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Review

Progress in Pseudotyping Lentiviral Vectors Towards Cell-Specific Gene Delivery In Vivo

by
Ariana Arduini
1,2,†,
Harshita Katiyar
1,3,† and
Chen Liang
1,2,3,*
1
Lady Davis Institute, Jewish General Hospital, Montreal, QC H3T 1E2, Canada
2
Department of Medicine, McGill University, Montreal, QC H3G 2M1, Canada
3
Department of Microbiology and Immunology, McGill University, Montreal, QC H3A 2B4, Canada
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Viruses 2025, 17(6), 802; https://doi.org/10.3390/v17060802
Submission received: 10 May 2025 / Revised: 29 May 2025 / Accepted: 29 May 2025 / Published: 31 May 2025
(This article belongs to the Section Human Virology and Viral Diseases)

Abstract

Lentiviral vectors (LVs) have become a fundamental tool in gene therapy due to their unique ability to transduce both dividing and non-dividing cells, transfer large genes of up to 10 kb, and facilitate stable, long-term expression of therapeutic genes into target cells. A key application of LVs is the ex vivo genetic modification of patient-derived cells, such as the production of CAR-T cells by transducing isolated T cells with LVs to express the CAR gene, enabling them to target and destroy cancer cells once infused back into the patient. However, these ex vivo gene therapy drugs are often dismally unaffordable due to the complex procedures involved, including cell isolation, genetic modification, and expansion, along with the significant risks associated with immune conditioning to ensure successful engraftment. To overcome these barriers, direct in vivo transgene delivery to physiologically relevant cells has been explored, bypassing the need for ex vivo manipulations and reducing costs. Yet, a major challenge in this approach is engineering LV cell tropism to ensure the precise targeting of specific cells while avoiding off-target effects. Recent advances in modifying LV surface proteins have shown promise, including the successful in vivo generation of CAR T cells and ensuing clinical trials. This review is aimed at providing an up-to-date account of the progress in engineering LV tropism, covering the utility of different heterologous viral envelopes and their engineering to achieve cell-type-specific delivery and host immune evasion, and highlighting the potential of in vivo gene therapy to improve the affordability and accessibility of life-saving treatments.
Keywords: lentiviral vectors (LVs); tropism engineering; targeted gene delivery; in vivo gene therapy; pseudotyping; host restriction factors lentiviral vectors (LVs); tropism engineering; targeted gene delivery; in vivo gene therapy; pseudotyping; host restriction factors

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MDPI and ACS Style

Arduini, A.; Katiyar, H.; Liang, C. Progress in Pseudotyping Lentiviral Vectors Towards Cell-Specific Gene Delivery In Vivo. Viruses 2025, 17, 802. https://doi.org/10.3390/v17060802

AMA Style

Arduini A, Katiyar H, Liang C. Progress in Pseudotyping Lentiviral Vectors Towards Cell-Specific Gene Delivery In Vivo. Viruses. 2025; 17(6):802. https://doi.org/10.3390/v17060802

Chicago/Turabian Style

Arduini, Ariana, Harshita Katiyar, and Chen Liang. 2025. "Progress in Pseudotyping Lentiviral Vectors Towards Cell-Specific Gene Delivery In Vivo" Viruses 17, no. 6: 802. https://doi.org/10.3390/v17060802

APA Style

Arduini, A., Katiyar, H., & Liang, C. (2025). Progress in Pseudotyping Lentiviral Vectors Towards Cell-Specific Gene Delivery In Vivo. Viruses, 17(6), 802. https://doi.org/10.3390/v17060802

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