Alzheimer model for drug screening
The present invention relates to methods and reagents for drug screening. Screening methods are disclosed employing neuronal cells that have been treated so as to exhibit characteristics associated with a re-entry into the cell cycle. One treatment approach comprises transfection of neuronal cells with an expression vector comprising one or more oncogenes.
1. A mammalian neuronal cell that has been subjected to treatment so as to re-enter the cell cycle, wherein the neuronal cell is a primary neuronal cell, and wherein the neuronal cell is isolated from non-neuronal cells and further wherein said treatment comprises transfection with a combination of a ras gene and a myc gene.
2. The neuronal cell of claim 1 , wherein the cell displays increased phosphorylation of the tau protein as a result of the treatment.
3. The neuronal cell of claim 2 , wherein the mammalian neuronal cell is a murine neuronal cell.
4. The neuronal cell of claim 1 , wherein the myc gene is c-myc.
5. The neuronal cell of claim 4 , wherein the ras gene is cellular ras H .
6. The neuronal cell of claim 5 , wherein the cell displays increased phosphorylation of the tau protein as a result of the treatment.
7. The neuronal cell of claim 6 , wherein the mammalian neuronal cell is a murine neuronal cell.
8. The neuronal cell of claim 5 , wherein the mammalian neuronal cell is a murine neuronal cell.
9. The neuronal cell of claim 4 , wherein the cell displays increased phosphorylation of the tau protein as a result of the treatment.
10. The neuronal cell of claim 4 , wherein the mammalian neuronal cell is a murine neuronal cell.
11. The neuronal cell of claim 1 , wherein the mammalian neuronal cell is a murine neuronal cell.