507 results on '"Magnani, Mauro"'
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2. Intelligent berberine-loaded erythrocytes attenuated inflammatory cytokine productions in macrophages
3. Experimental and Numerical Momentum Flux Analysis of Jets from a Hydrogen Injector
4. CD99 Expression and Prognostic Impact in Glioblastoma: A Single-Center Cohort Study
5. Supplementary Figure 5 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
6. Supplementary Figure 3 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
7. Data from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
8. Supplementary video 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
9. Supplementary Figure 9 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
10. Supplementary Figure 11 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
11. Supplementary Figure 10 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
12. Supplementary Figure 4 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
13. Supplementary Figure 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
14. Supplementary Table S1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
15. Supplementary Table S1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
16. Supplementary Figure 4 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
17. Supplementary video 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
18. Supplementary Figure 7 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
19. Supplementary Figure 3 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
20. Supplementary Figure 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
21. Supplementary video 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
22. Supplementary Figure 9 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
23. Supplementary video 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
24. Supplementary Figure 7 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
25. Supplementary Figure 6 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
26. Supplementary Figure 1 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
27. Supplementary Figure 6 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
28. Supplementary Figure 2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
29. Supplementary Figure 10 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
30. Supplementary Figure 5 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
31. Supplementary Table S2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
32. Supplementary Table S2 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
33. Supplementary Figure 8 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
34. Supplementary Figure 11 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
35. Supplementary Figure 8 from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
36. Data from Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
37. Old and new strategies in therapy and diagnosis against fungal infections
38. Characterization of Bacterial Communities Associated with Seabed Sediments in Offshore and Nearshore Sites to Improve Microbiologically Influenced Corrosion Mitigation on Marine Infrastructures
39. A Multi-Center, Randomized, Double-Blind, Placebo-Controlled Trial to Evaluate Effects of Intra-Erythrocyte Dexamethasone Sodium Phosphate (EryDex) on Neurological Symptoms in Patients with Ataxia-Telangiectasia (ATTeST)
40. Drug transport by red blood cells
41. Rapid monitoring of SARS-CoV-2 variants of concern through high-resolution melt analysis
42. Engagement of CD99 Activates Distinct Programs in Ewing Sarcoma and Macrophages
43. KRAS4A and KRAS4B in liquid biopsy of metastatic lung adenocarcinoma patients treated with Pembrolizumab or chemotherapy plus Pembrolizumab
44. Inhibition of myeloid-derived suppressor cell (MDSC) activity by redox-modulating agents restores T and B cell proliferative responses in murine AIDS
45. A synthetic thiol molecule releasing N-acetyl-l-cysteine and cysteamine drives early up-regulation of immunoproteasome subunits in the lymph nodes of mice infected with LP-BM5 leukemia retrovirus
46. Compatibility of Nucleobases Containing Pt(II) Complexes with Red Blood Cells for Possible Drug Delivery Applications
47. High-resolution melting (HRM)-based detection of polymorphisms in the malic enzyme and glucose-6-phosphate isomerase genes for Leishmania infantum genotyping
48. Assessment of a new UV-C light-emitting diode–based technology for air sanitization in indoor sports environments
49. Dexamethasone induces p21cip1/waf1 expression via FoxO3a independently of the Lamin A/C‐HDAC2 interaction in Ataxia Telangiectasia
50. Gastric cancer cell types display distinct proteasome/immunoproteasome patterns associated with migration and resistance to proteasome inhibitors
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