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Optimized retroviral transduction of mouse T cells for in vivo assessment of gene function

Percoll公司 生物 体内 CD8型 转导(生物物理学) 分子生物学 细胞生物学 细胞毒性T细胞 体外 免疫学 免疫系统 生物化学 遗传学
作者
Makoto Kurachi,Junko Kurachi,Zeyu Chen,John L. Johnson,Omar Khan,Bertram Bengsch,Erietta Stelekati,John Attanasio,Laura M. McLane,Michio Tomura,Satoshi Ueha,E. John Wherry
出处
期刊:Nature Protocols [Nature Portfolio]
卷期号:12 (9): 1980-1998 被引量:81
标识
DOI:10.1038/nprot.2017.083
摘要

This protocol describes an optimized procedure for retroviral (RV) transduction of mouse T cells by enriching RV-susceptible activated CD8+ T cells through Percoll density centrifugation, enhancing the frequency of RV-transduced cells ∼sixfold in vivo. Retroviral (RV) expression of genes of interest (GOIs) is an invaluable tool and has formed the foundation of cellular engineering for adoptive cell therapy in cancer and other diseases. However, monitoring of transduced T cells long term (weeks to months) in vivo remains challenging because of the low frequency and often poor durability of transduced T cells over time when transferred without enrichment. Traditional methods often require additional overnight in vitro culture after transduction. Moreover, in vitro-generated effector CD8+ T cells enriched by sorting often have reduced viability, making it difficult to monitor the fate of transferred cells in vivo. Here, we describe an optimized mouse CD8+ T-cell RV transduction protocol that uses simple and rapid Percoll density centrifugation to enrich RV-susceptible activated CD8+ T cells. Percoll density centrifugation is simple, can be done on the day of transduction, requires minimal time, has low reagent costs and improves cell recovery (up to 60%), as well as the frequency of RV-transduced cells (∼sixfold over several weeks in vivo as compared with traditional methods). We have used this protocol to assess the long-term stability of CD8+ T cells after RV transduction by comparing the durability of T cells transduced with retroviruses expressing each of six commonly used RV reporter genes. Thus, we provide an optimized enrichment and transduction approach that allows long-term in vivo assessment of RV-transduced T cells. The overall procedure from T-cell isolation to RV transduction takes 2 d, and enrichment of activated T cells can be done in 1 h.
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