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Updated: Dec 15, 2025

Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
Cancer immunoediting and immune dysregulation in multiple myeloma
Kyohei Nakamura1, Mark J Smyth1, Ludovic Martinet2
1Immunology in Cancer and Infection Laboratory, QIMR Berghofer Medical Research Institute, Herston, QLD, Australia; and.
Abstract:
Avoiding immune destruction is a hallmark of cancer. Over the past few years, significant advances have been made in understanding immune dysfunction and immunosuppression in multiple myeloma (MM), and various immunotherapeutic approaches have delivered improved clinical responses. However, it is still challenging to completely eliminate malignant plasma cells (PCs) and achieve complete cure. The interplay between the immune system and malignant PCs is implicated throughout all stages of PC dyscrasias, including asymptomatic states called monoclonal gammopathy of undetermined significance and smoldering myeloma. Although the immune system effectively eliminates malignant PCs, or at least induces functional dormancy at early stages, malignant PCs eventually evade immune elimination, leading to progression to active MM, in which dysfunctional effector lymphocytes, tumor-educated immunosuppressive cells, and soluble mediators coordinately act as a barrier for antimyeloma immunity. An in-depth understanding of this dynamic process, called cancer immunoediting, will provide important insights into the immunopathology of PC dyscrasias and MM immunotherapy. Moreover, a growing body of evidence suggests that, together with nonhematopoietic stromal cells, bone marrow (BM) immune cells with unique functions support the survival of normal and malignant PCs in the BM niche, highlighting the diverse roles of immune cells beyond antimyeloma immunity. Together, the immune system critically acts as a rheostat that fine-tunes the balance between dormancy and disease progression in PC dyscrasias.
Insights
Cancer immunoediting shapes multiple myeloma (MM) progression. Understanding immune cell roles in the bone marrow niche is key to overcoming immune evasion and advancing MM immunotherapy.
Area of Science:
- Immunology
- Oncology
- Hematology
Background:
- Multiple myeloma (MM) is characterized by immune evasion, despite advances in immunotherapy.
- Malignant plasma cells (PCs) interact with the immune system throughout disease progression, from early stages to active MM.
- The bone marrow (BM) immune microenvironment supports both normal and malignant PCs.
Purpose of the Study:
- To explore the dynamic process of cancer immunoediting in PC dyscrasias.
- To elucidate the role of immune cells in MM pathogenesis and immune evasion.
- To highlight the potential of immunotherapeutic strategies targeting the immune-PC interplay.
Main Methods:
- Review of current literature on MM immunology and immunoediting.
- Analysis of the interplay between malignant PCs and immune cells in the BM niche.
- Discussion of the implications for MM immunotherapy.
Main Results:
- The immune system initially controls, but ultimately fails to eliminate, malignant PCs in MM.
- Immune dysfunction, immunosuppressive cells, and soluble mediators create barriers to anti-MM immunity.
- Bone marrow immune cells play multifaceted roles, supporting PC survival and disease progression.
Conclusions:
- Cancer immunoediting is a critical process in the natural history of PC dyscrasias and MM.
- Targeting immune evasion strategies offers promise for novel MM immunotherapies.
- The immune system acts as a crucial regulator of disease dormancy and progression in MM.
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