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Updated: May 31, 2026

In Vivo Assay for Detection of Antigen-specific T-cell Cytolytic Function Using a Vaccination Model
Published on: November 28, 2017
In vivo microRNA-155 expression influences antigen-specific T cell-mediated immune responses generated by DNA
Chih-Ping Mao1, Liangmei He, Ya-Chea Tsai
1Department of Pathology, Johns Hopkins School of Medicine, Baltimore, Maryland, USA. wutc@jhmi.edu.
Background:
MicroRNA (miRNA) molecules are potent mediators of post-transcriptional gene silencing that are emerging to be critical in the regulation of innate and adaptive immunity.
Results:
Here we report that miR-155--an oncogenic miRNA with important function in the mammalian immune system--is induced in dendritic cells (DCs) upon maturation and potentially attenuates their ability to activate T cells. Biolistic epidermal transfection with DNA encoding miR-155 suppressed the induction of antigen-specific T cell-mediated immunity, whereas reduction of endogenous miR-155 by a partially complementary antisense sequence reversed this effect. Because DCs represent a significant component of epidermal tissue and are among the most potent of antigen-presenting cells, the inhibitory actions of miR-155 could be mediated through this subset of cells.
Conclusions:
These results suggest that miR-155 may repress the expression of key molecules involved in lymph node migration, antigen presentation, or T cell activation in DCs, and thus forms part of a negative regulatory pathway that dampens the generation of T cell-mediated immune responses. Modulation of miR-155 expression in epidermis therefore represents a potentially promising form of gene therapy for the control of diseases ranging from autoimmunity to cancer and viral infection.
Insights
MicroRNA-155 (miR-155) is induced in dendritic cells, potentially dampening T cell immunity. Modulating miR-155 in the epidermis offers a gene therapy approach for immune-related diseases.
Area of Science:
- Immunology
- Molecular Biology
- Gene Regulation
Background:
- MicroRNAs (miRNAs) are key regulators of gene silencing impacting immune responses.
- Dendritic cells (DCs) are crucial antigen-presenting cells in adaptive immunity.
Purpose of the Study:
- To investigate the role of miR-155 in dendritic cell function and T cell activation.
- To explore the potential of miR-155 modulation for therapeutic applications in immune disorders.
Main Methods:
- Epidermal transfection of DNA encoding miR-155.
- Use of antisense sequences to reduce endogenous miR-155.
- Assessment of T cell-mediated immunity induction.
Main Results:
- miR-155 induction in mature dendritic cells was observed.
- Overexpression of miR-155 suppressed antigen-specific T cell immunity.
- Reduction of miR-155 reversed the inhibitory effect on T cell immunity.
Conclusions:
- miR-155 may act as a negative regulator of DC function, impacting T cell activation.
- Modulating miR-155 in the epidermis presents a potential gene therapy strategy for autoimmune diseases, cancer, and viral infections.
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