32 results on '"Pfister, Herbert"'
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2. Supplementary Table 1 from Human Papillomavirus Load in Eyebrow Hair Follicles and Risk of Cutaneous Squamous Cell Carcinoma
3. Data from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
4. Data from Dual Role of the Antioxidant Enzyme Peroxiredoxin 6 in Skin Carcinogenesis
5. Supplementary Figure S1 from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
6. Supplementary Figure S2 from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
7. Supplementary Figure S1 from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
8. Supplementary Figure Legends from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
9. Data from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
10. Supplementary Figure 2 from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
11. Supplementary Figure S3 from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
12. Data from Dual Role of the Antioxidant Enzyme Peroxiredoxin 6 in Skin Carcinogenesis
13. Data from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
14. Supplementary Table 1 from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
15. Supplementary Figure Legends from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
16. Data from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
17. Supplementary Figure 1 from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
18. Supplementary Figure 2 from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
19. Supplementary Figure S2 from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
20. Supplementary Methods, Figure Legend from Dual Role of the Antioxidant Enzyme Peroxiredoxin 6 in Skin Carcinogenesis
21. Supplementary Figures 1 - 4 from Dual Role of the Antioxidant Enzyme Peroxiredoxin 6 in Skin Carcinogenesis
22. Supplementary Figure 1 from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
23. Supplementary Figure S3 from Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
24. Supplementary Table 1 from Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
25. Distinct Functions of Epidermal and Myeloid-Derived VEGF-A in Skin Tumorigenesis Mediated by HPV8
26. Dual Role of the Antioxidant Enzyme Peroxiredoxin 6 in Skin Carcinogenesis
27. Human Papillomavirus Load in Eyebrow Hair Follicles and Risk of Cutaneous Squamous Cell Carcinoma
28. Multicenter Study of the Association between Betapapillomavirus Infection and Cutaneous Squamous Cell Carcinoma
29. Keratinocyte-Specific Stat3 Heterozygosity Impairs Development of Skin Tumors in Human Papillomavirus 8 Transgenic Mice
30. Cutaneous Human Papillomaviruses Down-regulate AKT1, whereas AKT2 Up-regulation and Activation Associates with Tumors
31. The E7 Protein of Cutaneous Human Papillomavirus Type 8 Causes Invasion of Human Keratinocytes into the Dermis in Organotypic Cultures of Skin
32. Development of Skin Tumors in Mice Transgenic for Early Genes of Human Papillomavirus Type 8
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