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Updated: May 23, 2025

Database-guided Flow-cytometry for Evaluation of Bone Marrow Myeloid Cell Maturation
Published on: November 3, 2018
Clustering Based on Innate Immunity Reveals Differential Dysregulation Based on Disease Severity in Myelodysplastic
Pedro Robson Costa Passos1,2, Andréa Alcântara Vieira1,2,3, Renata Pinheiro Martins de Melo1,2
1Laboratory of Cancer Cytogenetics, Federal University of Ceará, Fortaleza, Brazil.
None:
Myelodysplastic neoplasms (MDS) are clonal hematologic disorders characterized by ineffective hematopoiesis and a variable risk of progression to acute myeloid leukemia (AML). Despite growing recognition of the role of innate immunity in MDS pathogenesis, the precise mechanisms remain unclear. In this study, we analyzed bone marrow CD34+ expression data from 183 MDS patients to investigate the impact of the Toll-like receptor (TLR) pathway on disease progression. Six key innate immunity genes (IRAK1, IRAK2, IRAK4, MYD88, TRAF6, and NFKB1) were used to define two distinct immune clusters: a hyperactive immune cluster (HIC) and a moderate immune cluster (MIC). The HIC was enriched in 155 immune-related pathways and showed higher infiltration of activated natural killer cells and M1 macrophages, while the MIC exhibited increased infiltration of naïve B cells and mast cells. Differential expression analysis identified 35 genes that distinguished the clusters. Validation in an independent cohort of 82 patients revealed that reduced expression of these genes correlated with markers of advanced disease, including lower hemoglobin levels, lower neutrophil counts, altered cytogenetics, and higher bone marrow blast percentages. These findings underscore the critical role of immune dysregulation in MDS progression and highlight novel therapeutic opportunities within the innate immunity pathway for tailored interventions.
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