Bone marrow immunosuppressive states associate with survival after guadecitabine and atezolizumab therapy in HMA-R/R MDS

Journal Name
Blood Neoplasia
Primary Author
Jang HJ
Author(s)
Urrutia G, Ørskov AD, Nguyen AV, Kim HJ, Nelson SA, Lee H, Burgos RS, Johnson BK, Wegener M, Becker K, Adams M, Sheridan R, Ramjan ZH
Givan SA, Zebley CC, Youngblood BA, Issa JJ, Topper MJ, Baylin SB, Baer MR, Triche TJ Jr, O'Connell CL, Grønbæk K, Jones PA
Original Publication Date

Approximately half of patients with myelodysplastic syndromes: (my-eh-lo-diss-PLASS-tik SIN-dromez) A group of disorders where the bone marrow does not work well, and the bone marrow cells fail to make enough healthy blood cells. Myelo refers to the bone marrow. Dysplastic means abnormal growth or development. People with MDS have low blood cell count for at… (MDS) relapse or are refractory: Not responsive to treatment or cure. For example, refractory anemia is a low red blood cell count that doesn't respond to standard treatments. to hypomethylating agents (HMAs) and experience poor clinical outcomes. We previously reported improved survival in a phase 1/2 clinical trial: A type of research study that tests how a drug, medical device, or treatment approach works in people. There are several types of clinical trials. Treatment trials test new treatment options. Diagnostic trials test new ways to diagnose a disease. Screening trials test the best way to detect a… combining the HMA guadecitabine with a programmed death-ligand 1 (PD-L1) inhibitor (atezolizumab) in HMA-relapsed or HMA-refractory (HMA-R/R) MDS, yet the biological features associated with durable responses to this combined epigenetic and immunotherapy approach remain unclear. Here, we performed integrated bulk and single-cell transcriptomic profiling of bone marrow: The soft, spongy tissue inside most bones. Blood cells are formed in the bone marrow. samples from patients treated on this trial to identify molecular and cellular features associated with survival. Long-term survival was associated with the presence of immunosuppressive myeloid cells and primed dendritic cells at baseline, together with therapy-induced immune reinvigoration characterized by interferon pathway activation and expansion of effector lymphocytes. In contrast, short-term survival was associated with persistent senescence-associated inflammatory programs in CD34+ bone marrow cells and elevated expression of immunosuppressive immune checkpoint molecules. These findings suggest that chronic inflammatory and senescent microenvironmental states constrain effective immune activation despite combined epigenetic and immune checkpoint therapy. Here, we identify distinct bone marrow microenvironments associated with patient survival after combined epigenetic and immune checkpoint therapy and suggest candidate biomarkers to guide patient stratification in HMA-R/R MDS.

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