Nivet-Antoine, V.2
Beaudeux, J.L.3
-
12
-
-
0037466999
-
Postharvest UV-C-irradiated grapes as a potential source for producing stilbene-enriched red wines
-
Cantos E, Espín JC, Fernández MJ, Oliva J, Tomás-Barberán FA. Postharvest UV-C-irradiated grapes as a potential source for producing stilbene-enriched red wines. J. Agric. Food Chem., 51, 1208-1214 (2003).
-
(2003)
J. Agric. Food Chem.
, vol.51
, pp. 1208-1214
-
-
Cantos, E.1
Espín, J.C.2
Fernández, M.J.3
Oliva, J.4
Tomás-Barberán, F.A.5
-
13
-
-
78049294337
-
Extract of passion fruit (Passiflora edulis) seed containing high amounts of piceatannol inhibits melanogenesis and promotes collagen synthesis
-
Matsui Y, Sugiyama K, Kamei M, Takahashi T, Suzuki T, Katagata Y, Ito T. Extract of passion fruit (Passiflora edulis) seed containing high amounts of piceatannol inhibits melanogenesis and promotes collagen synthesis. J. Agric. Food Chem., 58, 11112-11118 (2010).
-
(2010)
J. Agric. Food Chem.
, vol.58
, pp. 11112-11118
-
-
Matsui, Y.1
Sugiyama, K.2
Kamei, M.3
Takahashi, T.4
Suzuki, T.5
Katagata, Y.6
Ito, T.7
-
14
-
-
84908284803
-
Piceatannol and its metabolite, isorhapontigenin, induce SIRT1 expression in THP-1 human monocytic cell line
-
Kawakami S, Kinoshita Y, Maruki-Uchida H, Yanae K, Sai M, Ito T. Piceatannol and its metabolite, isorhapontigenin, induce SIRT1 expression in THP-1 human monocytic cell line. Nutrients, 6, 4794-4804 (2014).
-
(2014)
Nutrients
, vol.6
, pp. 4794-4804
-
-
Kawakami, S.1
Kinoshita, Y.2
Maruki-Uchida, H.3
Yanae, K.4
Sai, M.5
Ito, T.6
-
15
-
-
79957999825
-
Identification of the strong vasorelaxing substance scirpusin B a dimer of piceatan-nol from passion fruit (Passiflora edulis) seeds
-
Sano S, Sugiyama K, Ito T, Katano Y, Ishihata A. Identification of the strong vasorelaxing substance scirpusin B, a dimer of piceatan-nol, from passion fruit (Passiflora edulis) seeds. J. Agric. Food Chem., 59, 6209-6213 (2011).
-
(2011)
J. Agric. Food Chem.
, vol.59
, pp. 6209-6213
-
-
Sano, S.1
Sugiyama, K.2
Ito, T.3
Katano, Y.4
Ishihata, A.5
-
16
-
-
84872499992
-
Effect of long-term piceatannol treatment on eNOS levels in cultured endothelial cells
-
Kinoshita Y, Kawakami S, Yanae K, Sano S, Uchida H, Inagaki H, Ito T. Effect of long-term piceatannol treatment on eNOS levels in cultured endothelial cells. Biochem. Biophys. Res. Commun., 430, 1164-1168 (2013).
-
(2013)
Biochem. Biophys. Res. Commun.
, vol.430
, pp. 1164-1168
-
-
Kinoshita, Y.1
Kawakami, S.2
Yanae, K.3
Sano, S.4
Uchida, H.5
Inagaki, H.6
Ito, T.7
-
17
-
-
84876902125
-
The protective effects of piceatannol from passion fruit (Passiflora edulis) seeds in UVB-irradiated keratinocytes
-
Maruki-Uchida H, Kurita I, Sugiyama K, Sai M, Maeda K, Ito T. The protective effects of piceatannol from passion fruit (Passiflora edulis) seeds in UVB-irradiated keratinocytes. Biol. Pharm. Bull., 36, 845-849 (2013).
-
(2013)
Biol. Pharm. Bull.
, vol.36
, pp. 845-849
-
-
Maruki-Uchida, H.1
Kurita, I.2
Sugiyama, K.3
Sai, M.4
Maeda, K.5
Ito, T.6
-
19
-
-
84901654102
-
Effects of resveratrol on gut microbiota and fat storage in a mouse model with high-fat-induced obesity
-
Qiao Y, Sun J, Xia S, Tang X, Shi Y, Le G. Effects of resveratrol on gut microbiota and fat storage in a mouse model with high-fat-induced obesity. Food Funct., 5, 1241-1249 (2014).
-
(2014)
Food Funct.
