34 results on '"Litman, Thomas"'
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2. Data from R-Loop–Mediated ssDNA Breaks Accumulate Following Short-Term Exposure to the HDAC Inhibitor Romidepsin
3. Supplementary Data from R-Loop–Mediated ssDNA Breaks Accumulate Following Short-Term Exposure to the HDAC Inhibitor Romidepsin
4. Supplementary Data from R-Loop–Mediated ssDNA Breaks Accumulate Following Short-Term Exposure to the HDAC Inhibitor Romidepsin
5. Supplementary Table 3 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
6. Supplementary Table 2 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
7. Supplementary Table 4 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
8. Supplementary Figure 1 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
9. Supplementary Figure 1 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
10. Supplementary Figure 2 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
11. Supplementary Table 1 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
12. Supplementary Methods, Figures 1-5, Table 5 from Global microRNA Analysis of the NCI-60 Cancer Cell Panel
13. Supplementary Methods, Figures 1-5, Table 5 from Global microRNA Analysis of the NCI-60 Cancer Cell Panel
14. Supplementary Figure 4 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
15. Supplementary Table 3 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
16. Supplementary Table 4 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
17. Supplementary Table 2 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
18. Supplementary Table 1 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
19. Supplementary Figure 2 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
20. Supplementary Figure 3 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
21. Supplementary Figure 4 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
22. Supplementary Figure 3 from The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
23. Supplementary Figure 1 from A Serial Analysis of Gene Expression (SAGE) Database Analysis of Chemosensitivity
24. Supplementary Figure 1 from A Serial Analysis of Gene Expression (SAGE) Database Analysis of Chemosensitivity
25. Supplementary Figure 2 from A Serial Analysis of Gene Expression (SAGE) Database Analysis of Chemosensitivity
26. Supplementary Figure 2 from A Serial Analysis of Gene Expression (SAGE) Database Analysis of Chemosensitivity
27. R-Loop–Mediated ssDNA Breaks Accumulate Following Short-Term Exposure to the HDAC Inhibitor Romidepsin
28. Adrenocortical Cancer: A Molecularly Complex Disease Where Surgery Matters
29. The Rectal Cancer microRNAome – microRNA Expression in Rectal Cancer and Matched Normal Mucosa
30. Abstract 5550: Ingenol mebutate induces an early and inflammatory wound healing response in a human in vitro 3-D skin model
31. Abstract 2620: Identification of cell context specific and pleiotropic effects of the histone deacetylase inhibitors romidepsin (depsipeptide) and vorinostat (SAHA)
32. Global microRNA Analysis of the NCI-60 Cancer Cell Panel
33. Abstract LB-357: Efficient identification of tumor of unknown primary origin by its microRNA profile
34. A Serial Analysis of Gene Expression (SAGE) Database Analysis of Chemosensitivity
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