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Search Results to Chapla Agarwal

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One or more keywords matched the following items that are connected to Agarwal, Chapla

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Academic Article Inhibition of NF-kappaB pathway in grape seed extract-induced apoptotic death of human prostate carcinoma DU145 cells.
Academic Article Silibinin efficacy against human hepatocellular carcinoma.
Academic Article p21 and p27 induction by silibinin is essential for its cell cycle arrest effect in prostate carcinoma cells.
Academic Article Silibinin inhibits human nonsmall cell lung cancer cell growth through cell-cycle arrest by modulating expression and function of key cell-cycle regulators.
Academic Article Grape seed extract upregulates p21 (Cip1) through redox-mediated activation of ERK1/2 and posttranscriptional regulation leading to cell cycle arrest in colon carcinoma HT29 cells.
Academic Article Silibinin suppresses growth of human colorectal carcinoma SW480 cells in culture and xenograft through down-regulation of beta-catenin-dependent signaling.
Academic Article Asiatic acid inhibits pro-angiogenic effects of VEGF and human gliomas in endothelial cell culture models.
Academic Article Silibinin synergizes with histone deacetylase and DNA methyltransferase inhibitors in upregulating E-cadherin expression together with inhibition of migration and invasion of human non-small cell lung cancer cells.
Concept Blotting, Western
Academic Article Grape seed extract efficacy against azoxymethane-induced colon tumorigenesis in A/J mice: interlinking miRNA with cytokine signaling and inflammation.
Academic Article Poly[3-(3, 4-dihydroxyphenyl) glyceric acid] from Comfrey exerts anti-cancer efficacy against human prostate cancer via targeting androgen receptor, cell cycle arrest and apoptosis.
Academic Article Silibinin inhibits prostate cancer cells- and RANKL-induced osteoclastogenesis by targeting NFATc1, NF-?B, and AP-1 activation in RAW264.7 cells.
Academic Article SNAI1 is critical for the aggressiveness of prostate cancer cells with low E-cadherin.
Academic Article Nitrogen Mustard-Induced Corneal Injury Involves DNA Damage and Pathways Related to Inflammation, Epithelial-Stromal Separation, and Neovascularization.

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