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1. Protein kinase CK2α is overexpressed in classical hodgkin lymphoma, regulates key signaling pathways, PD-L1 and may represent a new target for therapy

2. CK2β Regulates Hematopoietic Stem Cell Biology and Erythropoiesis

3. Wild-Type AmpC Beta-Lactamase-Producing Enterobacterales Are a Risk Factor for Empirical Treatment Failure in Patients with Bloodstream Infection

4. Waldenström Macroglobulinemia in Very Elderly (≥75-year-old) Patients: A 33-year-retrospective Cohort Study in an Italian University Hospital

5. Immune response to BNT162b2 SARS-CoV-2 vaccine in patients living with HIV: The COVIH-DAPT study

6. CK2β-regulated signaling controls B cell differentiation and function

7. A bone-based 3D scaffold as an in-vitro model of microenvironment–DLBCL lymphoma cell interaction

8. Protein Kinase CK2 represents a new target to boost Ibrutinib and Venetoclax induced cytotoxicity in mantle cell lymphoma

9. Prevalence and Main Clinical Characteristics of Fully Vaccinated Patients Admitted to Hospital for Delta Variant COVID-19

10. Determinants of Drug Resistance in B-Cell Non-Hodgkin Lymphomas: The Case of Lymphoplasmacytic Lymphoma/Waldenström Macroglobulinemia

11. The long non-coding RNA CDK6-AS1 overexpression impacts on acute myeloid leukemia differentiation and mitochondrial dynamics

12. Protein Kinase CK1α Sustains B-Cell Receptor Signaling in Mantle Cell Lymphoma

14. Treatment Induced Cytotoxic T-Cell Modulation in Multiple Myeloma Patients

15. Procalcitonin and C-Reactive Protein/Procalcitonin Ratio as Markers of Infection in Patients With Solid Tumors

16. Actionable Strategies to Target Multiple Myeloma Plasma Cell Resistance/Resilience to Stress: Insights From 'Omics' Research

17. Role of protein kinases CK1α and CK2 in multiple myeloma: regulation of pivotal survival and stress-managing pathways

18. Targeting Protein Kinases in Blood Cancer: Focusing on CK1α and CK2

19. NK cells and CD38: Implication for (Immuno)Therapy in Plasma Cell Dyscrasias

20. Correction to: Role of protein kinases CK1α and CK2 in multiple myeloma: regulation of pivotal survival and stress-managing pathways

21. Protein kinase CK2 inhibition down modulates the NF-κB and STAT3 survival pathways, enhances the cellular proteotoxic stress and synergistically boosts the cytotoxic effect of bortezomib on multiple myeloma and mantle cell lymphoma cells.

22. Chromodomain helicase binding protein 8 (Chd8) is a novel A-kinase anchoring protein expressed during rat cardiac development.

23. Data from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

24. Supplementary Figure 4 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

25. Supplementary Figure Legends 1-4 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

26. Supplementary Figure 3 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

27. Supplementary Materials and Methods from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

28. Supplementary Figure 2 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

29. Supplementary Figure 1 from Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

30. Lights and Shade of Next-Generation Pi3k Inhibitors in Chronic Lymphocytic Leukemia

31. Identification of the true hyperdiploid multiple myeloma subset by combining conventional karyotyping and FISH analysis

32. The long non-coding RNA CDK6-AS1 overexpression impacts on acute myeloid leukemia differentiation and mitochondrial dynamics

33. Determinants of Drug Resistance in B-Cell Non-Hodgkin Lymphomas: The Case of Lymphoplasmacytic Lymphoma/Waldenström Macroglobulinemia

34. Patients Admitted for Variant Alpha COVID-19 Have Poorer Outcomes than Those Infected with the Old Strain

35. CK1α/RUNX2 Axis in the Bone Marrow Microenvironment: A Novel Therapeutic Target in Multiple Myeloma

36. Immunity to SARS-CoV-2 in a Dialyzed Patient Who Developed COVID-19 Twenty Days After the Second Dose of BNT162b2 Vaccine: a Case Report

37. Treatment Induced Cytotoxic T-Cell Modulation in Multiple Myeloma Patients

38. Targeting Protein Kinases in Blood Cancer: Focusing on CK1α and CK2

39. Procalcitonin and C-Reactive Protein/Procalcitonin Ratio as Markers of Infection in Patients With Solid Tumors

40. Targeting of HSP70/HSF1 Axis Abrogates In Vitro Ibrutinib-Resistance in Chronic Lymphocytic Leukemia

41. Lenalidomide increases human dendritic cell maturation in multiple myeloma patients targeting monocyte differentiation and modulating mesenchymal stromal cell inhibitory properties

42. Prosurvival autophagy is regulated by protein kinase CK1 alpha in multiple myeloma

43. Severe infections unrelated to neutropenia impact on overall survival in multiple myeloma patients: results of a single centre cohort study

44. The Long Noncoding RNA BALR2 Controls Novel Transcriptional Circuits Involved in Chemotherapy Sensitivity of Pediatric Acute Myeloid Leukemia (AML) Blasts

45. The small GTPase RhoU lays downstream of JAK/STAT signaling and mediates cell migration in multiple myeloma

46. PS1431 IDENTIFICATION OF THE TRUE HYPERDIPLOID MULTIPLE MYELOMA SUBSET BY COMBINING CONVENTIONAL KARYOTYPING AND FISH ANALYSIS

47. PF527 PROTEIN KINASE CK1 ALPHA INACTIVATION CAUSES MANTLE CELL LYMPHOMA GROWTH ARREST AND SYNERGISTICALLY ENHANCES IBRUTINIB CYTOTOXICITY

48. Inactivation of CK1α in multiple myeloma empowers drug cytotoxicity by affecting AKT and β-catenin survival signaling pathways

49. Protein Kinase CK2 Protects Multiple Myeloma Cells from ER Stress–Induced Apoptosis and from the Cytotoxic Effect of HSP90 Inhibition through Regulation of the Unfolded Protein Response

50. Targeting CK2-driven non-oncogene addiction in B-cell tumors

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