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Expanded natural killer cells augment the antimyeloma effect of daratumumab, bortezomib, and dexamethasone in a mouse model

Authors :
Jae-Sook Ahn
Seo-Yeon Ahn
Mihee Kim
Sung-Hoon Jung
Ga-Young Song
Tan-Huy Chu
Je-Jung Lee
Jaya Lakshmi Thangaraj
Minsuk Kwon
Hyeoung-Joon Kim
Kyung-Hwa Lee
Deok-Hwan Yang
Minh-Trang Thi Phan
Duck Cho
Manh-Cuong Vo
Source :
Cell Mol Immunol
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

The use of natural killer (NK) cells is a promising and safe immunotherapeutic approach in the field of cancer immunotherapy. However, combination treatments are required to enhance the effector functions and therapeutic efficacy of NK cells. In this study, we investigated the potential of daratumumab (Dara), bortezomib, and dexamethasone (Dvd) to augment the antitumor effects of NK cells in a multiple myeloma (MM) xenograft mouse model. NK cells were expanded and activated using the K562-OX40 ligand and membrane-bound IL-18 and IL-21 in the presence of IL-2 and IL-15 from peripheral blood mononuclear cells from MM patients. A human MM xenograft model was established using human RPMI8226-RFP-FLuc cells in NOD/SCID IL-2Rγ(null) (NSG) mice. Tumor-bearing mice were divided into six treatment groups: no treatment, expanded NK cells (eNKs), Dara, Dara + eNKs, Dvd, and Dvd + eNKs. Dvd treatment strongly enhanced the cytotoxicity of eNKs by upregulating expression of NK cell activation ligands, downregulating expression of NK cell inhibitory ligands, and promoting antibody-dependent cellular cytotoxicity. The combination of eNKs with Dvd significantly prolonged mouse survival and reduced the tumor burden and serum M-protein level. Furthermore, Dvd pretreatment significantly increased eNK persistence and homing to MM sites. Our findings suggest that Dvd treatment potentiates the antimyeloma effects of NK cells expanded and activated ex vivo by modulating immune responses in MM-bearing mice.

Details

ISSN :
20420226 and 16727681
Volume :
18
Database :
OpenAIRE
Journal :
Cellular & Molecular Immunology
Accession number :
edsair.doi.dedup.....079f6f8b113f1103e0b40de27ed9826e
Full Text :
https://doi.org/10.1038/s41423-021-00686-9