Alpha-Tocopherol Alters Transcription Activities that Modulates Tumor Necrosis Factor Alpha (TNF-α) Induced Inflammatory Response in Bovine Cells

scientific article published on 5 December 2011

Alpha-Tocopherol Alters Transcription Activities that Modulates Tumor Necrosis Factor Alpha (TNF-α) Induced Inflammatory Response in Bovine Cells is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.4137/GRSB.S8303
P932PMC publication ID3256998
P698PubMed publication ID22267916
P5875ResearchGate publication ID221768927

P2093author name stringCong-Jun Li
Robert W Li
Stanislaw Kahl
Theodore H Elsasser
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Butyrate-induced apoptosis and cell cycle arrest in bovine kidney epithelial cells: involvement of caspase and proteasome pathwaysQ40483867
Alpha-Tocopherol Modulates Transcriptional Activities that Affect Essential Biological Processes in Bovine CellsQ41139234
Structure and dynamics of the kinase IKK-β--A key regulator of the NF-kappa B transcription factor.Q44928026
Alpha-tocopherol modulates Cyp3a expression, increases gamma-CEHC production, and limits tissue gamma-tocopherol accumulation in mice fed high gamma-tocopherol diets.Q45275299
Differential effects of natural and synthetic vitamin E on gene transcription in murine T lymphocytesQ46076047
Enhancement in alpha-tocopherol succinate-induced apoptosis by all-trans-retinoic acid in primary leukemic cells: role of antioxidant defense, Bax and c-myc.Q46472578
Effect of cellooligosaccharide or synbiotic feeding on growth performance, fecal condition and hormone concentrations in Holstein calves.Q51434183
P304page(s)1-14
P577publication date2011-12-05
P1433published inGene Regulation and Systems BiologyQ15753741
P1476titleAlpha-Tocopherol Alters Transcription Activities that Modulates Tumor Necrosis Factor Alpha (TNF-α) Induced Inflammatory Response in Bovine Cells
P478volume6

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cites work (P2860)
Q36148211CD47 blockade reduces ischemia/reperfusion injury and improves survival in a rat liver transplantation model
Q36074393Microarray-based gene expression profiling reveals the mediators and pathways involved in the anti-arthritic activity of Celastrus-derived Celastrol

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