Chip-based platform for dynamic analysis of NK cell cytolysis mediated by a triplebody

Elisavet I Chatzopoulou1, Claudia C Roskopf2, Farzad Sekhavati1

  • 1Faculty of Physics and Graduate School of Quantitative Biosciences (QBM), Ludwig-Maximilians-Universität, Munich, Germany. raedler@lmu.de.

The Analyst
|March 10, 2016
PubMed

Insights

A new chip-based assay measures cancer cell killing by immune cells. This method, using the triplebody SPM-2, allows for sensitive monitoring of anti-cancer responses and potential therapy selection.

Area of Science:

  • Immunology
  • Biotechnology
  • Cancer Research

Background:

  • Antibody-based cancer therapies require sufficient active immune effector cells.
  • Sensitive methods are needed to monitor anti-tumor responses during therapy.
  • Current assays have limitations in sensitivity and duration.

Purpose of the Study:

  • To develop and validate a chip-based single-cell cytometric assay for measuring specific cancer cell lysis.
  • To assess the efficacy of the therapeutic single-chain triplebody SPM-2 in mediating NK cell-induced lysis.
  • To explore dynamic properties of effector cell activation by antibody-derived agents.

Main Methods:

  • Utilized a chip-based platform with adherent human target cells in micro-fields.
  • Employed fluorescent indicators of cell death and time-lapse microscopy for automated, high-throughput analysis.
  • Measured specific target cell lysis mediated by activated human NK cells and the triplebody SPM-2.

Main Results:

  • The chip-based assay accurately quantified specific lysis, validated against the calcein-release assay.
  • SPM-2 mediated dose-dependent NK cell lysis of target cells.
  • The assay allowed for longer measurement durations (16 hours) and required fewer primary cells than standard methods.

Conclusions:

  • The chip-based assay provides a sensitive, high-throughput method for monitoring antibody-mediated cell lysis.
  • This assay offers dynamic insights into effector cell activation by novel therapeutic agents.
  • Clinical applications include ex vivo monitoring of NK cell activity for personalized cancer therapy selection and monitoring.

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