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A Novel Feeder-free System for Mass Production of Murine Natural Killer Cells In Vitro
Published on: January 9, 2018
Reduced HGF expression in subcutaneous CT26 tumor genetically modified to secrete NK4 and its possible relation with
Takeshi Kubota1, Hitoshi Fujiwara, Hisashi Amaike
1Department of Digestive Surgery, Kyoto Prefectural University of Medicine, Kamigyo-ku, Kyoto 602-0841, Japan. tkubot@koto.kpu-m.ac.jp
Abstract:
Tumor-stromal interactions, which are regulated by stromal-derived HGF and tumor-derived HGF inducers, are essential for tumor cell acquisition of such malignant properties as invasion and metastasis. NK4, a proteolytic cleavage product of HGF, has antitumor activities as both an HGF antagonist and an angiogenesis inhibitor. In this study, we examined the in vitro and in vivo behaviors of mouse colon adenocarcinoma C T26 cells modified by gene transfer to secrete NK4, and investigated the influence of NK4 on expression of HGF and HGF inducers associated with tumor-stromal interactions. In vitro cell proliferation rates of NK4 transfectant (C T26-NK4) and mock transfectant (C T26-NEO) were essentially the same, and scattering and invasion were stimulated by HGF in C T26-NEO, but not in C T26-NK4. In syngeneic BALB/c female mice, subcutaneous tumor growth of C T26-NK4 was potently suppressed, and the survival was prolonged significantly. Immunohistochemistry showed significantly decreased microvessels and increased apoptotic cells in C T26-NK4 tumor compared with control. Interestingly, HGF, strongly expressed in C T26-NEO tumor stroma, was reduced in C T26-NK4. In vitro, conditioned medium of C T26-NK4 inhibited fibroblast-derived HGF production, which was increased by that of C T26-NEO. Moreover, although similar constitutive expression levels of PDGF and TGF-alpha (both HGF inducers) were detected in C T26-NK4 and C T26-NEO in semiquantitative RT-PCR analyses, the expression was up-regulated by HGF in C T26-NEO, but not C T26-NK4. These results suggest that NK4 may exert antitumor activities not only by antagonizing HGF, but also by inhibiting HGF amplification via tumor-stromal interactions. Continuous, abundant NK4 production induced at a tumor site by gene transfer should show multiple antitumor activities with potential therapeutic benefit.
Insights
NK4 gene transfer suppressed colon tumor growth and metastasis by blocking tumor-stromal interactions. This NK4 therapy inhibited HGF signaling, reducing invasion and angiogenesis for potential therapeutic benefit.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Tumor-stromal interactions, driven by HGF and inducers, promote cancer invasion and metastasis.
- NK4, an HGF antagonist and angiogenesis inhibitor, shows potential antitumor activity.
Purpose of the Study:
- To investigate the antitumor effects of NK4 gene transfer in colon cancer cells.
- To analyze NK4's influence on HGF and HGF inducer expression in tumor-stromal interactions.
Main Methods:
- Gene transfer of NK4 into mouse colon adenocarcinoma C T26 cells (C T26-NK4).
- In vitro assays for cell proliferation, scattering, and invasion.
- In vivo studies in mice to assess tumor growth and survival.
- Immunohistochemistry and RT-PCR to analyze molecular changes.
Main Results:
- NK4 gene transfer suppressed C T26 tumor growth and prolonged survival in mice.
- NK4 reduced tumor angiogenesis and increased apoptosis.
- NK4 inhibited HGF production and HGF-induced expression of PDGF and TGF-alpha in tumor cells and stroma.
Conclusions:
- NK4 exerts antitumor effects by antagonizing HGF and inhibiting HGF amplification through tumor-stromal interactions.
- Gene transfer-mediated NK4 production offers a promising strategy for cancer therapy.
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