A novel in vitro model of the bone marrow microenvironment in acute myeloid leukemia identifies CD44 and focal adhesion kinase as therapeutic targets to reverse cell adhesion-mediated drug resistance
Abstract: Background/Objectives: Acute myeloid leukemia (AML) is an aggressive neoplasm. Although most patients respond to induction therapy, they commonly relapse due to recurrent disease in the bone marrow microenvironment (BMME). So, the disruption of the BMME, releasing tumor cells into the peripheral circulation, has therapeutic potential. Methods: Using both primary donor AML cells and cell lines, we developed an in vitro co-culture model of the AML BMME. We used this model to identify the most effective agent(s) to block AML cell adherence and reverse adhesion-mediated treatment resistance. Results: We identified that anti-CD44 treatment significantly increased the efficacy of cytarabine. However, some AML cells remained adhered, and transcriptional analysis identified focal adhesion kinase (FAK) signaling as a contributing factor; the adhered cells showed elevated FAK phosphorylation that was reduced by the FAK inhibitor, defactinib. Importantly, we demonstrated that anti-CD44 and defactinib were highly synergistic at diminishing the adhesion of the most primitive CD34high AML cells in primary autologous co-cultures. Conclusions: Taken together, we identified anti-CD44 and defactinib as a promising therapeutic combination to release AML cells from the chemoprotective AML BMME. As anti-CD44 is already available as a recombinant humanized monoclonal antibody, the combination of this agent with defactinib could be rapidly tested in AML clinical trials
- Location
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Deutsche Nationalbibliothek Frankfurt am Main
- Extent
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Online-Ressource
- Language
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Englisch
- Notes
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Cancers. - 17, 1 (2025) , 135, ISSN: 2072-6694
- Event
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Veröffentlichung
- (where)
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Freiburg
- (who)
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Universität
- (when)
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2025
- Creator
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Ladikou, Eleni E.
Sharp, Kim
Simoes, Fabio A.
Jones, John
Burley, Thomas
Stott, Lauren
Vareli, Aimilia
Kennedy, Emma
Vause, Sophie
Chevassut, Timothy
Devi, Amarpreet
Ashworth, Iona
Ross, David M.
Hartmann, Tanja
Mitchell, Simon A.
Pepper, Chris J.
Best, Giles
Pepper, Andrea G. S.
- DOI
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10.3390/cancers17010135
- URN
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urn:nbn:de:bsz:25-freidok-2621263
- Rights
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Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
- Last update
- 15.08.2025, 5:24 AM UTC
Data provider
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.
Associated
- Ladikou, Eleni E.
- Sharp, Kim
- Simoes, Fabio A.
- Jones, John
- Burley, Thomas
- Stott, Lauren
- Vareli, Aimilia
- Kennedy, Emma
- Vause, Sophie
- Chevassut, Timothy
- Devi, Amarpreet
- Ashworth, Iona
- Ross, David M.
- Hartmann, Tanja
- Mitchell, Simon A.
- Pepper, Chris J.
- Best, Giles
- Pepper, Andrea G. S.
- Universität
Time of origin
- 2025