Publications

Detailed Information

Expansion of cytotoxic natural killer cells in multiple myeloma patients using K562 cells expressing OX40 ligand and membrane-bound IL-18 and IL-21

Cited 17 time in Web of Science Cited 16 time in Scopus
Authors

Thangaraj, Jaya Lakshmi; Minh-Trang Thi Phan; Kweon, SoonHo; Kim, Jinho; Lee, Jong-Min; Hwang, Ilwoong; Park, Jeehun; Doh, Junsang; Lee, Seung-Hwan; Manh-Cuong Vo; Tan-Huy Chu; Song, Ga-Young; Ahn, Seo-Yeon; Jung, Sung-Hoon; Kim, Hyeoung-Joon; Cho, Duck; Lee, Je-Jung

Issue Date
2022-03
Publisher
Springer Verlag
Citation
Cancer Immunology, Immunotherapy, Vol.71 No.3, pp.613-625
Abstract
Background Natural killer (NK) cell-based immunotherapy is a promising treatment approach for multiple myeloma (MM), but obtaining a sufficient number of activated NK cells remains challenging. Here, we report an improved method to generate ex vivo expanded NK (eNK) cells from MM patients based on genetic engineering of K562 cells to express OX40 ligand and membrane-bound (mb) IL-18 and IL-21. Methods K562-OX40L-mbIL-18/-21 cells were generated by transducing K562-OX40L cells with a lentiviral vector encoding mbIL-18 and mbIL-21, and these were used as feeder cells to expand NK cells from peripheral blood mononuclear cells of healthy donors (HDs) and MM patients in the presence of IL-2/IL-15. Purity, expansion rate, receptor expression, and functions of eNK cells were determined over four weeks of culture. Results NK cell expansion was enhanced by short exposure of soluble IL-18 and IL-21 with K562-OX40L cells. Co-culture of NK cells with K562-OX40L-mbIL-18/-21 cells resulted in remarkable expansion of NK cells from HDs (9,860-fold) and MM patients (4,929-fold) over the 28-day culture period. Moreover, eNK cells showed increased expression of major activation markers and enhanced cytotoxicity towards target K562, U266, and RPMI8226 cells. Conclusions Our data suggest that genetically engineered K562 cells expressing OX40L, mbIL-18, and mbIL-21 improve the expansion of NK cells, increase activation signals, and enhance their cytolytic activity towards MM cells.
ISSN
0340-7004
URI
https://hdl.handle.net/10371/202447
DOI
https://doi.org/10.1007/s00262-021-02982-9
Files in This Item:
There are no files associated with this item.
Appears in Collections:

Related Researcher

  • College of Engineering
  • Department of Materials Science & Engineering
Research Area Ex Vivo Models, Lymphocyte Biology, Smart Biomaterials

Altmetrics

Item View & Download Count

  • mendeley

Items in S-Space are protected by copyright, with all rights reserved, unless otherwise indicated.

Share