cysteine and lignans

cysteine has been researched along with lignans in 6 studies

Research

Studies (6)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's3 (50.00)29.6817
2010's2 (33.33)24.3611
2020's1 (16.67)2.80

Authors

AuthorsStudies
Ikeda, T; Li, JC; Masuoka, C; Nishida, Y; Nohara, T; Okawa, M; Ono, M1
Chiu, PY; Ko, KM1
Ikeda, T; Kawabata, T; Kinjo, J; Masuoka, C; Nohara, T; Ono, M; Yamasaki, T1
Boerjan, W; Bulone, V; Fromm, J; Haustraete, J; Hertzberg, M; Ivens, B; Kim, H; Lu, F; McKee, LS; Morreel, K; Niculaes, C; Polle, A; Ralph, J; Rycke, RD; Vanholme, B1
Aćimović, JM; Jovanović, VB; Mandić, LM; Pavićević, ID; Ristić-Medić, DK; Takić, MM; Uzelac, TN1
Chen, J; Chen, M; Huang, X; Liu, J; Shangguan, M; Wang, T; Wu, S; Yang, Z; Zhang, C; Zhao, S1

Other Studies

6 other study(ies) available for cysteine and lignans

ArticleYear
Lignan derivatives and a norditerpene from the seeds of Vitex negundo.
    Journal of natural products, 2004, Volume: 67, Issue:12

    Topics: alpha-Tocopherol; Antioxidants; Biphenyl Compounds; Cysteine; Diterpenes; Drugs, Chinese Herbal; Lignans; Molecular Structure; Naphthalenes; Nuclear Magnetic Resonance, Biomolecular; Picrates; Plants, Medicinal; Seeds; Vitex

2004
Schisandrin B-induced increase in cellular glutathione level and protection against oxidant injury are mediated by the enhancement of glutathione synthesis and regeneration in AML12 and H9c2 cells.
    BioFactors (Oxford, England), 2006, Volume: 26, Issue:4

    Topics: Animals; Antifibrinolytic Agents; Antineoplastic Agents, Alkylating; Buthionine Sulfoximine; Carmustine; Cyclooctanes; Cysteine; Cytoprotection; Enzyme Inhibitors; Glutamate-Cysteine Ligase; Glutathione; Glutathione Reductase; L-Lactate Dehydrogenase; Lignans; Mice; Oxidants; Oxidation-Reduction; Polycyclic Compounds; Vitamin K 3

2006
Two new lignan glucosides from the fruit of Vitex cannabifolia.
    Journal of natural medicines, 2008, Volume: 62, Issue:1

    Topics: alpha-Tocopherol; Biphenyl Compounds; Cysteine; Flavonoids; Free Radical Scavengers; Fruit; Glucosides; Iridoids; Lignans; Magnetic Resonance Spectroscopy; Molecular Structure; Picrates; Vitex

2008
Phenylcoumaran benzylic ether reductase prevents accumulation of compounds formed under oxidative conditions in poplar xylem.
    The Plant cell, 2014, Volume: 26, Issue:9

    Topics: Amino Acids; Cell Wall; Cysteine; Down-Regulation; Enzyme Assays; Immunoblotting; Lignans; Magnetic Resonance Spectroscopy; Mass Spectrometry; Molecular Sequence Data; Oxidation-Reduction; Oxidative Stress; Oxidoreductases; Phenotype; Plants, Genetically Modified; Populus; Reproducibility of Results; Substrate Specificity; Xylem

2014
Binding of enterolactone and enterodiol to human serum albumin: increase of cysteine-34 thiol group reactivity.
    Food & function, 2016, Volume: 7, Issue:2

    Topics: 4-Butyrolactone; Antioxidants; Binding Sites; Cysteine; Humans; Lignans; Protein Binding; Serum Albumin; Spectrometry, Fluorescence; Sulfhydryl Compounds

2016
Gomisin A enhances the antitumor effect of paclitaxel by suppressing oxidative stress in ovarian cancer.
    Oncology reports, 2022, Volume: 48, Issue:5

    Topics: Animals; Carcinoma, Ovarian Epithelial; Cell Line, Tumor; Cell Proliferation; Complex Mixtures; Cyclin B1; Cyclin-Dependent Kinase 4; Cyclooctanes; Cysteine; Dioxoles; Eosine Yellowish-(YS); Female; Humans; Lignans; Mice; Ovarian Neoplasms; Oxidative Stress; Paclitaxel; Reactive Oxygen Species

2022