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Microarrayed human bone marrow organoids for modeling blood stem cell dynamics

Giger, Sonja; Hofer, Moritz; Miljkovic-Licina, Marijana; Hoehnel, Silke; Brandenberg, Nathalie; Guiet, Romain; Ehrbar, Martin; Kleiner, Esther; Gegenschatz-Schmid, Katharina; Matthes, Thomas; Lutolf, Matthias P (2022). Microarrayed human bone marrow organoids for modeling blood stem cell dynamics. APL bioengineering, 6:036101.

Abstract

In many leukemia patients, a poor prognosis is attributed either to the development of chemotherapy resistance by leukemic stem cells (LSCs) or to the inefficient engraftment of transplanted hematopoietic stem/progenitor cells (HSPCs) into the bone marrow (BM). Here, we build a 3D in vitro model system of bone marrow organoids (BMOs) that recapitulate several structural and cellular components of native BM. These organoids are formed in a high-throughput manner from the aggregation of endothelial and mesenchymal cells within hydrogel microwells. Accordingly, the mesenchymal compartment shows partial maintenance of its self-renewal and multilineage potential, while endothelial cells self-organize into an interconnected vessel-like network. Intriguingly, such an endothelial compartment enhances the recruitment of HSPCs in a chemokine ligand/receptor-dependent manner, reminiscent of HSPC homing behavior in vivo. Additionally, we also model LSC migration and nesting in BMOs, thus highlighting the potential of this system as a well accessible and scalable preclinical model for candidate drug screening and patient-specific assays.

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:04 Faculty of Medicine > University Hospital Zurich > Clinic for Obstetrics
Dewey Decimal Classification:610 Medicine & health
Scopus Subject Areas:Physical Sciences > Bioengineering
Life Sciences > Biophysics
Physical Sciences > Biomaterials
Physical Sciences > Biomedical Engineering
Language:English
Date:24 March 2022
Deposited On:21 Sep 2022 17:40
Last Modified:27 Dec 2024 02:42
Publisher:American Institute of Physics
ISSN:2473-2877
OA Status:Gold
Free access at:PubMed ID. An embargo period may apply.
Publisher DOI:https://doi.org/10.1063/5.0092860
PubMed ID:35818479
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  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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