Related Experiment Video
Updated: Mar 15, 2026

Comparative Lesions Analysis Through a Targeted Sequencing Approach
Published on: November 5, 2019
Progressive natural killer cell dysfunction associated with alterations in subset proportions and receptor expression
Veit Bücklein1, Tina Adunka2, Anna N Mendler3
1Clinical Cooperation Group Immunotherapy, HelmholtzZentrum München, Munich, Germany; Department of Internal Medicine III, Klinikum der Universität München, Munich, Germany.
Abstract:
Immunotherapy is currently investigated as treatment option in many types of cancer. So far, results from clinical trials have demonstrated that significant benefit from immunomodulatory therapies is restricted to patients with select histologies. To broaden the potential use of these therapies, a deeper understanding for mechanisms of immunosuppression in patients with cancer is needed. Soft-tissue sarcoma (STS) presents a medical challenge with significant mortality even after multimodal treatment. We investigated function and immunophenotype of peripheral natural killer (NK) cells from chemotherapy-naive STS patients (1st line) and STS patients with progression or relapse after previous chemotherapeutic treatment (2nd line). We found NK cells from peripheral blood of both STS patient cohorts to be dysfunctional, being unable to lyse K562 target cells while NK cells from renal cell cancer (RCC) patients did not display attenuated lytic activity. Ex vivo stimulation of NK cells from STS patients with interleukin-2 plus TKD restored cytotoxic function. Furthermore, altered NK cell subset composition with reduced proportions of CD56(dim) cells could be demonstrated, increasing from 1st- to 2nd-line patients. 2nd-line patients additionally displayed significantly reduced expression of receptors (NKG2D), mediators (CD3ζ), and effectors (perforin) of NK cell activation. In these patients, we also detected fewer NK cells with CD57 expression, a marker for terminally differentiated cytotoxic NK cells. Our results elucidate mechanisms of NK cell dysfunction in STS patients with advanced disease. Markers like NKG2D, CD3ζ, and perforin are candidates to characterize NK cells with effective antitumor function for immunotherapeutic interventions.
Insights
Natural killer (NK) cells in soft-tissue sarcoma (STS) patients are dysfunctional and unable to kill cancer cells. Immunotherapy interventions targeting these NK cells show promise for advanced STS treatment.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Immunotherapy shows promise in cancer treatment but benefits are limited to specific cancer types.
- Understanding immunosuppression mechanisms is crucial to expand immunotherapy's application.
- Soft-tissue sarcoma (STS) presents a significant treatment challenge with high mortality rates.
Purpose of the Study:
- To investigate the function and immunophenotype of natural killer (NK) cells in patients with soft-tissue sarcoma (STS).
- To compare NK cell activity in chemotherapy-naive (1st line) and relapsed/progressed (2nd line) STS patients.
- To identify potential biomarkers for effective immunotherapy in advanced STS.
Main Methods:
- Peripheral blood NK cell function (cytotoxicity) was assessed in STS and renal cell cancer (RCC) patients.
- NK cell immunophenotype, including subset composition and receptor expression, was analyzed.
- Ex vivo stimulation assays using interleukin-2 plus TKD were performed to assess functional restoration.
Main Results:
- NK cells from both 1st- and 2nd-line STS patients exhibited dysfunctional cytotoxic activity compared to RCC patients.
- NK cell subset composition was altered in STS patients, with reduced CD56(dim) cells, particularly in 2nd-line patients.
- 2nd-line STS patients showed decreased expression of key NK cell activation markers (NKG2D, CD3ζ, perforin) and reduced CD57+ NK cells.
Conclusions:
- NK cell dysfunction is evident in STS patients, worsening with advanced disease and prior chemotherapy.
- Ex vivo stimulation with IL-2 plus TKD can restore NK cell cytotoxic function.
- NKG2D, CD3ζ, and perforin are potential biomarkers for identifying functional NK cells for immunotherapy in STS.

