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3. Atovaquone is active against AML by upregulating the integrated stress pathway and suppressing oxidative phosphorylation

6. Addressing a Pre-Clinical Pipeline Gap: Development of the Pediatric Acute Myeloid Leukemia Patient-Derived Xenograft Program at Texas Children's Hospital at Baylor College of Medicine.

7. ALK Fusion in an Adolescent with Acute Myeloid Leukemia: A Case Report and Review of the Literature.

10. IL-10 and TNFα are associated with decreased survival in low-risk pediatric acute myeloid leukemia; a children's oncology group report.

14. Europeanpediatric Acute Leukemia (EuPAL) Registry

22. Venetoclax for Acute Myeloid Leukemia in Pediatric Patients: A Texas Medical Center Collaboration

24. Pediatric myeloid sarcoma: a single institution clinicopathologic and molecular analysis.

30. Assessing the intracellular fate of rhodium(ii) complexes.

33. Rhodium(II) Proximity-Labeling Identifies a Novel Target Site on STAT3 for Inhibitors with Potent Anti-Leukemia Activity.

43. Comparison of the Transcriptomic Signatures in Pediatric and Adult CML.

46. Stat3 Isoforms, α and β, Demonstrate Distinct Intracellular Dynamics with Prolonged Nuclear Retention of Stat3β Mapping to Its Unique C-terminal End.

47. Repurposing Atovaquone as a Therapeutic against Acute Myeloid Leukemia (AML): Combination with Conventional Chemotherapy Is Feasible and Well Tolerated.

48. Modulating TNFα activity allows transgenic IL15-Expressing CLL-1 CAR T cells to safely eliminate acute myeloid leukemia.

49. Distinct signaling events promote resistance to mitoxantrone and etoposide in pediatric AML: a Children's Oncology Group report.

50. Ligand-induced STAT3 signaling increases at relapse and is associated with outcome in pediatric acute myeloid leukemia: a report from the Children's Oncology Group.

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