Assessing bioactivity-exposure profiles of fruit and vegetable extracts in the BioMAP profiling system.
暂无分享,去创建一个
Harvey J Clewell | Melvin E Andersen | Salil N Pendse | Rebecca A Clewell | Richard S Judson | Saad Haider | Michael B. Black | Bethany B. Parks | Kamel Mansouri | Barbara A Wetmore | Keith A Houck | Patrick D McMullen | E. Berg | R. Judson | Russell S. Thomas | M. Andersen | K. Houck | Matt T. Martin | K. Mansouri | H. Clewell | R. Clewell | P. McMullen | Saad Haider | B. Wetmore | Russell S Thomas | Matthew Martin | Ellen L Berg | Michael B Black | Brian Cholewa | Bethany Parks | S. Pendse | Brian D. Cholewa
[1] S. Birindelli,et al. Molecular mechanisms underlying mancozeb-induced inhibition of TNF-alpha production. , 2006, Toxicology and applied pharmacology.
[2] T. Efferth,et al. Complex interactions between phytochemicals. The multi-target therapeutic concept of phytotherapy. , 2011, Current drug targets.
[3] Eric J Kunkel,et al. Characterization of compound mechanisms and secondary activities by BioMAP analysis. , 2006, Journal of pharmacological and toxicological methods.
[4] S. Zick,et al. Examination of the Pharmacokinetics of Active Ingredients of Ginger in Humans , 2011, The AAPS Journal.
[5] Dennis G. Watson,et al. Phytochemicals: Extraction, Isolation, and Identification of Bioactive Compounds from Plant Extracts , 2017, Plants.
[6] Melvin E. Andersen,et al. Incorporating New Technologies Into Toxicity Testing and Risk Assessment: Moving From 21st Century Vision to a Data-Driven Framework , 2013, Toxicological sciences : an official journal of the Society of Toxicology.
[7] C. Kallenberg,et al. Complement system activation in ANCA vasculitis: A translational success story? , 2015, Molecular immunology.
[8] E. Berg,et al. Building Predictive Models for Mechanism-of-Action Classification from Phenotypic Assay Data Sets , 2013, Journal of biomolecular screening.
[9] A. Holmgren,et al. A new mechanism of action for the anticancer drug mitomycin C: mechanism-based inhibition of thioredoxin reductase. , 2012, Chemical research in toxicology.
[10] A. McLean,et al. Neural-tube defects produced in Syrian hamsters by potato glycoalkaloids. , 1984, Teratology.
[11] H. Håkansson,et al. Identification of the tryptophan photoproduct 6-formylindolo[3,2-b]carbazole, in cell culture medium, as a factor that controls the background aryl hydrocarbon receptor activity. , 2005, Toxicological sciences : an official journal of the Society of Toxicology.
[12] G. Gillard,et al. DMF, but not other fumarates, inhibits NF-κB activity in vitro in an Nrf2-independent manner , 2015, Journal of Neuroimmunology.
[13] Robert J Kavlock,et al. Integration of dosimetry, exposure, and high-throughput screening data in chemical toxicity assessment. , 2012, Toxicological sciences : an official journal of the Society of Toxicology.
[14] E. Berg,et al. IFN-gamma inhibits activation-induced expression of E- and P-selectin on endothelial cells. , 1998, Journal of immunology.
[15] Takashi Yoshida,et al. Activation of the aryl hydrocarbon receptor by some vegetable constituents determined using in vitro reporter gene assay. , 2003, Biological & pharmaceutical bulletin.
[16] E. Berg,et al. Elucidating Mechanisms of Toxicity Using Phenotypic Data from Primary Human Cell Systems—A Chemical Biology Approach for Thrombosis-Related Side Effects , 2015, International journal of molecular sciences.
[17] D. Barrett,et al. Translational insight into statin-induced muscle toxicity: from cell culture to clinical studies. , 2014, Translational research : the journal of laboratory and clinical medicine.
[18] David M. Reif,et al. Update on EPA's ToxCast program: providing high throughput decision support tools for chemical risk management. , 2012, Chemical research in toxicology.
[19] R. Judson,et al. Estimating toxicity-related biological pathway altering doses for high-throughput chemical risk assessment. , 2011, Chemical research in toxicology.
[20] Sean Ekins,et al. Chemical target and pathway toxicity mechanisms defined in primary human cell systems. , 2010, Journal of pharmacological and toxicological methods.
[21] J. Bailar,et al. Toxicity Testing in the 21st Century: A Vision and a Strategy , 2010, Journal of toxicology and environmental health. Part B, Critical reviews.
[22] A. Brouwer,et al. Activation of the Ah receptor by extracts of dietary herbal supplements, vegetables, and fruits. , 2003, Journal of agricultural and food chemistry.
[23] F. Kassie,et al. Genotoxic effects of crude juices from Brassica vegetables and juices and extracts from phytopharmaceutical preparations and spices of cruciferous plants origin in bacterial and mammalian cells. , 1996, Chemico-biological interactions.
[24] Melvin E. Andersen,et al. Incorporating High-Throughput Exposure Predictions With Dosimetry-Adjusted In Vitro Bioactivity to Inform Chemical Toxicity Testing , 2015, Toxicological sciences : an official journal of the Society of Toxicology.
[25] Harvey J Clewell,et al. Relative impact of incorporating pharmacokinetics on predicting in vivo hazard and mode of action from high-throughput in vitro toxicity assays. , 2013, Toxicological sciences : an official journal of the Society of Toxicology.
[26] V. Krajka-Kuźniak,et al. The activation of the Nrf2/ARE pathway in HepG2 hepatoma cells by phytochemicals and subsequent modulation of phase II and antioxidant enzyme expression , 2015, Journal of Physiology and Biochemistry.
[27] Agnes L Karmaus,et al. Evaluation of food-relevant chemicals in the ToxCast high-throughput screening program. , 2016, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[28] Richard S. Judson,et al. Profiling Bioactivity of the ToxCast Chemical Library Using BioMAP Primary Human Cell Systems , 2009, Journal of biomolecular screening.
[29] Harvey J Clewell,et al. Quantitative in vitro to in vivo extrapolation of cell-based toxicity assay results , 2012, Critical reviews in toxicology.
[30] Robert J Kavlock,et al. Phenotypic screening of the ToxCast chemical library to classify toxic and therapeutic mechanisms , 2014, Nature Biotechnology.
[31] Amit Kumar Srivastava,et al. Mancozeb-induced genotoxicity and apoptosis in cultured human lymphocytes. , 2012, Life sciences.
[32] Vladimir Vapnik,et al. Support-vector networks , 2004, Machine Learning.
[33] An in vitro screening paradigm for extracts of whole foods for detection of potential toxicants. , 2002, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.