resveratrol has been researched along with cadmium in 12 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (16.67) | 29.6817 |
2010's | 3 (25.00) | 24.3611 |
2020's | 7 (58.33) | 2.80 |
Authors | Studies |
---|---|
Eybl, V; Kotyzova, D; Koutensky, J | 1 |
Chen, L; Gao, W; Huang, S; Liu, C; Liu, W; Sun, C; Xu, C; Zhang, H; Zhang, R | 1 |
Höckner, M; Sandbichler, AM | 1 |
Fu, B; Peng, W; Wu, H; Zhang, Y; Zhao, J | 1 |
García-Rodríguez, MDC; Mendoza-Núñez, VM; Nicolás-Méndez, T; Ortiz-Muñiz, AR | 1 |
Ge, J; Guo, K; Li, JL; Li, YH; Lv, MW; Talukder, M; Zhang, C; Zhang, Q | 1 |
Aasbrenn, M; Abd El-Aty, AM; Abdu, A; Abraha, HB; Achour, A; Acquaroni, M; Addeo, P; Agback, P; Agback, T; Al-Alwan, M; Al-Mazrou, A; Al-Mohanna, F; Aliste, M; Almquist, J; Andel, J; Ando, M; Angelov, A; Annuar, MSM; Antwi, K; Arroliga, AC; Arruda, SLM; Asch, SM; Averous, G; Ayaz, S; Ayer, GB; Bachellier, P; Ball, S; Banijamali, AR; Barden, TC; Bartoncini, S; Bedanie, G; Bellò, M; Benić, F; Berhe, GG; Bertiger, G; Beumer, JH; Bhandari, B; Bond, DS; Boules, M; Braüner Christensen, J; Brown-Johnson, C; Burgstaller, S; Cao, L; Capasso, C; Carlevato, R; Carvalho, AE; Ceci, F; Chagas, ATA; Chavan, SG; Chen, AP; Chen, HC; Chen, J; Chen, Q; Chen, Y; Chen, YF; Christ, ER; Chu, CW; Covey, JM; Coyne, GO'; Cristea, MC; Currie, MG; Dahdal, DN; Dai, L; Dang, Z; de Abreu, NL; de Carvalho, KMB; de la Plaza Llamas, R; Deandreis, D; Del Prete, S; Dennis, JA; Deur, J; Díaz Candelas, DA; Divyapriya, G; Djanani, A; Dodig, D; Doki, Y; Doroshow, JH; Dos Santos, RC; Durairaj, N; Dutra, ES; Eguchi, H; Eisterer, W; Ekmann, A; Elakkad, A; Evans, WE; Fan, W; Fang, Z; Faria, HP; Farris, SG; Fenoll, J; Fernandez-Botran, R; Flores, P; Fujita, J; Gan, L; Gandara, DR; Gao, X; Garcia, AA; Garrido, I; Gebru, HA; Gerger, A; Germano, P; Ghamande, S; Ghebeh, H; Giver Jensen, T; Go, A; Goichot, B; Goldwater, M; Gontero, P; Greil, R; Gruenberger, B; Guarneri, A; Guo, Y; Gupta, S; Haxholdt Lunn, T; Hayek, AJ; He, ML; Hellín, P; Hepprich, M; Hernández de Rodas, E; Hill, A; Hndeya, AG; Holdsworth, LM; Hookey, L; Howie, W; Hu, G; Huang, JD; Huang, SY; Hubmann, E; Hwang, SY; Imamura, H; Imperiale, A; Jiang, JQ; Jimenez, JL; Jin, F; Jin, H; Johnson, KL; Joseph, A; Juwara, L; Kalapothakis, E; Karami, H; Karayağiz Muslu, G; Kawabata, R; Kerwin, J; Khan, I; Khin, S; Kidanemariam, HG; Kinders, RJ; Klepov, VV; Koehler, S; Korger, M; Kovačić, S; Koyappayil, A; Kroll, MH; Kuban, J; Kummar, S; Kung, HF; Kurokawa, Y; Laengle, F; Lan, J; Leal, HG; Lee, MH; Lemos, KGE; Li, B; Li, G; Li, H; Li, X; Li, Y; Li, Z; Liebl, W; Lillaz, B; Lin, F; Lin, L; Lin, MCM; Lin, Y; Lin, YP; Lipton, RB; Liu, J; Liu, W; Liu, Z; Lu, J; Lu, LY; Lu, YJ; Ludwig, S; Luo, Y; Ma, L; Ma, W; Machado-Coelho, GLL; Mahmoodi, B; Mahoney, M; Mahvash, A; Mansour, FA; Mao, X; Marinho, CC; Masferrer, JL; Matana