Related Experiment Video
Updated: Aug 7, 2026

Experimental Metastasis and CTL Adoptive Transfer Immunotherapy Mouse Model
Published on: November 26, 2010
The comparative efficacy of CTLA-4 and L-selectin targeted DNA vaccines in mice and sheep
1Walter and Eliza Hall Institute of Medical Research, The Royal Melbourne Hospital, Parkville, Victoria 3050, Melbourne, Australia. drew@wehi.edu.au
Abstract:
The access of antigens to antigen presenting cells (APCs) appears to be a rate-limiting step in the generation of immune responses to DNA vaccines. The cytotoxic T lymphocyte antigen 4 (CTLA-4) and L-selectin represent attractive ligands for use in the targeting of antigen to APCs and lymph nodes. CTLA-4 binds with high affinity to the B7 membrane antigen on APCs, while L-selectin functions as a lymphocyte homing marker and binds to CD34 on the surface of high endothelial venule cells. DNA vaccines encoding human immunoglobulin (HIg), fused to either CTLA-4 or L-selectin, have been shown to generate up to 10,000-fold higher anti-HIg antibody responses than DNA vaccines encoding HIg alone. In this study, the ability of CTLA-4 or L-selectin mediated targeting to enhance the humoral immune response to an alternate vaccine antigen was investigated. DNA vaccines encoding CTLA-4-HIg and L-selectin-HIg fused to the host-protective 45W antigen from Taenia ovis were constructed. In BALB/c mice, the L-selectin targeted vaccine did not improve either the magnitude or speed of antibody responses of vaccinated mice. In contrast, the CTLA-4 targeted DNA vaccine generated 45W-specific antibody responses which were up to 30-fold higher than those achieved with non-targeted DNA vaccination. The kinetic of the antibody response generated following CTLA-4 targeted DNA vaccination was also significantly faster than that achieved with non-targeted DNA vaccination, or with adjuvanted protein vaccination. Vaccination of outbred sheep with DNA vaccines expressing either murine or ovine CTLA-4 targeted antigen failed to enhance immune responses. These findings indicate that CTLA-4 targeting may find application in the improvement of DNA vaccines, but requires further development for applications in large animal species.
Insights
Cytotoxic T lymphocyte antigen 4 (CTLA-4) targeting in DNA vaccines significantly boosted antibody responses against a parasitic antigen in mice. However, this enhancement was not observed in sheep, suggesting further development is needed for large animal applications.
Area of Science:
- Immunology
- Vaccinology
- Parasitology
Background:
- Antigen delivery to antigen-presenting cells (APCs) is crucial for effective immune responses to DNA vaccines.
- Cytotoxic T lymphocyte antigen 4 (CTLA-4) and L-selectin are potential ligands for targeting antigens to APCs and lymph nodes.
- Previous studies showed enhanced antibody responses using CTLA-4 or L-selectin fused to human immunoglobulin.
Purpose of the Study:
- To investigate the efficacy of CTLA-4 and L-selectin mediated targeting to enhance humoral immune responses to a new vaccine antigen.
- To compare the immune-enhancing effects of CTLA-4 and L-selectin targeting in DNA vaccines.
Main Methods:
- Construction of DNA vaccines encoding CTLA-4-human immunoglobulin (HIg) and L-selectin-HIg fused to the 45W antigen from Taenia ovis.
- Vaccination of BALB/c mice and outbred sheep with constructed DNA vaccines.
- Assessment of antibody responses, including magnitude, speed, and kinetics.
- Comparison with non-targeted DNA vaccination and adjuvanted protein vaccination.
Main Results:
- L-selectin targeted vaccine did not improve antibody responses in mice.
- CTLA-4 targeted DNA vaccine generated up to 30-fold higher 45W-specific antibody responses in mice compared to non-targeted vaccines.
- CTLA-4 targeted DNA vaccination induced a significantly faster antibody response kinetic in mice.
- Vaccination with CTLA-4 targeted antigen DNA vaccines in sheep did not enhance immune responses.
Conclusions:
- CTLA-4 targeting shows promise for improving DNA vaccine efficacy in mice by enhancing humoral immune responses.
- The effectiveness of CTLA-4 targeting may be species-specific, as it failed to enhance responses in sheep.
- Further research and development are necessary to optimize CTLA-4 targeting for DNA vaccines in large animal models.

