806 results on '"Angelastro A"'
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2. Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance.
3. A complex of Wnt/planar cell polarity signaling components Vangl1 and Fzd7 drives glioblastoma multiforme malignant properties
4. Targeting Transcription Factors ATF5, CEBPB and CEBPD with Cell-Penetrating Peptides to Treat Brain and Other Cancers
5. Enhancing coatings mechanical performance by advanced laser deposition of WCCoCr-colmonoy composites
6. Bi-metallic lattice structures manufactured via an intralayer multi-material powder bed fusion method
7. Detection Analysis for Sub-Superficial Defects in Additive Manufactured Metal Samples by Means of Flash Thermography
8. Off-axis optical system for the monitoring of the Laser Metal Deposition process
9. Thioester-mediated biocatalytic amide bond synthesis with in situ thiol recycling
10. Layer-level AISI 316L-18Ni (300) Maraging multi-material fabrication via Laser-Powder Bed Fusion
11. Cell-Penetrating CEBPB and CEBPD Leucine Zipper Decoys as Broadly Acting Anti-Cancer Agents
12. Repurposing FDA approved drugs inhibiting mitochondrial function for targeting glioma-stem like cells
13. A complex of Wnt/planar cell polarity signaling components Vangl1 and Fzd7 drives glioblastoma multiforme malignant properties
14. In-process dimensional and geometrical characterization of laser-powder bed fusion lattice structures through high-resolution optical tomography
15. Detection Analysis for Sub-Superficial Defects in Additive Manufactured Metal Samples by Means of Flash Thermography
16. Dominant-Negative ATF5 Compromises Cancer Cell Survival by Targeting CEBPB and CEBPD
17. Novel mTORC1 Inhibitors Kill Glioblastoma Stem Cells
18. PRMT1 promotes neuroblastoma cell survival through ATF5
19. Thermal monitoring of laser metal deposition strategies using infrared thermography
20. Analysing the Probability of Detection of Shallow Spherical Defects by Means of Pulsed Thermography
21. Influence of standoff distance and laser defocusing distance on direct laser metal deposition of a nickel-based superalloy
22. Multifunctional biocatalyst for conjugate reduction and reductive amination
23. Canine Glioma as a Model for Human Glioblastoma
24. Dominant-negative ATF5 rapidly depletes survivin in tumor cells.
25. A Systematic Study on Layer-Level Multi-Material Fabrication of Parts via Laser-Powder Bed Fusion Process
26. Expression and targeting of transcription factor ATF5 in dog gliomas
27. The transcription factor ATF5: role in cellular differentiation, stress responses, and cancer
28. Process Model Modularization by Subprocess Discovery.
29. Efficient Declarative-Based Process Mining Using an Enhanced Framework.
30. Efficient Declarative-Based Process Mining Using an Enhanced Framework
31. Chemoenzymatic synthesis of isotopically labelled folates
32. Suppression of planar cell polarity signaling and migration in glioblastoma by Nrdp1-mediated Dvl polyubiquitination
33. Targeting ATF5 in Cancer
34. Targeting Transcription Factors ATF5, CEBPB and CEBPD with Cell-Penetrating Peptides to Treat Brain and Other Cancers
35. In situ monitoring of direct laser metal deposition of a nickel-based superalloy using infrared thermography
36. Predicting User Preference in Pairwise Comparisons Based on Emotions and Gaze.
37. Learning and Predicting User Pairwise Preferences from Emotions and Gaze Behavior.
38. Towards a Process Mining Approach to Grammar Induction for Digital Libraries - Syntax Checking and Style Analysis.
39. Towards a Process Mining Approach to Grammar Induction for Digital Libraries : Syntax Checking and Style Analysis
40. Predicting User Preference in Pairwise Comparisons Based on Emotions and Gaze
41. A Synthetic Cell-Penetrating Dominant-Negative ATF5 Peptide Exerts Anticancer Activity against a Broad Spectrum of Treatment-Resistant Cancers
42. Regression/Eradication of gliomas in mice by a systemically-deliverable ATF5 dominant-negative peptide
43. Supplementary Figure 4 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
44. Supplementary Figure 17 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
45. FIGURE 6 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
46. Supplementary Figure 5 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
47. Supplementary Table 1 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
48. Supplementary Figure 6 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
49. Data from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
50. FIGURE 1 from Activating Transcription Factor 5 Promotes Neuroblastoma Metastasis by Inducing Anoikis Resistance
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