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肺泡干细胞及其相关龛内高效腺相关病毒介导的转基因。

Efficient Adeno-associated Virus-mediated Transgenesis in Alveolar Stem Cells and Associated Niches.

机构信息

Department of Cell Biology.

Medical Scientist Training Program.

出版信息

Am J Respir Cell Mol Biol. 2023 Sep;69(3):255-265. doi: 10.1165/rcmb.2022-0424MA.

Abstract

Targeted delivery of transgenes to tissue-resident stem cells and related niches offers avenues for interrogating pathways and editing endogenous alleles for therapeutic interventions. Here, we survey multiple adeno-associated virus (AAV) serotypes, administered via intranasal and retroorbital routes in mice, to target lung alveolar stem cell niches. We found that AAV5, AAV4, and AAV8 efficiently and preferentially transduce alveolar type-2 stem cells (AT2s), endothelial cells, and PDGFRA fibroblasts, respectively. Notably, some AAVs show different cell tropisms depending on the route of administration. Proof-of-concept experiments reveal the versatility of AAV5-mediated transgenesis for AT2-lineage labeling, clonal cell tracing after cell ablation, and conditional gene inactivation in both postnatal and adult mouse lungs . AAV6, but not AAV5, efficiently transduces both mouse and human AT2s in alveolar organoid cultures. Furthermore, AAV5 and AAV6 can be used to deliver guide RNAs and transgene cassettes for homologous recombination and , respectively. Using this system coupled with clonal derivation of AT2 organoids, we demonstrate efficient and simultaneous editing of multiple loci, including targeted insertion of a payload cassette in AT2s. Taken together, our studies highlight the powerful utility of AAVs for interrogating alveolar stem cells and other specific cell types both and .

摘要

靶向递送至组织驻留干细胞及其相关龛位为研究途径和编辑内源性等位基因以进行治疗干预提供了途径。在这里,我们调查了多种腺相关病毒 (AAV) 血清型,通过鼻腔内和眶后途径在小鼠中给药,以靶向肺肺泡干细胞龛位。我们发现 AAV5、AAV4 和 AAV8 分别有效地优先转导肺泡型 2 干细胞 (AT2s)、内皮细胞和 PDGFRA 成纤维细胞。值得注意的是,一些 AAV 显示出不同的细胞趋向性,这取决于给药途径。概念验证实验揭示了 AAV5 介导的转基因在 AT2 谱系标记、细胞消融后克隆细胞追踪以及出生后和成年小鼠肺中的条件基因失活方面的多功能性。AAV6 而不是 AAV5,在肺泡类器官培养物中有效地转导小鼠和人 AT2s。此外,AAV5 和 AAV6 可分别用于递送向导 RNA 和转基因盒进行同源重组和。使用该系统结合 AT2 类器官的克隆衍生,我们证明了多个靶标位点的高效且同时编辑,包括在 AT2 中靶向插入有效载荷盒。总之,我们的研究强调了 AAV 用于研究肺泡干细胞和其他特定细胞类型的强大效用。

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