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Updated: Feb 4, 2026

In Situ Detection of Autoreactive CD4 T Cells in Brain and Heart Using Major Histocompatibility Complex Class II Dextramers
Published on: August 1, 2014
Class II Peptide-Major Histocompatibility Complex Lipid Nanoparticles Enable in vivo mRNA Delivery to
Joseph Choy1,2,3,4, Leonardo Cheng2,3,5, Milan Patel2,3,5
1Department of Materials Science and Engineering, Johns Hopkins University, Baltimore, Maryland 21218, United States.
Abstract:
CD4+ T cells are critical central regulators of adaptive immunity and have emerged as promising candidates for engineered cellular immunotherapies. While current nonviral approaches enable pan-T cell targeting, strategies for selective genetic modulation of antigen-specific CD4+ T cells remain undeveloped. Here, we present a proof-of-concept platform employing lipid nanoparticles (LNPs) decorated with cognate peptide-MHC class II (pMHC-II) ligands (MHC-II LNPs) for antigen-specific mRNA delivery. Ex vivo, MHC-II LNPs achieved highly precise transfection of naïve antigen-specific CD4+ T cells without overt activation or toxicity, demonstrating comparable efficiency as pMHC-I based targeting, despite the lower affinity of pMHC-II:TCR interactions. In vivo administration in TCR-transgenic mice resulted in selective mRNA delivery to cognate CD4+ T cells in the spleen, liver, and blood. Furthermore, the delivery of CD19-directed CAR mRNA produced functional antigen-specific CD4+ CAR-T cells that mediated peripheral B cell depletion. These findings establish that pMHC-II ligands can be exploited for selective, nonviral genetic programming of CD4+ T cells. This strategy provides a foundational approach for precision engineering of antigen-specific CD4+ T subsets with potential applications in cancer, autoimmunity, and infectious disease.
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