Kaštelan, Z; Melendez-Araújo, MS; Méndez-Chacón, E; Miletić, D; Miller, B; Miller, E; Miller, SB; Mo, L; Moazzen, M; Mohammadniaei, M; Montaz-Rosset, MS; Mousavi Khaneghah, A; Mühlethaler, K; Mukhopadhyay, S; Mulugeta, A; Nambi, IM; Navarro, S; Nazmara, S; Neumann, HJ; Newman, EM; Nguyen, HTT; Nicolato, AJPG; Nicolotti, DG; Nieva, JJ; Nilvebrant, J; Nocentini, A; Nugent, K; Nunez-Rodriguez, DL; Nygren, PÅ; Oberli, A; Oderda, M; Odisio, B; Oehler, L; Otludil, B; Overman, M; Özdemir, M; Pace, KA; Palm, H; Parchment, RE; Parise, R; Passera, R; Pavlovic, J; Pecherstorfer, M; Peng, Z; Pérez Coll, C; Petzer, A; Philipp-Abbrederis, K; Pichler, P; Piekarz, RL; Pilati, E; Pimentel, JDSM; Posch, F; Prager, G; Pressel, E; Profy, AT; Qi, P; Qi, Y; Qiu, C; Rajasekhar, B; Ramia, JM; Raynor, HA; Reis, VW; Reubi, JC; Ricardi, U; Riedl, JM; Romano, F; Rong, X; Rubinstein, L; Rumboldt, Z; Sabir, S; Safaeinili, N; Sala, BM; Sandoval Castillo, L; Sau, M; Sbhatu, DB; Schulte, T; Scott, V; Shan, H; Shao, Y; Shariatifar, N; Shaw, JG; She, Y; Shen, B; Shernyukov, A; Sheth, RA; Shi, B; Shi, R; Shum, KT; Silva, JC; Singh, A; Sinha, N; Sirajudeen, AAO; Slaven, J; Sliwa, T; Somme, F; Song, S; Steinberg, SM; Subramaniam, R; Suetta, C; Sui, Y; Sun, B; Sun, C; Sun, H; Sun, Y; Supuran, CT; Surger, M; Svartz, G; Takahashi, T; Takeno, A; Tam, AL; Tang, Z; Tanner, JA; Tannich, E; Taye, MG; Tekle, HT; Thomas, GJ; Tian, Y; Tobin, JV; Todd Milne, G; Tong, X; Une, C; Vela, N; Venkateshwaran, U; Villagrán de Tercero, CI; Wakefield, JD; Wampfler, R; Wan, M; Wang, C; Wang, J; Wang, L; Wang, S; Waser, B; Watt, RM; Wei, B; Wei, L; Weldemichael, MY; Wellmann, IA; Wen, A; Wild, D; Wilthoner, K; Winder, T; Wing, RR; Winget, M; Wöll, E; Wong, KL; Wong, KT; Wu, D; Wu, Q; Wu, Y; Xiang, T; Xiang, Z; Xu, F; Xu, L; Yamasaki, M; Yamashita, K; Yan, H; Yan, Y; Yang, C; Yang, H; Yang, J; Yang, N; Yang, Y; Yau, P; Yu, M; Yuan, Q; Zhan, S; Zhang, B; Zhang, H; Zhang, J; Zhang, N; Zhang, Y; Zhao, X; Zheng, BJ; Zheng, H; Zheng, W; Zhou, H; Zhou, X; Zhu, S; Zimmer, DP; Zionts, D; Zitella, A; Zlott, J; Zolfaghari, K; Zuo, D; Zur Loye, HC; Žuža, I | 1 |
Mei, W; Song, D; Wang, P; Wu, Z; Yang, L; Zhang, R; Zhu, X | 1 |
Qian, Y; Wang, M; Wang, R; Wang, S; Wei, W | 1 |
Jiang, X; Liu, G; Wang, W; Wu, G | 1 |
Chen, L; Huang, S; Ji, T; Liu, B; Liu, C; Xu, C; Yang, L; Zhang, H; Zhang, N; Zhang, R; Zhu, C | 1 |
Ge, J; Li, JL; Li, JY; Lv, MW; Sun, XH; Zhang, C | 1 |
2 review(s) available for resveratrol and cadmium
Article | Year |
---|---|
Cadmium Protection Strategies--A Hidden Trade-Off?
Topics: Animals; Antioxidants; Cadmium; Cell Line; Chelating Agents; Endoplasmic Reticulum Stress; Environmental Pollutants; Fibroblasts; Flavonoids; Glutathione; Humans; Inactivation, Metabolic; Metallothionein; Mitochondria; Mitophagy; Oxidative Stress; Resveratrol; Stilbenes; Zebrafish | 2016 |
[The role of resveratrol on heavy metal-induced oxidative stress].
