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One or more keywords matched the following items that are connected to KAMAT, ASHISH
Item TypeName
Concept X-Linked Inhibitor of Apoptosis Protein
Concept Apoptosis
Concept Apoptosis Regulatory Proteins
Concept Receptors, TNF-Related Apoptosis-Inducing Ligand
Concept TNF-Related Apoptosis-Inducing Ligand
Academic Article Curcumin potentiates the antitumor effects of Bacillus Calmette-Guerin against bladder cancer through the downregulation of NF-kappaB and upregulation of TRAIL receptors.
Academic Article Role of epithelial-to-mesenchymal transition (EMT) in drug sensitivity and metastasis in bladder cancer.
Academic Article Autophagy limits the cytotoxic effects of the AKT inhibitor AZ7328 in human bladder cancer cells.
Academic Article Blebbishields, the emergency program for cancer stem cells: sphere formation and tumorigenesis after apoptosis.
Academic Article The proteasome inhibitor bortezomib synergizes with gemcitabine to block the growth of human 253JB-V bladder tumors in vivo.
Academic Article Friend or foe? Role of peroxisome proliferator-activated receptor-gamma in human bladder cancer.
Academic Article Curcumin potentiates the apoptotic effects of chemotherapeutic agents and cytokines through down-regulation of nuclear factor-kappaB and nuclear factor-kappaB-regulated gene products in IFN-alpha-sensitive and IFN-alpha-resistant human bladder cancer cells.
Academic Article Smac mimetic enables the anticancer action of BCG-stimulated neutrophils through TNF-a but not through TRAIL and FasL.
Academic Article Vitamins C and K3 sensitize human urothelial tumors to gemcitabine.
Academic Article Combination therapy with IFN-alpha plus bortezomib induces apoptosis and inhibits angiogenesis in human bladder cancer cells.
Academic Article Smac mimetic reverses resistance to TRAIL and chemotherapy in human urothelial cancer cells.
Academic Article Activation of nerve growth factor-induced B alpha by methylene-substituted diindolylmethanes in bladder cancer cells induces apoptosis and inhibits tumor growth.
Academic Article Lenalidomide augments the efficacy of bacillus Calmette-Guerin (BCG) immunotherapy in vivo.
Academic Article A Smac mimetic augments the response of urothelial cancer cells to gemcitabine and cisplatin.
Academic Article Cytokine Panel for Response to Intravesical Therapy (CyPRIT): Nomogram of Changes in Urinary Cytokine Levels Predicts Patient Response to Bacillus Calmette-Gu?rin.
Academic Article Sequential gemcitabine and tamoxifen treatment enhances apoptosis and blocks transformation in bladder cancer cells.
Academic Article Smac mimetic with TNF-a targets Pim-1 isoforms and reactive oxygen species production to abrogate transformation from blebbishields.
Academic Article Comparison between whole mount tissue preparations and virtual tissue microarray samples for measuring Ki-67 and apoptosis indices in human bladder cancer
Academic Article CDODA-Me decreases specificity protein transcription factors and induces apoptosis in bladder cancer cells through induction of reactive oxygen species
Academic Article Sequential gemcitabine and tamoxifen treatment enhances apoptosis and blocks transformation in bladder cancer cells
Academic Article Blebbishield emergency program: an apoptotic route to cellular transformation.
Academic Article CDODA-Me decreases specificity protein transcription factors and induces apoptosis in bladder cancer cells through induction of reactive oxygen species.
Academic Article Comparison between whole mount tissue preparations and virtual tissue microarray samples for measuring Ki-67 and apoptosis indices in human bladder cancer: A cross-sectional study.
Academic Article Mitochondrial oligomers boost glycolysis in cancer stem cells to facilitate blebbishield-mediated transformation after apoptosis.
Academic Article Blebbishields and mitotic cells exhibit robust macropinocytosis.
Academic Article CF3DODA-Me induces apoptosis, degrades Sp1, and blocks the transformation phase of the blebbishield emergency program.
Academic Article The Blebbishield Emergency Program Overrides Chromosomal Instability and Phagocytosis Checkpoints in Cancer Stem Cells.
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  • Apoptosis