Spatiotemporal delivery of immune-synapse-stabilizing NK cells for postoperative tumor therapy

Natural killer (NK) cells eliminate target cells by forming an immunological synapse (IS). Here, we equip NK cells with multivalent galectin-3 binding polymers that resemble prehensile “arms” to mechanically reinforce the NK-to-target tumor cell connection. These armed NK cells (a-NKs) stabilize the IS by extending average duration of cell-cell contacts. This enforced proximity drives substantial IS remodeling that enhances NK cell degranulation and cytotoxicity, thereby converting transient “kiss-and-run” interactions into a lethal “kiss of death”. In the context of postoperative therapy for breast cancer in female mice, a semi-spike patch inserted in resection cavity is designed for immediate delivery of anti-inflammatory dexamethasone agent and sustainable release of a-NKs. This ensures timely immunomodulation precedes a-NK deployment. Given a-NKs’ capacity to orchestrate T cell responses beyond direct cytotoxicity, this platform, integrating IS-stabilizing paradigm with a localized spatiotemporal delivery, coordinates adoptive a-NK therapy and adaptive immune activation to persistently act against residual tumors post-surgery. Here, Li and colleagues report that arming NK cells with surface-anchored, multivalent galectin-3 binding polymers prolongs NK-to-tumor target cell contact and enhances NK cytotoxicity; as well, authors describe that a semi-spike patch for spatiotemporal delivery of armed NK cells in the resection cavity prevents tumor recurrence post-surgery.

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Publication Details

Journal
Nature Communications
Published
2026-09-24
DOI
https://doi.org/10.1038/s41467-026-77873-7
Primary Topic
Immune Cell Function and Interaction
Type
article
Field-Weighted Citation Impact
0.00

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article

Spatiotemporal delivery of immune-synapse-stabilizing NK cells for postoperative tumor therapy

Yining Xu, Yuan Huang, Mengyang Liu, Li Li et al.
Nature Communications
Immune Cell Function and Interaction
article

Spatiotemporal delivery of immune-synapse-stabilizing NK cells for postoperative tumor therapy

Yining Xu, Yuan Huang, Mengyang Liu, Li Li, Shenao Yan, Guangsheng Du, Junlin Li, Ping Zhang, Junzhu Shi, Bo Li
article en

Abstract

Natural killer (NK) cells eliminate target cells by forming an immunological synapse (IS). Here, we equip NK cells with multivalent galectin-3 binding polymers that resemble prehensile “arms” to mechanically reinforce the NK-to-target tumor cell connection. These armed NK cells (a-NKs) stabilize the IS by extending average duration of cell-cell contacts. This enforced proximity drives substantial IS remodeling that enhances NK cell degranulation and cytotoxicity, thereby converting transient “kiss-and-run” interactions into a lethal “kiss of death”. In the context of postoperative therapy for breast cancer in female mice, a semi-spike patch inserted in resection cavity is designed for immediate delivery of anti-inflammatory dexamethasone agent and sustainable release of a-NKs. This ensures timely immunomodulation precedes a-NK deployment. Given a-NKs’ capacity to orchestrate T cell responses beyond direct cytotoxicity, this platform, integrating IS-stabilizing paradigm with a localized spatiotemporal delivery, coordinates adoptive a-NK therapy and adaptive immune activation to persistently act against residual tumors post-surgery. Here, Li and colleagues report that arming NK cells with surface-anchored, multivalent galectin-3 binding polymers prolongs NK-to-tumor target cell contact and enhances NK cytotoxicity; as well, authors describe that a semi-spike patch for spatiotemporal delivery of armed NK cells in the resection cavity prevents tumor recurrence post-surgery.

Nature Communications
University of Auckland (NZ), Sichuan University (CN), Maurice Wilkins Centre (NZ), Zhejiang University (CN)
National Natural Science Foundation of China, Department of Science and Technology of Sichuan Province, Sichuan University, Fundamental Research Funds for the Central Universities
Good health and well-being
Openalex Percentile: Top 19%
Immune Cell Function and Interaction
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