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1. Chronic lymphocytic leukemia patients with chromosome 6q deletion as the sole cytogenetic abnormality display a high frequency of RPS15 mutations and have a poor prognosis.

2. Prognosis Assessment of Early-Stage Chronic Lymphocytic Leukemia: Are We Ready to Predict Clinical Evolution Without a Crystal Ball?

3. Association of Cytogenetics Aberrations and IGHV Mutations with Outcome in Chronic Lymphocytic Leukemia Patients in a Real-World Clinical Setting

4. Biological significance of monoallelic and biallelic BIRC3 loss in del(11q) chronic lymphocytic leukemia progression

6. The Five “Ws” of Frailty Assessment and Chronic Lymphocytic Leukemia: Who, What, Where, Why, and When

7. The Five “Ws” of Frailty Assessment and Chronic Lymphocytic Leukemia: Who, What, Where, Why, and When

8. TRAF3 Alterations Identify a Subgroup of Patients with Adverse Clinical Outcome and Induce Metabolic Reprogramming in Chronic Lymphocytic Leukemia

9. Chemotherapy-Based Regimes Increase Karyotype Complexity of Del(11q) CLL Cells and Impact the Response to Subsequent Ibrutinib Treatment

10. NOTCH1 Signaling Is Dysregulated in CLL By the Deubiquitinase USP28 That Is Recurrently Affected By Del(11q) and Can be Therapeutically Targeted

11. TRAF3 alterations are frequent in del-3′IGH chronic lymphocytic leukemia patients and define a specific subgroup with adverse clinical features

12. TRAF3 alterations are frequent in del‐3′ IGH chronic lymphocytic leukemia patients and define a specific subgroup with adverse clinical features

13. From biomarkers to models in the changing landscape of chronic lymphocytic leukemia: Evolve or become extinct

14. The evolving landscape of chronic lymphocytic leukemia on diagnosis, prognosis and treatment

15. TRAF3-Inactivated Chronic Lymphocytic Leukemia Cells Show an Enhanced Metabolic Plasticity That Can be Attenuated By Glutaminolysis and Mitochondrial Pyruvate Import Inhibition

16. ZMYM3 Mutations Cooperate with NOTCH1 Alterations, Reduce Histone H4 Acetylation and Promote Apoptosis Evasion in Chronic Lymphocytic Leukemia

17. From Biomarkers to Models in the Changing Landscape of Chronic Lymphocytic Leukemia: Evolve or Become Extinct

18. The evolving landscape of chronic lymphocytic leukemia on diagnosis, prognosis and treatment

19. Dissecting the role of TP53 alterations in del(11q) chronic lymphocytic leukemia

20. From biomarkers to models in the changing landscape of chronic lymphocytic leukemia: Evolve or become extinct

23. TRAF3 alterations are frequent in del‐3′IGH chronic lymphocytic leukemia patients and define a specific subgroup with adverse clinical features.

24. Dissecting the role of TP53 alterations in del(11q) chronic lymphocytic leukemia

25. Biological Impact of Monoallelic and Biallelic BIRC3 Loss in Del(11q) Chronic Lymphocytic Leukemia Progression

26. Clinical and Biological Impact of TP53 Alterations in Del(11q) Chronic Lymphocytic Leukemia

27. Chronic lymphocytic leukemia patients with IGH translocations are characterized by a distinct genetic landscape with prognostic implications

28. Chronic lymphocytic leukemia patients with <scp>IGH</scp> translocations are characterized by a distinct genetic landscape with prognostic implications

29. Chronic lymphocytic leukemia patients with IGH translocations are characterized by a distinct genetic landscape with prognostic implications

30. Prognosis assessment of early-stage chronic lymphocytic leukemia: Are we ready to predict clinical evolution without a crystal ball?

31. Chronic Lymphocytic Leukemia Patients with IGH Rearrangements Are Characterized By a Distinct Genetic Landscape with Prognostic Implications

33. Clinical and Biological Impact of TP53Alterations in Del(11q) Chronic Lymphocytic Leukemia

34. Biological Impact of Monoallelic and Biallelic BIRC3Loss in Del(11q) Chronic Lymphocytic Leukemia Progression

35. Chronic Lymphocytic Leukemia Patients with IGHRearrangements Are Characterized By a Distinct Genetic Landscape with Prognostic Implications

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