Miniaturized 3D bone marrow tissue model to assess response to Thrombopoietin-receptor agonists in patients.

Di Buduo, Christian A; Laurent, Pierre-Alexandre; Zaninetti, Carlo; Lordier, Larissa; Soprano, Paolo M; Ntai, Aikaterini; Barozzi, Serena; La Spada, Alberto et al. · Elife · 2021

basic_science · Level V

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Abstract

Thrombocytopenic disorders have been treated with the Thrombopoietin-receptor agonist Eltrombopag. Patients with the same apparent form of thrombocytopenia may respond differently to the treatment. We describe a miniaturized bone marrow tissue model that provides a screening bioreactor for personalized, pre-treatment response prediction to Eltrombopag for individual patients. Using silk fibroin, a 3D bone marrow niche was developed that reproduces platelet biogenesis. Hematopoietic progenitors were isolated from a small amount of peripheral blood of patients with mutations in <i>ANKRD26</i> and <i>MYH9</i> genes, who had previously received Eltrombopag. The ex vivo response was strongly correlated with the in vivo platelet response. Induced Pluripotent Stem Cells (iPSCs) from one patient with mutated <i>MYH9</i> differentiated into functional megakaryocytes that responded to Eltrombopag. Combining patient-derived cells and iPSCs with the 3D bone marrow model technology allows having a reproducible system for studying drug mechanisms and for individualized, pre-treatment selection of effective therapy in Inherited Thrombocytopenias.

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