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Suppression of the antitumoral activity of natural killer cells under indirect coculture with cancer-associated fibroblasts in a pancreatic TIME-on-chip model.
Kim, Hyun-Ah; Kim, Hyunsoo; Nam, Min-Kyung; Park, Jong Kook; Lee, Moo-Yeal; Chung, Seok; Lee, Kyung-Mi; Kuh, Hyo-Jeong.
Afiliação
  • Kim HA; Department of Biomedicine & Health Sciences, Graduate School, The Catholic University of Korea, Seoul, Republic of Korea.
  • Kim H; School of Mechanical Engineering, College of Engineering, Korea University, Seoul, Republic of Korea.
  • Nam MK; Cancer Evolution Research Center, College of Medicine, The Catholic University of Korea, Seoul, Republic of Korea.
  • Park JK; Department of Biomedical Science and Research Institute for Bioscience & Biotechnology, Hallym University, Chuncheon, 24252, Republic of Korea.
  • Lee MY; Department of Biomedical Engineering, University of North Texas, 3940 North Elm Street, Denton, TX, 76207, USA.
  • Chung S; School of Mechanical Engineering, College of Engineering, Korea University, Seoul, Republic of Korea.
  • Lee KM; Department of Biochemistry and Molecular Biology, Korea University College of Medicine, Seoul, Republic of Korea.
  • Kuh HJ; Department of Biomedicine & Health Sciences, Graduate School, The Catholic University of Korea, Seoul, Republic of Korea. hkuh@catholic.ac.kr.
Cancer Cell Int ; 23(1): 219, 2023 Sep 27.
Article em En | MEDLINE | ID: mdl-37759302
ABSTRACT

BACKGROUND:

Recently, natural killer (NK) cells emerged as a treatment option for various solid tumors. However, the immunosuppressive tumor immune microenvironment (TIME) can reduce the cytotoxic ability of NK cells in pancreatic ductal adenocarcinoma. Cancer-associated fibroblasts within the tumor stroma can suppress immune surveillance by dysregulating factors involved in the cellular activity of NK cells. Herein, the effect of activated pancreatic stellate cells (aPSCs) on NK cell-mediated anticancer efficacy under three-dimensional (3D) coculture conditions was investigated.

METHODS:

3D cocultures of PANC-1 tumor spheroids (TSs) with aPSCs and NK-92 cells in a collagen matrix were optimized to identify the occurring cellular interactions and differential cytokine profiles in conditioned media using microchannel chips. PANC-1 TSs and aPSCs were indirectly cocultured, whereas NK-92 cells were allowed to infiltrate the TS channel using convective medium flow.

RESULTS:

Coculture with aPSCs promoted PANC-1 TSs growth and suppressed the antitumor cytotoxic effects of NK-92 cells. Mutual inhibition of cellular activity without compromising migration ability was observed between aPSCs and NK-92 cells. Moreover, the reduced killing activity of NK-92 cells was found to be related with reduced granzyme B expression in NK cells.

CONCLUSIONS:

Herein, a novel TIME-on-chip model based on the coculture of PANC-1 TSs, aPSCs, and NK-92 cells was described. This model may be useful for studying the detailed mechanisms underlying NK cells dysregulation and for exploring future therapeutic interventions to restore NK cell activity in the tumor microenvironment.
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Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies / Risk_factors_studies Idioma: En Revista: Cancer Cell Int Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Tipo de estudo: Prognostic_studies / Risk_factors_studies Idioma: En Revista: Cancer Cell Int Ano de publicação: 2023 Tipo de documento: Article