Christina Johnson to Membrane Glycoproteins
This is a "connection" page, showing publications Christina Johnson has written about Membrane Glycoproteins.
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In vitro efficacy of AdTRAIL gene therapy of bladder cancer is enhanced by trichostatin A-mediated restoration of CAR expression and downregulation of cFLIP and Bcl-XL. Cancer Gene Ther. 2006 Mar; 13(3):281-9.
Score: 0.111
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Resistance to TRAIL is associated with defects in ceramide signaling that can be overcome by exogenous C6-ceramide without requiring down-regulation of cellular FLICE inhibitory protein. Mol Cancer Ther. 2005 Sep; 4(9):1320-7.
Score: 0.107
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Doxorubicin increases the effectiveness of Apo2L/TRAIL for tumor growth inhibition of prostate cancer xenografts. BMC Cancer. 2005 Jan 07; 5:2.
Score: 0.103
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Enhanced apoptosis of glioma cell lines is achieved by co-delivering FasL-GFP and TRAIL with a complex Ad5 vector. Cancer Gene Ther. 2003 Nov; 10(11):814-22.
Score: 0.095
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Doxorubicin pretreatment sensitizes prostate cancer cell lines to TRAIL induced apoptosis which correlates with the loss of c-FLIP expression. Cancer Biol Ther. 2002 Sep-Oct; 1(5):520-7.
Score: 0.087
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Resistance of prostate cancer cells to soluble TNF-related apoptosis-inducing ligand (TRAIL/Apo2L) can be overcome by doxorubicin or adenoviral delivery of full-length TRAIL. Cancer Gene Ther. 2002 Feb; 9(2):164-72.
Score: 0.084
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The use of Fas Ligand, TRAIL and Bax in gene therapy of prostate cancer. Curr Gene Ther. 2001 May; 1(1):123-36.
Score: 0.080
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Intracellular Fas ligand expression causes Fas-mediated apoptosis in human prostate cancer cells resistant to monoclonal antibody-induced apoptosis. Mol Ther. 2000 Oct; 2(4):348-58.
Score: 0.076
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In vitro efficacy of Fas ligand gene therapy for the treatment of bladder cancer. Cancer Gene Ther. 2005 Jan; 12(1):12-8.
Score: 0.026
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An antibody against DR4 (TRAIL-R1) in combination with doxorubicin selectively kills malignant but not normal prostate cells. Cancer Biol Ther. 2003 May-Jun; 2(3):283-90.
Score: 0.023