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Updated: Mar 24, 2026

Field-Deployable Lens-Free Imaging Platform for Rapid Label-Free Analysis of Natural Killer Cell Activation
Published on: August 8, 2025
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.
Abstract:
Cancer therapy via redirected lysis mediated by antibodies and antibody-derived agents relies on the availability of substantial numbers of sufficiently active immune effector cells. To monitor antitumor responses before and during therapy, sensitive methods are needed, capable of quantitating specific lysis of target cells. Here we present a chip-based single-cell cytometric assay, which uses adherent human target cells arrayed in structured micro-fields. Using a fluorescent indicator of cell death and time-lapse microscopy in an automated high-throughput mode, we measured specific target cell lysis by activated human NK cells, mediated by the therapeutic single chain triplebody SPM-2 (33-16-123). This antibody-derived tri-specific fusion protein carries binding sites for the myeloid antigens CD33 and CD123 and recruits NK cells via a binding site for the Fc-receptor CD16. Specific lysis increased with increasing triplebody concentration, and the single-cell assay was validated by direct comparison with a standard calcein-release assay. The chip-based approach allowed measurement of lysis events over 16 hours (compared to 4 hours for the calcein assay) and required far smaller numbers of primary cells. In addition, dynamic properties inaccessible to conventional methods provide new details about the activation of cytolytic effector cells by antibody-derived agents. Thus, the killing rate exhibited a dose-dependent maximum during the reaction interval. In clinical applications ex vivo monitoring of NK activity of patient's endogenous cells will likely help to choose appropriate therapy, to detect impaired or recovered NK function, and possibly to identify rare subsets of cancer cells with particular sensitivity to effector-cell mediated lysis.
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.

