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Lentivirus‐mediated bifunctional cell labeling for in vivo melanoma study
Authors:Chi‐Ping Day  John Carter  Carrie Bonomi  Dominic Esposito  Bruce Crise  Betty Ortiz‐Conde  Melinda Hollingshead  Glenn Merlino
Institution:1. Laboratory of Cancer Biology and Genetics, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA;2. Developmental Therapeutics Program, SAIC‐Frederick, Inc., National Cancer Institute‐Frederick, Frederick, MD, USA;3. Protein Expression Laboratory, Advanced Technology Program, SAIC‐Frederick, Inc., National Cancer Institute‐Frederick, Frederick, MD, USA;4. Advanced Technology Partnership Initiative, SAIC‐Frederick, Inc., National Cancer Institute‐Frederick, Frederick, MD, USA;5. Viral Technology Laboratory, Protein Expression Laboratory, Advanced Technology Program, SAIC‐Frederick, Inc., National Cancer Institute‐Frederick, Frederick, MD, USA;6. Developmental Therapeutics Program, Division of Cancer Treatment and Diagnosis, NCI‐Frederick, Frederick, MD, USA
Abstract:Lentiviral vectors (LVs) are capable of labeling a broad spectrum of cell types, achieving stable expression of transgenes. However, for in vivo studies, the duration of marker gene expression has been highly variable. We have developed a series of LVs harboring different promoters for expressing reporter gene in mouse cells. Long‐term culture and colony formation of several LV‐labeled mouse melanoma cells showed that promoters derived from mammalian house‐keeping genes, especially those encoding RNA polymerase II (Pol2) and ferritin (FerH), provided the highest consistency for reporter expression. For in vivo studies, primary B16BL6 mouse melanoma were infected with LVs whose luciferase–green fluorescence protein fusion gene (Luc/GFP) was driven by either Pol2 or FerH promoters. When transplanted into syngeneic C57BL/6 mice, Luc/GFP‐labeled B16BL6 mouse melanoma cells can be monitored by bioluminescence imaging in vivo, and GFP‐positive cells can be isolated from the tumors by fluorescence‐activated cell sorter. Pol2‐Luc/GFP labeling, while lower in activity, was more sustainable than FerH‐Luc/GFP labeling in B16BL6 over consecutive passages into mice. We conclude that Pol‐2‐Luc/GFP labeling allows long‐term in vivo monitoring and tumor cell isolation in immunocompetent mouse melanoma models.
Keywords:Bioluminescence  cell labeling  fluorescence‐activated cell sorter  green fluorescence protein  lentiviral vectors  luciferase  syngeneic mouse model
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