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Microfluidic Fabrication of Core-Shell Microcapsules carrying Human Pluripotent Stem Cell Spheroids
Published on: October 13, 2021
Natural killer cell encapsulation in core-shell proteinic adhesive microcapsules for persistent and localized release
Hyun Sun Choi1, Eunseo Kim1, In Ho Nam2
1Department of Chemical Engineering, Pohang University of Science and Technology, Pohang 37673, Republic of Korea.
Abstract:
Natural killer (NK) cells have attracted considerable interest as a readily available product for cancer immunotherapy, particularly because of their low incidence of graft-versus-host disease in allogeneic settings. Nevertheless, the effectiveness of this strategy is often compromised by the limited in vivo persistence of NK cells and suboptimal targeting efficiency toward malignant tissues. In this study, we engineered adhesive microcapsules laden with NK cells, comprising an aqueous core that houses NK cells and an outer shell fabricated from bioengineered mussel adhesive protein (MAP) for persistent, localized NK cell-based cancer immunotherapy. These MAP-encased NK cell microcapsules (MAP@NK MCs), prepared using droplet microfluidics, demonstrated effective encapsulation and facilitated NK cell proliferation. This can be attributed to the favorable aqueous environment for immune cells encapsulated in the core and the nutrient-transporting semipermeable nature of the MAP shell. Moreover, the MAP@NK MCs exhibited robust adhesion to biological tissues, thereby enhancing their in vivo persistence and enabling sustained release of cytotoxic soluble factors from the encapsulated NK cells, resulting in effective in vitro and ex vivo anticancer outcomes. Thus, we contend that MAP@NK MCs, featuring immune cell-favorable aqueous microenvironments and robust wet adhesion properties, offer significant potential in NK cell-based cancer treatment modalities.
Insights
Engineered microcapsules enhance natural killer (NK) cell therapy for cancer. These mussel adhesive protein microcapsules improve NK cell persistence and targeting, offering a promising new approach for localized cancer immunotherapy.
Area of Science:
- Biotechnology
- Immunotherapy
- Materials Science
Background:
- Natural killer (NK) cells are promising for cancer immunotherapy due to low graft-versus-host disease incidence.
- Current NK cell therapy faces challenges with limited in vivo persistence and suboptimal tumor targeting.
Purpose of the Study:
- To engineer adhesive microcapsules for enhanced NK cell-based cancer immunotherapy.
- To improve NK cell persistence, targeting, and anti-cancer efficacy.
Main Methods:
- Fabrication of mussel adhesive protein (MAP) microcapsules encapsulating NK cells using droplet microfluidics.
- Evaluation of NK cell encapsulation, proliferation, and cytotoxic factor release.
- Assessment of microcapsule adhesion to biological tissues and in vivo persistence.
Main Results:
- MAP-encased NK cell microcapsules (MAP@NK MCs) demonstrated effective encapsulation and supported NK cell proliferation.
- The microcapsules exhibited robust adhesion to tissues, enhancing in vivo persistence.
- Sustained release of cytotoxic factors from encapsulated NK cells led to effective in vitro and ex vivo anticancer outcomes.
Conclusions:
- MAP@NK MCs provide a favorable microenvironment for NK cells and possess strong wet adhesion properties.
- This engineered system offers significant potential for localized and persistent NK cell-based cancer treatment.
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