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4. Two main genetic pathways lead to the transformation of chronic lymphocytic leukemia to Richter syndrome

6. The genetics of Richter syndrome reveals disease heterogeneity and predicts survival after transformation

7. Genome-wide DNA profiling of marginal zone lymphomas identifies subtype-specific lesions with an impact on the clinical outcome

11. Integrated profiling of diffuse large B-cell lymphoma with 7q gain

13. Genomic lesions associated with a different clinical outcome in diffuse large B-Cell lymphoma treated with R-CHOP-21

15. Single nucleotide polymorphism-arrays provide new insights in the pathogenesis of post-transplant diffuse large B-cell lymphoma

16. La maladie de Waldenström

17. Morbus Waldenström

20. SNP-Arrays Provide New Insights Into the Pathogenesis of Richter Syndrome (RS)

21. Diffuse large B‐cell lymphoma with concordant bone marrow involvement has peculiar genomic profile and poor clinical outcome

22. The Molecular Profile of Richter Syndrome Predicts Survival From Transformation: The Role of Clonal Relationship

24. Genomic profiling of Richter's syndrome: recurrent lesions and differences with de novo diffuse large B-cell lymphomas

25. TP53 Mutations, the Most Frequent Genetic Lesion in Richter Syndrome, Represent An Independent Predictor of Survival Post Transformation.

26. Subgroups of Diffuse Large B-Cell Lymphoma (DLBCL) with Different Genomic Lesions and Clinical Course During Treatment with R-CHOP.

27. Identification of New Recurrent Multiple Small Interstitial Deletions Affecting Genes Coding for Kinases in Chronic Lymphocytic Leukemia (CLL): a New Pathogenic Mechanism?.

28. High Resolution Array-CGH Provides New Insights Into the Prognosis of Chronic Lymphocytic Leukemia (CLL): Is 8p Loss Worse Than 17p Loss?.

30. Array-CGH Identifies Both Common and Subtype-Specific Genomic Aberrations in Marginal Zone Lymphomas

31. Array-CGH Identifies Regions, Including the FOXP1 Locus, Associated with Different Clinical Outcome in Diffuse Large B-Cell Lymphomas (DLBCL) Treated with R-CHOP

33. Genomic profiling of Richter's syndrome: recurrent lesions and differences with de novo diffuse large B-cell lymphomas.

34. Bioelectrocatalytic Oxidation of Glucose by Immobilized Bacteria Gluconobacter oxydans.Evaluation of Water‐Insoluble Mediator Efficiency

35. Two main genetic pathways lead to the transformation of chronic lymphocytic leukemia to Richter syndrome

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