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A DNA Aptamer Targeting Galectin-1 as a Novel Immunotherapeutic Strategy for Lung Cancer
Yao-Tsung Tsai1, Chen-Hsien Liang2, Jin-Hsuan Yu3
1Institute of Basic Medical Sciences, College of Medicine, National Cheng Kung University, Tainan, Taiwan.
Abstract:
Galectin-1 (Gal-1) is a pleiotropic homodimeric β-galactoside-binding protein with a single carbohydrate recognition domain. It has been implicated in several biological processes that are important during tumor progression. Several lines of evidence have indicated that Gal-1 is involved in cancer immune escape and induces T cell apoptosis. These observations all emphasized Gal-1 as a novel target for cancer immunotherapy. Here, we developed a novel Gal-1-targeting DNA aptamer (AP-74 M-545) and demonstrated its antitumor effect by restoring immune function. AP-74 M-545 binds to Gal-1 with high affinity. AP-74 M-545 targets tumors in murine tumor models but suppresses tumor growth only in immunocompetent C57BL/6 mice, not in immunocompromised non-obese diabetic (NOD)/severe combined immunodeficiency (SCID) mice. Immunohistochemistry revealed increased CD4+ and CD8+ T cells in AP-74 M-545-treated tumor tissues. AP-74 M-545 suppresses T cell apoptosis by blocking the binding of Gal-1 to CD45, the main receptor and apoptosis mediator of Gal-1 on T cells. Collectively, our data suggest that the Gal-1 aptamer suppresses tumor growth by blocking the interaction between Gal-1 and CD45 to rescue T cells from apoptosis and restores T cell-mediated immunity. These results indicate that AP-74 M-545 may be a potential strategy for cancer immunotherapy.
Insights
A novel DNA aptamer, AP-74 M-545, targets Galectin-1 (Gal-1) to restore anti-tumor immunity. This aptamer suppresses tumor growth by preventing Gal-1-induced T cell apoptosis, highlighting its potential in cancer immunotherapy.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Galectin-1 (Gal-1) is a protein involved in tumor progression and immune evasion.
- Gal-1 promotes cancer immune escape and T cell apoptosis, making it a target for immunotherapy.
Purpose of the Study:
- To develop a novel Galectin-1-targeting DNA aptamer (AP-74 M-545).
- To evaluate the antitumor effect of AP-74 M-545 by assessing its impact on immune function.
Main Methods:
- Development of a high-affinity DNA aptamer (AP-74 M-545) targeting Galectin-1.
- Testing AP-74 M-545 in murine tumor models (immunocompetent vs. immunocompromised).
- Immunohistochemistry to analyze T cell infiltration (CD4+, CD8+) and Gal-1/CD45 interaction.
Main Results:
- AP-74 M-545 demonstrated antitumor effects in immunocompetent mice but not in immunocompromised mice.
- Increased infiltration of CD4+ and CD8+ T cells was observed in tumors treated with AP-74 M-545.
- AP-74 M-545 was shown to suppress T cell apoptosis by inhibiting Gal-1 binding to CD45.
Conclusions:
- The Galectin-1 aptamer AP-74 M-545 suppresses tumor growth by restoring T cell-mediated immunity.
- AP-74 M-545 functions by blocking the Gal-1/CD45 interaction, thereby rescuing T cells from apoptosis.
- AP-74 M-545 represents a promising therapeutic strategy for cancer immunotherapy.
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