Designs of NKG2D-based immunotherapeutics for cancer

Jianfeng Han1, Youwei Wang2, Godfrey Chi-Fung Chan3,4

  • 1Division of Hematology, Department of Internal Medicine, College of Medicine, The Ohio State University, Columbus, OH, United States.

PubMed

Insights

Natural killer group 2 D (NKG2D) receptor-based therapies show promise for cancer treatment. This review compares NKG2D CAR and antibody designs, evaluating their preclinical and clinical effectiveness against solid tumors.

Area of Science:

  • Immunology
  • Oncology
  • Biotechnology

Background:

  • Natural killer group 2 D (NKG2D) is an activating receptor on NK cells, crucial for cancer immunosurveillance.
  • NKG2D ligands are upregulated on various cancer cells, making NKG2D a target for cancer immunotherapy.
  • Human and mouse NKG2D receptors exhibit distinct signaling pathways (DAP10 vs. DAP10/12), influencing effector functions.

Purpose of the Study:

  • To review and compare various designs of NKG2D-based chimeric antigen receptors (CARs) and antibodies.
  • To analyze the advantages and disadvantages of different NKG2D-based immunotherapeutic strategies.
  • To summarize the preclinical and clinical investigation of these NKG2D-based therapies in solid tumors.

Main Methods:

  • Literature review of published studies on NKG2D-based CARs and antibodies.
  • Comparative analysis of different CAR and antibody designs and their components (e.g., extracellular, full-length domains).
  • Examination of preclinical cancer models and clinical trial data for NKG2D-based therapies.

Main Results:

  • NKG2D CARs and antibodies have been developed using various NKG2D domains.
  • Preclinical studies predominantly focus on solid tumors, with T cells and NK cells as effector platforms.
  • Differences in human and mouse NKG2D signaling impact effector functions like IFN-γ production and cytotoxicity.

Conclusions:

  • NKG2D-based CARs and antibodies represent a promising area of cancer immunotherapy research.
  • Understanding the distinct signaling pathways is crucial for optimizing therapeutic strategies.
  • Further investigation in preclinical and clinical settings is warranted to assess the full potential of NKG2D-based treatments.

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