Targeting rapidly cycling receptors CD2 and CD7 increases nanoparticle delivery to primary CD4+ T cells

Ориентирование на быстро циркулирующие рецепторы CD2 и CD7 повышает доставку наночастиц в первичные CD4+ T-клетки
Angus P. R. Johnston, Frank Caruso, Matthew Faria, Robert De Rose, Sharon R. Lewin, René P. M. Lafleur, Haiyin Liu, Marcel Doerflinger, Céline Gubser, Paula M. Cevaal, Ammar Ali, Christina Cortez-Jugo, Abigail Tan, Moore Chen, L J Wang, Merle Dayton, Liana Mackiewicz, Stanislav Kan, Michael Roche, Jori Symons
2026-07-01

CD2CD7mRNA lipid nanoparticlesprimary CD4+ T cellsreceptor-mediated endocytosis
Abstract T cells are critically important to many diseases but are traditionally difficult to transfect. We hypothesise that the delivery of therapeutic cargo to T cells can be improved by targeting nanoparticles to surface receptors that undergo rapid receptor-mediated endocytosis. Using an internalisation assay that labelled intracellular and surface proteins with different fluorophores, we find that CD2 and CD7 exhibit significantly higher internalisation than other T cell receptors, such as CD3 or CD4. Targeting CD2 and CD7 improves nanoparticle internalisation by non-stimulated, primary CD4 + T cells and enhances the specificity of association to CD4 + T cells. Similarly, functionalising mRNA-lipid nanoparticles with antibodies targeting CD2 or CD7 enhances mRNA delivery to CD4 + T cells in vitro. Importantly, targeting CD2 or CD7 enables efficient lipid nanoparticle-mediated delivery of mRNA to T cells in blood and lymphoid tissue in vivo, demonstrating that targeting T cell receptor endocytosis can enhance nanoparticle-mediated drug delivery to T cells.
1
An internalisation assay showed CD2 and CD7 undergo significantly higher receptor-mediated endocytosis than CD3 or CD4 on T cells.
2
CD2/CD7 targeting enhances specificity of nanoparticle association to CD4+ T cells compared with non-targeted approaches.
3
Functionalising mRNA-lipid nanoparticles with antibodies against CD2 or CD7 enhances mRNA delivery to CD4+ T cells in vitro.
4
Targeting CD2 or CD7 enables efficient lipid nanoparticle-mediated mRNA delivery to T cells in blood and lymphoid tissue in vivo.
5
Targeting nanoparticles to CD2 and CD7 increases nanoparticle internalisation by non-stimulated primary CD4+ T cells.

Primary CD4+ T cells targeted via surface receptors CD2 and CD7 for nanoparticle-mediated delivery

Enhancement of nanoparticle (lipid nanoparticle/mRNA-LNP) internalisation and mRNA delivery to primary CD4+ T cells by targeting rapidly internalising receptors CD2 and CD7, including specificity of association and in vivo delivery to blood and lymphoid tissues

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2026-07-01
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Authors
Angus P. R. Johnston
Frank Caruso
Matthew Faria
Robert De Rose
Sharon R. Lewin
René P. M. Lafleur
Haiyin Liu
Marcel Doerflinger
Céline Gubser
Paula M. Cevaal
Ammar Ali
Christina Cortez-Jugo
Abigail Tan
Moore Chen
L J Wang
Merle Dayton
Liana Mackiewicz
Stanislav Kan
Michael Roche
Jori Symons
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