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Updated: Feb 22, 2026

Field-Deployable Lens-Free Imaging Platform for Rapid Label-Free Analysis of Natural Killer Cell Activation
Published on: August 8, 2025
Molecular Imaging: A Useful Tool for the Development of Natural Killer Cell-Based Immunotherapies
Prakash Gangadaran1, Byeong-Cheol Ahn1
1Department of Nuclear Medicine, Kyungpook National University School of Medicine and Hospital, Daegu, South Korea.
Abstract:
Molecular imaging is a relatively new discipline that allows visualization, characterization, and measurement of the biological processes in living subjects, including humans, at a cellular and molecular level. The interaction between cancer cells and natural killer (NK) cells is complex and incompletely understood. Despite our limited knowledge, progress in the search for immune cell therapies against cancer could be significantly improved by dynamic and non-invasive visualization and tracking of immune cells and by visualization of the response of cancer cells to therapies in preclinical and clinical studies. Molecular imaging is an essential tool for these studies, and a multimodal molecular imaging approach can be applied to monitor immune cells in vivo, for instance, to visualize therapeutic effects. In this review, we discuss the usefulness of NK cells in cancer therapies and the preclinical and clinical usefulness of molecular imaging in NK cell-based therapies. Furthermore, we discuss different molecular imaging modalities for use with NK cell-based therapies, and their preclinical and clinical applications in animal and human subjects. Molecular imaging has contributed to the development of NK cell-based therapies against cancers in animal models and to the refinement of current cell-based cancer immunotherapies. Developing sensitive and reproducible non-invasive molecular imaging technologies for in vivo NK cell monitoring and for real-time assessment of therapeutic effects will accelerate the development of NK cell therapies.
Insights
Molecular imaging enables tracking of natural killer (NK) cells in cancer therapies. This technology visualizes immune cell interactions and treatment responses, accelerating cancer immunotherapy development.
Area of Science:
- * Molecular and cellular imaging applied to biological processes in vivo.
- * Focus on cancer immunotherapy and immune cell dynamics.
Background:
- * Natural killer (NK) cell interactions with cancer cells are complex and not fully understood.
- * Current cancer immunotherapy research can benefit from advanced visualization techniques.
Purpose of the Study:
- * To review the utility of NK cells in cancer treatment.
- * To explore the role of molecular imaging in NK cell-based cancer therapies.
- * To discuss various molecular imaging modalities and their applications.
Main Methods:
- * Review of preclinical and clinical studies on NK cell therapies.
- * Discussion of multimodal molecular imaging for in vivo immune cell monitoring.
- * Examination of different imaging modalities for NK cell tracking.
Main Results:
- * Molecular imaging aids in developing NK cell therapies in animal models.
- * It refines existing cell-based cancer immunotherapies.
- * In vivo monitoring of NK cells and assessment of therapeutic effects are crucial.
Conclusions:
- * Molecular imaging is vital for advancing NK cell-based cancer therapies.
- * Non-invasive imaging technologies are key to accelerating clinical translation.
- * Further development of sensitive imaging tools will enhance immunotherapy efficacy.
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