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Flow Cytometry-based Assay for the Monitoring of NK Cell Functions
Published on: October 30, 2016
Heightened metabolic responses in NK cells from patients with neuroblastoma suggests increased potential for
Karen Slattery1, Megan Breheny1, Elena Woods1
1School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College, Dublin, Ireland.
Insights
Neuroblastoma patients
Area of Science:
- Immunology
- Pediatric Oncology
- Cancer Metabolism
Background:
- High-risk neuroblastoma causes significant pediatric cancer mortality.
- Anti-GD2 immunotherapy improves outcomes but 5-year survival remains ~50%.
- Natural Killer (NK) cells mediate antibody-dependent cellular cytotoxicity (ADCC) in immunotherapy.
Purpose of the Study:
- Investigate the state of circulating NK cells in newly diagnosed neuroblastoma patients.
- Assess NK cell function and metabolism for potential therapeutic applications.
- Determine if patient NK cells are suitable for autologous immunotherapy.
Main Methods:
- Analysis of circulating NK cells from neuroblastoma patients at diagnosis.
- Evaluation of NK cell activation, metabolic function, and receptor expression (CD16).
- Assessment of Interferon-gamma (IFNγ) production and glycolytic responses.
Main Results:
- NK cells showed signs of in vivo activation by neuroblastoma.
- While some IFNγ dysfunction was noted, NK cell compartment remained largely intact.
- Metabolic and functional activities, including glycolytic responses and CD16 expression, were often enhanced.
Conclusions:
- Patient NK cells at diagnosis show potential for autologous use in immunotherapy.
- Enhanced NK cell glycolytic capacity is crucial for ADCC and could be a therapeutic target.
- Future neuroblastoma cell therapies could benefit from strategies to boost NK cell metabolism.
Abstract:
High risk neuroblastoma is responsible for 15% of deaths in pediatric cancer patients. The introduction of anti-GD2 immunotherapy has significantly improved outcomes but there is still only approximately a 50% 5 year event-free-survival for these children and improvements in treatments are urgently required. Anti-GD2 immunotherapy uses the patients' own immune system to kill cancer cells. In particular, Natural Killer (NK) cells kill antibody coated tumor cells by a process called antibody dependent cellular cytotoxicity (ADCC). However, our previous work has highlighted metabolic exhaustion of NK cells in circulating blood of adult cancer patients, identifying this as a potential therapeutic target. In this study, we investigated circulating NK cells in patients newly diagnosed with neuroblastoma. We found evidence of activation of NK cells in vivo by the cancer itself. While some evidence of NK cell dysfunction was observed in terms of IFNγ production, most results indicated that the NK cell compartment remained relatively intact. In fact, some aspects of metabolic and functional activities were actually increased in patients compared to controls. Glycolytic responses, which we show are crucial for ADCC, were actually enhanced in patients and CD16, the NK cell receptor that mediates ADCC, was also expressed at high levels in some patients. Overall, the data suggest that patient NK cells could be harvested at diagnosis for subsequent beneficial autologous use during immunotherapy. Enhancing glycolytic capacity of cell therapies could also be a strategic goal of future cell therapies for patients with neuroblastoma and indeed other cancers.
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