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1. MEK inhibitors block growth of lung tumours with mutations in ataxia–telangiectasia mutated

2. Supplementary Methods and Materials from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

3. Supplementary Figure 6 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

4. Supplementary Figure 4 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

5. Supplementary Figure 9 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

6. Supplementary Figure 1 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

7. Data from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

8. Supplementary Figure 8 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

9. Supplementary Figure 7 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

10. Supplementary Figure 3 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

11. Supplementary Figure 2 from Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

12. Osteopontin-CD44 Signaling in the Glioma Perivascular Niche Enhances Cancer Stem Cell Phenotypes and Promotes Aggressive Tumor Growth

14. Tumor Models (In Vivo/In Vitro)

15. Gli Activity Correlates with Tumor Grade in Platelet-Derived Growth Factor–Induced Gliomas

16. Astrocyte-Specific Expression Patterns Associated with the PDGF-Induced Glioma Microenvironment

17. Recruited Cells Can Become Transformed and Overtake PDGF-Induced Murine Gliomas In Vivo during Tumor Progression

18. Astrocyte-specific expression patterns associated with the PDGF-induced glioma microenvironment.

19. Recruited cells can become transformed and overtake PDGF-induced murine gliomas in vivo during tumor progression.

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