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Updated: Jun 7, 2025

Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
Natural killer cell biology and therapy in multiple myeloma: challenges and opportunities
Kamlesh Bisht1, Aimee Merino2, Rob Igarashi3
1Research and Development, Sanofi, Cambridge, MA, 02141, USA. kamlesh.bisht@sanofi.com.
Abstract:
Despite therapeutic advancements, multiple myeloma (MM) remains incurable. NK cells have emerged as a promising option for the treatment of MM. NK cells are heterogenous and typically classified based on the relative expression of their surface markers (e.g., CD56 and CD16a). These cells elicit an antitumor response in the presence of low mutational burden and without neoantigen presentation via germline-encoded activating and inhibitory receptors that identify the markers of transformation present on the MM cells. Higher NK cell activity is associated with improved survival and prognosis, whereas lower activity is associated with advanced clinical stage and disease progression in MM. Moreover, not all NK cell phenotypes contribute equally toward the anti-MM effect; higher proportions of certain NK cell phenotypes result in better outcomes. In MM, the proportion, phenotype, and function of NK cells are drastically varied between different disease stages; this is further influenced by the bone marrow microenvironment, proportion of activating and inhibitory receptors on NK cells, expression of homing receptors, and bone marrow hypoxia. Antimyeloma therapies, such as autologous stem cell transplant, immunomodulation, proteasome inhibition, and checkpoint inhibition, further modulate the NK cell landscape in the patients. Thus, NK cells can naturally work in tandem with anti-MM therapies and be strategically modulated for improved anti-MM effect. This review article describes immunotypic and phenotypic differences in NK cells along with the functional changes in homeostatic and malignant states and provides expert insights on strategies to harness the potential of NK cells for improving outcomes in MM.
Insights
Natural killer (NK) cells show promise for treating multiple myeloma (MM). Understanding NK cell diversity and function is key to improving MM treatment outcomes.
Area of Science:
- Immunology
- Hematology
- Oncology
Background:
- Multiple myeloma (MM) remains an incurable hematologic malignancy despite advances in therapy.
- Natural killer (NK) cells are crucial immune cells with a potent antitumor response against MM.
- NK cell heterogeneity and function are significantly altered in MM patients.
Purpose of the Study:
- To review the immunotypic and phenotypic differences of NK cells in MM.
- To explore the functional changes of NK cells in homeostatic and malignant states.
- To provide insights into strategies for harnessing NK cells to improve MM treatment outcomes.
Main Methods:
- Review of existing literature on NK cell biology and MM.
- Analysis of NK cell surface markers (e.g., CD56, CD16a) and their relation to MM.
- Examination of the influence of the bone marrow microenvironment and therapies on NK cells.
Main Results:
- NK cell activity and specific phenotypes correlate with MM prognosis and disease stage.
- The bone marrow microenvironment, receptor expression, and hypoxia significantly impact NK cell function in MM.
- Conventional anti-MM therapies modulate the NK cell landscape.
Conclusions:
- NK cells possess inherent anti-myeloma activity, enhanced by specific phenotypes and functions.
- NK cell function is dynamically altered by the disease microenvironment and therapeutic interventions.
- Strategic modulation of NK cells offers a promising avenue for improving MM treatment efficacy.
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