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Biology subjects

Belderbos, M.

Publications and source records attributed to Belderbos, M..

2 recordsLinked to original sources

Bone marrow lymphocyte dynamics during chemotherapy in pediatric acute myeloid leukemia

A better understanding of lymphocyte dynamics during current treatment regimens in pediatric AML is urgently needed to understand whether the application of bispecific T-cell-engagers (BiTEs) during periods of low tumor burden could be a viable treatment strategy. In this study, we found that induction 1, comprising mitoxantrone-etoposide-cytarabine in nearly all patients (as part of the NOPHO-DBH AML-2012 protocol), led to preserved or increased relative lymphocyte abundances alongside marked blast reduction in most cases. This was accompanied by a shift towards higher T-cell fractions, potentially creating a favorable window for BiTE therapy. The absence of a correlation between blast reduction and lymphocyte changes suggests that chemotherapy exerts differential effects on the lymphocyte compartment. Despite the heterogeneity of agents used in induction 2, more than half of patients showed a decline in lymphocyte levels. Nonetheless, the increase in T- and B-cells observed in most patients from the NOPHO-AML 2004 cohort after induction 2 suggests that lymphocyte recovery at this treatment stage is not uniformly impaired. Our transcriptomic and ex vivo functional data align with preclinical findings in adult AML and provide a basis for further investigations in in vivo models and early clinical trials. Such efforts should prioritize novel BiTE constructs targeting multiple tumor-associated (e.g., NCT05673057) or tumor-specific antigens.

cancer biology↗

Distinct Stromal Cell Populations Define the B-cell Acute Lymphoblastic Leukemia Microenvironment

The bone marrow microenvironment plays a critical role in B-cell acute lymphoblastic leukemia (B-ALL) progression, yet its cellular heterogeneity remains poorly understood. Using single-cell RNA sequencing on patient-derived of bone marrow aspirates from pediatric B-ALL patients, we identified two distinct mesenchymal stromal cell (MSC) populations: early mesenchymal progenitors and adipogenic progenitors. Spatial transcriptomic analysis further revealed the localization of these cell types and identified a third stromal population, osteogenic-lineage cells, exclusively present in the bone biopsy. Functional ex vivo assays using sorted stromal populations derived from B-ALL patient bone marrow aspirates demonstrated that both early mesenchymal and adipogenic progenitors secrete key niche-supportive factors, including CXCL12 and Osteopontin, and support leukemic cell survival and chemoresistance. Transcriptomic profiling revealed that B-ALL cells interact differently with stromal subtypes. Notably, adipogenic progenitors, but not early mesenchymal progenitors, provide support to leukemic cells through interleukin-7 and VCAM1 signaling. Stromal cells from B-ALL patients exhibited an enhanced adipogenic differentiation capacity compared to healthy controls. Moreover, co-culture experiments showed that B-ALL cells induce adipogenic differentiation in healthy MSCs through a cell contact-dependent mechanism. Adipogenic progenitors were also enriched in relapse samples, implicating them in disease progression. These findings highlight the complexity of the B-ALL microenvironment and identify different specialized stromal niches with which the leukemic cells can engage.

cancer biology↗