Topics: Antioxidants; Cadmium; Copper; Heavy Metal Poisoning; Humans; Metals, Heavy; Oxidative Stress; Resveratrol | 2020 |
1 trial(s) available for resveratrol and cadmium
9 other study(ies) available for resveratrol and cadmium
Article | Year |
---|---|
Comparative study of natural antioxidants - curcumin, resveratrol and melatonin - in cadmium-induced oxidative damage in mice.
Topics: Animals; Antioxidants; Cadmium; Catalase; Curcumin; Disease Models, Animal; Drug Interactions; Drug Therapy, Combination; Glutathione; Glutathione Peroxidase; Lipid Peroxidation; Liver; Male; Malondialdehyde; Melatonin; Mice; Mice, Inbred Strains; Oxidative Stress; Resveratrol; Stilbenes | 2006 |
Resveratrol prevents cadmium activation of Erk1/2 and JNK pathways from neuronal cell death via protein phosphatases 2A and 5.
Topics: Animals; Cadmium; Cell Death; Cell Survival; Enzyme Activation; Humans; MAP Kinase Signaling System; Neurons; Nuclear Proteins; PC12 Cells; Phosphoprotein Phosphatases; Protein Phosphatase 2; Rats; Resveratrol; Stilbenes | 2015 |
Resveratrol rescues cadmium-induced mitochondrial injury by enhancing transcriptional regulation of PGC-1α and SOD2 via the Sirt3/FoxO3a pathway in TCMK-1 cells.
Topics: Acetylation; Animals; Anti-Inflammatory Agents, Non-Steroidal; Apoptosis; Cadmium; Cells, Cultured; Epithelial Cells; Extracellular Signal-Regulated MAP Kinases; Forkhead Box Protein O3; Gene Expression Regulation; Immunoblotting; Kidney Tubules; Mice; Mitochondria; Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha; Reactive Oxygen Species; Resveratrol; RNA Interference; Signal Transduction; Sirtuin 3; Stilbenes; Superoxide Dismutase | 2017 |
Ameliorative effects of resveratrol against cadmium-induced nephrotoxicity via modulating nuclear xenobiotic receptor response and PINK1/Parkin-mediated Mitophagy.
Topics: Animals; Antioxidants; Cadmium; Chickens; Kidney; Kidney Diseases; Male; Mitophagy; Protein Kinases; Resveratrol; Signal Transduction; Ubiquitin-Protein Ligases | 2020 |
Resveratrol protects MC3T3-E1 cells against cadmium-induced suppression of osteogenic differentiation by modulating the ERK1/2 and JNK pathways.
Topics: Alkaline Phosphatase; Animals; Bone Morphogenetic Protein 2; Cadmium; Cell Differentiation; Core Binding Factor Alpha 1 Subunit; MAP Kinase Signaling System; Mitogen-Activated Protein Kinase 3; Osteoblasts; Osteogenesis; Protective Agents; Resveratrol | 2021 |
Resveratrol reverses the cadmium-promoted migration, invasion, and epithelial-mesenchymal transition procession by regulating the expression of ZEB1.
Topics: Cadmium; Cell Line, Tumor; Cell Movement; Colorectal Neoplasms; Down-Regulation; Epithelial-Mesenchymal Transition; Humans; Neoplasm Metastasis; Resveratrol; Up-Regulation; Zinc Finger E-box-Binding Homeobox 1 | 2021 |
Resveratrol ameliorates toxic effects of cadmium on placental development in mouse placenta and human trophoblast cells.
Topics: Animals; Cadmium; Cell Line, Tumor; Female; Humans; Mice; Phosphatidylinositol 3-Kinases; Placenta; Placentation; Pregnancy; Resveratrol; Trophoblasts | 2021 |
Neuroprotection of resveratrol against cadmium-poisoning acts through dual inhibition of mTORC1/2 signaling.
Topics: Animals; Cadmium; Caspase 3; Mechanistic Target of Rapamycin Complex 1; Mechanistic Target of Rapamycin Complex 2; Mice; Neuroprotection; Phosphorylation; Polyphenols; Proto-Oncogene Proteins c-akt; Rats; Reactive Oxygen Species; Resveratrol; Sirolimus; TOR Serine-Threonine Kinases | 2022 |
Resveratrol protects against cadmium-induced cerebrum toxicity through modifications of the cytochrome P450 enzyme system in microsomes.
Topics: Cadmium; Cerebrum; Cytochrome P-450 Enzyme System; Microsomes; Oxidative Stress; Receptors, Cytoplasmic and Nuclear; Resveratrol | 2023 |