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3. Combining gene mutation with gene expression analysis improves outcome prediction in acute promyelocytic leukemia

4. NTAL is associated with treatment outcome, cell proliferation and differentiation in acute promyelocytic leukemia

5. M2 macrophages drive leukemic transformation by imposing resistance to phagocytosis and improving mitochondrial metabolism

6. Clinical significance of mitochondrial DNA content in acute promyelocytic leukaemia

7. Clinical significance of mitochondrial DNA content in acute promyelocytic leukaemia.

8. Co-occurrence of DNMT3A, NPM1, FLT3 mutations identifies a subset of acute myeloid leukemia with adverse prognosis

10. Reduced SLIT2 is Associated with Increased Cell Proliferation and Arsenic Trioxide Resistance in Acute Promyelocytic Leukemia

11. A multicenter comparative acute myeloid leukemia study: can we explain the differences in the outcomes in resource-constrained settings?

12. Integrating clinical features with genetic factors enhances survival prediction for adults with acute myeloid leukemia

13. Combining Clinical Features with Genetic Factors Improves Survival Prediction for Adults with Acute Myeloid Leukemia: Validation of a New Score System in 3 Cohorts

14. Molecular-Based Score Inspired on Metabolic Signature Improves Prognostic Stratification for Myelodysplastic Syndrome

16. Association betweenANXA2*5681 polymorphism (rs7170178) and osteonecrosis in haemoglobin SS‐genotyped patients

17. A multicenter comparative acute myeloid leukemia study: can we explain the differences in the outcomes in resource-constrained settings?

18. Co-occurrence of DNMT3A, NPM1, FLT3mutations identifies a subset of acute myeloid leukemia with adverse prognosis

19. Association between ANXA2*5681 polymorphism (rs7170178) and osteonecrosis in haemoglobin SS‐genotyped patients.

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