病毒包膜
单克隆抗体
计算生物学
模块化设计
细胞生物学
向性
基因传递
抗体
生物
病毒学
计算机科学
细胞培养
免疫学
转染
病毒
遗传学
操作系统
作者
Daniel Strebinger,Chris J. Frangieh,Mirco Friedrich,Guilhem Faure,Rhiannon K. Macrae,Feng Zhang
标识
DOI:10.1038/s41467-023-40788-8
摘要
The delivery of genetic cargo remains one of the largest obstacles to the successful translation of experimental therapies, in large part due to the absence of targetable delivery vectors. Enveloped delivery modalities use viral envelope proteins, which determine tropism and induce membrane fusion. Here we develop DIRECTED (Delivery to Intended REcipient Cells Through Envelope Design), a modular platform that consists of separate fusion and targeting components. To achieve high modularity and programmable cell type specificity, we develop multiple strategies to recruit or immobilize antibodies on the viral envelope, including a chimeric antibody binding protein and a SNAP-tag enabling the use of antibodies or other proteins as targeting molecules. Moreover, we show that fusogens from multiple viral families are compatible with DIRECTED and that DIRECTED components can target multiple delivery chassis (e.g., lentivirus and MMLV gag) to specific cell types, including primary human T cells in PBMCs and whole blood.
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