Title : Vitamin D3 reduces the apoptotic effect of IFN-gamma but does not facilitate HLA class II inducibility in RB-defective cells.

Pub. Date : 1996 Dec 20

PMID : 9018097






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1 Vitamin D3 reduces the apoptotic effect of IFN-gamma but does not facilitate HLA class II inducibility in RB-defective cells. Cholecalciferol interferon gamma Homo sapiens
2 Our results indicated that cotreating the RB-defective S4 cells with IFN-gamma and Vitamin D3 decreased the number of cells containing subdiploid DNA compared to cells treated with IFN-gamma alone, suggesting that Vitamin D3 reduced IFN-gamma-mediated apoptosis. Cholecalciferol interferon gamma Homo sapiens
3 Our results indicated that cotreating the RB-defective S4 cells with IFN-gamma and Vitamin D3 decreased the number of cells containing subdiploid DNA compared to cells treated with IFN-gamma alone, suggesting that Vitamin D3 reduced IFN-gamma-mediated apoptosis. Cholecalciferol interferon gamma Homo sapiens
4 Our results indicated that cotreating the RB-defective S4 cells with IFN-gamma and Vitamin D3 decreased the number of cells containing subdiploid DNA compared to cells treated with IFN-gamma alone, suggesting that Vitamin D3 reduced IFN-gamma-mediated apoptosis. Cholecalciferol interferon gamma Homo sapiens
5 S4 cells cotreated with Vitamin D3 and IFN-gamma also had decreased cell detachment, further indicating that Vitamin D3 decreased IFN-gamma induced apoptosis. Cholecalciferol interferon gamma Homo sapiens
6 S4 cells cotreated with Vitamin D3 and IFN-gamma also had decreased cell detachment, further indicating that Vitamin D3 decreased IFN-gamma induced apoptosis. Cholecalciferol interferon gamma Homo sapiens
7 S4 cells cotreated with Vitamin D3 and IFN-gamma also had decreased cell detachment, further indicating that Vitamin D3 decreased IFN-gamma induced apoptosis. Cholecalciferol interferon gamma Homo sapiens