Development of a Recombinant Adeno-Associated Virus Vector for Human T Lymphocyte- and Natural Killer Cell-Targeted Gene Therapy

Recombinant adeno-associated virus (rAAV) vectors are widely used for gene delivery but show limited efficiency in immune cells, including T lymphocytes and natural killer (NK) cells. To overcome this barrier, we have developed a CD7-targeted rAAV vector (CD7-AAV6/9) featuring a nanobody-fused hybrid capsid derived from a rationally selected chimeric combination of AAV6 and AAV9. CD7-AAV6/9 enables efficient and selective transduction of immortalized and primary human T and NK cells in vitro and in vivo in a humanized mouse model, achieves high production titers, and exhibits markedly reduced off-target transduction compared with wild-type serotypes. Incorporation of a human gene–derived intron into the vector genome to overcome host-mediated transcriptional repression enables robust transgene expression in human CD7 + T lymphocyte and NK cell populations. Together, our findings establish an integrated capsid–genome design framework for targeting human T and NK cells, notoriously challenging immune cell populations for gene therapy, and provide a versatile platform readily adaptable to alternative surface markers and therapeutic payloads.

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Publication Details

Journal
Human Gene Therapy
Published
2026-09-16
DOI
https://doi.org/10.1177/10430342261487919
Primary Topic
Virus-based gene therapy research
Type
article
Field-Weighted Citation Impact
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article

Development of a Recombinant Adeno-Associated Virus Vector for Human T Lymphocyte- and Natural Killer Cell-Targeted Gene Therapy

Daniel Foth, Sabrina M. Leddy, Carola Schneider, H.O. Kim et al.
Human Gene Therapy
Virus-based gene therapy research
article

Development of a Recombinant Adeno-Associated Virus Vector for Human T Lymphocyte- and Natural Killer Cell-Targeted Gene Therapy

Daniel Foth, Sabrina M. Leddy, Carola Schneider, H.O. Kim, Martin V. Hamann, Umm E Swaiba, Priti Kumar, Niklas Beschorner, Hendrik Jahnz, Li Zhu, Ulrike C. Lange, Natalia Salazar-Quiroz, Yaping Sun
article en

Abstract

Recombinant adeno-associated virus (rAAV) vectors are widely used for gene delivery but show limited efficiency in immune cells, including T lymphocytes and natural killer (NK) cells. To overcome this barrier, we have developed a CD7-targeted rAAV vector (CD7-AAV6/9) featuring a nanobody-fused hybrid capsid derived from a rationally selected chimeric combination of AAV6 and AAV9. CD7-AAV6/9 enables efficient and selective transduction of immortalized and primary human T and NK cells in vitro and in vivo in a humanized mouse model, achieves high production titers, and exhibits markedly reduced off-target transduction compared with wild-type serotypes. Incorporation of a human gene–derived intron into the vector genome to overcome host-mediated transcriptional repression enables robust transgene expression in human CD7 + T lymphocyte and NK cell populations. Together, our findings establish an integrated capsid–genome design framework for targeting human T and NK cells, notoriously challenging immune cell populations for gene therapy, and provide a versatile platform readily adaptable to alternative surface markers and therapeutic payloads.

Human Gene Therapy
Leibniz Institute of Virology (LIV) (DE), Universität Hamburg (DE), Yale University (US), University Medical Center Hamburg-Eppendorf (DE)
Openalex Percentile: Top 11%
Virus-based gene therapy research
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