Related Experiment Video
Updated: Jun 20, 2026

A Three-dimensional Tissue Culture Model to Study Primary Human Bone Marrow and its Malignancies
Published on: March 8, 2014
ABO: A 3D stroma-supported culture platform enabling full human B-lymphopoiesis for disease modeling and gene therapy
Merijn Braams1, Martijn Cordes2, Sandra A Vloemans3
1Department of Immunology, Leiden University Medical Center, 2300RC Leiden, the Netherlands; Novo Nordisk Foundation Center for Stem Cell Medicine, reNEW, Leiden University Medical Center, Leiden, the Netherlands.
Abstract:
Defective B cell development underlies a large proportion of inborn errors of immunity. Progress in understanding disease mechanisms and therapy development remains limited because current human in vitro models incompletely recapitulate B-lymphopoiesis. We present a three-dimensional aggregate culture platform composed of human hematopoietic stem and progenitor cells (HSPCs) and mouse bone marrow (BM) stromal cells as an assay for efficient B cell output (ABO). ABOs support progression through pro-B, pre-B, immature, and transitional B cell stages, with a transcriptional profile and B cell receptor (BCR) repertoire diversity resembling human B cell ontogeny. ABO-derived B cells exhibit functional BCR signaling and differentiate into class-switched memory B cells and antibody-secreting cells following CD40-mediated stimulation. ABOs reproduce the B cell developmental arrest observed in HSPCs from patients with RAG1-deficient severe combined immunodeficiency (SCID), which is corrected by a RAG1 gene therapy lentiviral vector. Thus, ABOs provide a clinically relevant platform for modeling B cell immunodeficiencies and evaluating therapeutic strategies.