, vol.5
, pp. 1241-1249
-
-
Qiao, Y.1
Sun, J.2
Xia, S.3
Tang, X.4
Shi, Y.5
Le, G.6
-
20
-
-
84859503387
-
Piceatannol, natural polyphenolic stilbene, inhibits adipogenesis via modulation of mitotic clonal expansion and insulin receptor-dependent insulin signaling in early phase of differentiation
-
Kwon JY, Seo SG, Heo YS, Yue S, Cheng JX, Lee KW, Kim KH. Piceatannol, natural polyphenolic stilbene, inhibits adipogenesis via modulation of mitotic clonal expansion and insulin receptor-dependent insulin signaling in early phase of differentiation. J. Biol. Chem., 287, 11566-11578 (2012).
-
(2012)
J. Biol. Chem.
, vol.287
, pp. 11566-11578
-
-
Kwon, J.Y.1
Seo, S.G.2
Heo, Y.S.3
Yue, S.4
Cheng, J.X.5
Lee, K.W.6
Kim, K.H.7
-
21
-
-
84860477354
-
SIRT1 is required for AMPK activation and the beneficial effects of resve-ratrol on mitochondrial function
-
Price NL, Gomes AP, Ling AJ, Duarte FV, Martin-Montalvo A, North BJ, Agarwal B, Ye L, Ramadori G, Teodoro JS, Hubbard BP, Varela AT, Davis JG, Varamini B, Hafner A, Moaddel R, Rolo AP, Coppari R, Palmeira CM, de Cabo R, Baur JA, Sinclair DA. SIRT1 is required for AMPK activation and the beneficial effects of resve-ratrol on mitochondrial function. Cell Metab., 15, 675-690 (2012).
-
(2012)
Cell Metab.
, vol.15
, pp. 675-690
-
-
Price, N.L.1
Gomes, A.P.2
Ling, A.J.3
Duarte, F.V.4
Martin-Montalvo, A.5
North, B.J.6
Agarwal, B.7
Ye, L.8
Ramadori, G.9
Teodoro, J.S.10
Hubbard, B.P.11
Varela, A.T.12
Davis, J.G.13
Varamini, B.14
Hafner, A.15
Moaddel, R.16
Rolo, A.P.17
Coppari, R.18
Palmeira, C.M.19
De Cabo, R.20
Baur, J.A.21
Sinclair, D.A.22
more..
-
22
-
-
84861933793
-
Piceatannol, a resveratrol derivative, promotes glucose uptake through glucose transporter 4 translocation to plasma membrane in L6 myocytes and suppresses blood glucose levels in type 2 diabetic model db/db mice
-
Minakawa M, Miura Y, Yagasaki K. Piceatannol, a resveratrol derivative, promotes glucose uptake through glucose transporter 4 translocation to plasma membrane in L6 myocytes and suppresses blood glucose levels in type 2 diabetic model db/db mice. Biochem. Biophys. Res. Commun., 422, 469-475 (2012).
-
(2012)
Biochem. Biophys. Res. Commun.
, vol.422
, pp. 469-475
-
-
Minakawa, M.1
Miura, Y.2
Yagasaki, K.3
-
23
-
-
84929084604
-
Polyphenols-rich natural products for treatment of diabetes
-
Dragan S, Andrica F, Serban MC, Timar R. Polyphenols-rich natural products for treatment of diabetes. Curr. Med. Chem., 22, 14-22 (2015).
-
(2015)
Curr. Med. Chem.
, vol.22
, pp. 14-22
-
-
Dragan, S.1
Andrica, F.2
Serban, M.C.3
Timar, R.4
-
24
-
-
84896952098
-
Absorption and metabolism of piceatannol in rats
-
Setoguchi Y, Oritani Y, Ito R, Inagaki H, Maruki-Uchida H, Ichi-yanagi T, Ito T. Absorption and metabolism of piceatannol in rats. J. Agric. Food Chem., 62, 2541-2548 (2014).
-
(2014)
J. Agric. Food Chem.
, vol.62
, pp. 2541-2548
-
-
Setoguchi, Y.1
Oritani, Y.2
Ito, R.3
Inagaki, H.4
Maruki-Uchida, H.5
Ichi-Yanagi, T.6
Ito, T.7
-
25
-
-
33744930841
-
Constituents of stem bark of Callistemon rigidus showing inhibitory effects on mouse alpha-amylase activity
-
Kobayashi K, Ishihara T, Khono E, Miyase T, Yoshizaki F. Constituents of stem bark of Callistemon rigidus showing inhibitory effects on mouse alpha-amylase activity. Biol. Pharm. Bull., 29, 1275-1277 (2006).
-
(2006)
Biol. Pharm. Bull.
, vol.29
, pp. 1275-1277
-
-
Kobayashi, K.1
Ishihara, T.2
Khono, E.3
Miyase, T.4
Yoshizaki, F.5
|