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Updated: Feb 10, 2026

An Organotypic High Throughput System for Characterization of Drug Sensitivity of Primary Multiple Myeloma Cells
Published on: July 15, 2015
Wnt signaling in multiple myeloma: a central player in disease with therapeutic potential
Ingrid Spaan1, Reinier A Raymakers2, Anja van de Stolpe3
1Laboratory of Translational Immunology, University Medical Center Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, the Netherlands.
Abstract:
Multiple myeloma is the second most frequent hematological malignancy in the western world and remains incurable, predominantly due to acquired drug resistance and disease relapse. The highly conserved Wnt signal transduction pathway, which plays a key role in regulating cellular processes of proliferation, differentiation, migration, and stem cell self-renewal, is associated with multiple aspects of disease. Bone homeostasis is severely disturbed by Wnt antagonists that are secreted by the malignant plasma cells in the bone marrow. In the vast majority of patients, this results in osteolytic bone disease, which is associated with bone pain and pathological fractures and was reported to facilitate disease progression. More recently, cumulative evidence also indicates the importance of intrinsic Wnt signaling in the survival of multiple myeloma cells. However, Wnt pathway-activating gene mutations could not be identified. The search for factors or processes responsible for Wnt pathway activation currently focuses on aberrant ligand levels in the bone marrow microenvironment, increased expression of Wnt transcriptional co-factors and associated micro-RNAs, and disturbed epigenetics and post-translational modification processes. Furthermore, Wnt pathway activation is associated with acquired cell adhesion-mediated resistance of multiple myeloma cells to conventional drug therapies, including doxorubicin and lenalidomide. In this review, we present an overview of the relevance of Wnt signaling in multiple myeloma and highlight the Wnt pathway as a potential therapeutic target for this disease.
Insights
Multiple myeloma, a blood cancer, involves the Wnt signaling pathway, crucial for cell growth and survival. Targeting this pathway offers a promising therapeutic strategy for treating drug-resistant multiple myeloma.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Multiple myeloma is an incurable blood cancer characterized by drug resistance and relapse.
- The Wnt signaling pathway regulates critical cellular functions and is implicated in multiple myeloma.
- Malignant plasma cells disrupt bone homeostasis via Wnt antagonists, leading to osteolytic bone disease and disease progression.
Purpose of the Study:
- To review the role of Wnt signaling in multiple myeloma pathogenesis.
- To explore the Wnt pathway as a potential therapeutic target for multiple myeloma.
Main Methods:
- Literature review of studies on Wnt signaling in multiple myeloma.
- Analysis of the association between Wnt pathway activation and drug resistance.
- Investigation of mechanisms underlying Wnt pathway dysregulation in multiple myeloma.
Main Results:
- Wnt pathway activation is crucial for multiple myeloma cell survival.
- Aberrant Wnt signaling contributes to osteolytic bone disease and disease progression.
- Wnt pathway activation is linked to acquired cell adhesion-mediated resistance to therapies like doxorubicin and lenalidomide.
Conclusions:
- The Wnt signaling pathway is a significant factor in multiple myeloma.
- Targeting the Wnt pathway presents a potential therapeutic avenue for multiple myeloma, particularly for drug-resistant cases.
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