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.

Oncoimmunology
|September 14, 2016
PubMed

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.

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