Aplastic anemia (AA) is a life-threatening bone marrow failure disorder characterized by pancytopenia and hypocellular bone marrow, with immune-mediated destruction of hematopoietic stem and progenitor cells (HSPCs) playing a central role in its pathogenesis. Although immunosuppressive therapy (IST) and hematopoietic stem cell transplantation (HSCT) have improved survival, a significant proportion of patients remain refractory, relapse after treatment, or lack suitable donors for transplantation. Therefore, novel therapeutic strategies are urgently needed.
Chimeric antigen receptor T (CAR-T) cell therapy has demonstrated remarkable efficacy in hematologic malignancies. CD7 is an early surface marker of T-lineage cells and is dispensable for T cell development and function, making it a promising therapeutic target. This exploratory study aims to investigate the molecular and cellular mechanisms of CD7-CAR-T therapy in AA patients by analyzing multi-omics changes before and after treatment.
This is a prospective, single-center, single-arm, open-label study enrolling patients with relapsed or refractory severe aplastic anemia. Participants will receive autologous CD7-CAR-T cells following lymphodepletion. Multi-omics profiling, including genomics, transcriptomics, proteomics, and immunophenotyping, will be performed on patient samples before and after infusion. The primary objective is to explore dynamic molecular changes associated with treatment response and disease progression. Secondary objectives include safety evaluation and preliminary assessment of efficacy.
Findings from this study may provide mechanistic insights into CD7-CAR-T therapy in AA and inform the development of innovative immunotherapies for bone marrow failure syndromes.