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Studying the Effects of Tumor-Secreted Paracrine Ligands on Macrophage Activation using Co-Culture with Permeable Membrane Supports
Published on: November 28, 2019
Suppression of tumor growth through introduction of an antisense plasmid of macrophage migration inhibitory factor
Yoshinori Sasaki1, Kazuhiko Kasuya, Jun Nishihira
1Department of Surgery, Tokyo Medical University, Tokyo, Japan.
Abstract:
The potential role in cell growth of Macrophage migration inhibitory factor (MIF) has been studied, however, the mechanism of its anti-tumor effect is poorly understood. Antisense-MIF plasmids were directly injected into colon 26 tumors embedded in the back of mice. Furthermore, the role of MIF in the cell cycle was assessed with regard to retinoblastoma (Rb) protein and transcription factor E2F. Plasmids containing sense- and antisense-MIF genes were transfected into human colon cancer KM12SM cells in vitro. To examine the Rb protein-E2F pathway, plasmids containing each specific cis-acting enhancer for Rb protein and E2F with luciferase reporter genes, pRB-luc and pE2F-luc, respectively, were used. Antisense MIF treatment significantly reduced the tumor size. In vitro cell proliferation was significantly suppressed by the antisense treatment as examined by BrdU uptake. Transcriptions of Rb protein were 8.4x10(3) (RLU), 9.5x10(3) and 24.3x10(3) in the antisense MIF, PBK, and the sense MIF, respectively. As for E2F, transcription activities were 3.8x10(3), 3.6x10(3) and 7.7x10(3), respectively. These results indicate the possibility that MIF may promote tumor growth, in which the activation-inactivation mechanism of the Rb protein-E2F pathway could be profoundly involved.
Insights
Macrophage migration inhibitory factor (MIF) promotes tumor growth. Inhibiting MIF with antisense therapy reduced tumor size and cell proliferation by affecting the retinoblastoma protein-E2F pathway.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Macrophage migration inhibitory factor (MIF) is implicated in cell growth, but its anti-tumor mechanisms remain unclear.
- Understanding MIF's role is crucial for developing novel cancer therapies.
Purpose of the Study:
- To investigate the anti-tumor effects of MIF inhibition.
- To elucidate the mechanism of MIF's action on tumor growth, focusing on the retinoblastoma (Rb) protein and transcription factor E2F pathway.
Main Methods:
- In vivo studies involved direct injection of antisense-MIF plasmids into colon 26 tumors in mice.
- In vitro studies utilized human colon cancer KM12SM cells transfected with sense- and antisense-MIF genes.
- The Rb protein-E2F pathway was assessed using luciferase reporter gene assays (pRB-luc and pE2F-luc).
- Cell proliferation was measured by BrdU uptake.
Main Results:
- Antisense MIF treatment significantly reduced tumor size in vivo.
- In vitro, antisense MIF significantly suppressed cell proliferation.
- Antisense MIF treatment altered transcription levels of Rb protein and E2F, suggesting pathway involvement.
Conclusions:
- MIF may promote tumor growth through modulation of the Rb protein-E2F pathway's activation-inactivation mechanism.
- Targeting MIF offers a potential therapeutic strategy for colon cancer.
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